Chalcogen (i.e., Oxygen (o), Sulfur (s), Selenium (se), Tellurium (te)) Containing Patents (Class 438/95)
  • Patent number: 8828788
    Abstract: The electrode of a phase change memory may be formed with a mixture of metal and a non-metal, the electrode having less nitrogen atoms than metal atoms. Thus, in some embodiments, at least a portion of the electrode has less nitrogen than would be the case in a metal nitride. The mixture can include metal and nitrogen or metal and silicon, as two examples. Such material may have good adherence to chalcogenide with lower reactivity than may be the case with metal nitrides.
    Type: Grant
    Filed: May 11, 2010
    Date of Patent: September 9, 2014
    Assignee: Micron Technology, Inc.
    Inventors: Davide Erbetta, Camillo Bresolin, Andrea Gotti
  • Patent number: 8829342
    Abstract: A photovoltaic cell structure is disclosed that includes a buffer/passivation layer at a CdTe/Back contact interface. The buffer/passivation layer is formed from the same material that forms the n-type semiconductor active layer. In one embodiment, the buffer layer and the n-type semiconductor active layer are formed from cadmium sulfide (CdS). A method of forming a photovoltaic cell includes the step of forming the semiconductor active layers and the buffer/passivation layer within the same deposition chamber and using the same material source.
    Type: Grant
    Filed: October 19, 2010
    Date of Patent: September 9, 2014
    Assignee: The University of Toledo
    Inventors: Alvin D. Compaan, Victor V. Plotnikov
  • Patent number: 8828786
    Abstract: A light-absorbing layer is composed of a compound-semiconductor film of chalcopyrite structure, a surface layer is disposed on the light-absorbing layer, the surface layer having a higher band gap energy than the compound-semiconductor film, an upper electrode layer is disposed on the surface layer, and a lower electrode layer is disposed on a backside of the light-absorbing layer in opposition to the upper electrode layer, the upper electrode layer and the lower electrode layer having a reverse bias voltage applied in between to detect electric charges produced by photoelectric conversion in the compound-semiconductor film, as electric charges due to photoelectric conversion are multiplied by impact ionization, while the multiplication by impact ionization of electric charges is induced by application of a high-intensity electric field to a semiconductor of chalcopyrite structure, allowing for an improved dark-current property, and an enhanced efficiency even in detection of low illumination intensities, wit
    Type: Grant
    Filed: January 15, 2013
    Date of Patent: September 9, 2014
    Assignee: Rohm Co., Ltd.
    Inventors: Kenichi Miyazaki, Osamu Matsushima
  • Patent number: 8828787
    Abstract: Processes for making a thin film solar cell on a substrate by providing a substrate coated with an electrical contact layer, depositing an ink onto the contact layer of the substrate, wherein the ink contains an alkali ion source compound suspended or dissolved in a carrier along with photovoltaic absorber precursor compounds, and heating the substrate. The alkali ion source compound can be MalkMB(ER)4 or Malk(ER). The processes can be used for CIS or CIGS.
    Type: Grant
    Filed: September 15, 2011
    Date of Patent: September 9, 2014
    Assignee: Precursor Energetics, Inc.
    Inventors: Kyle L. Fujdala, Zhongliang Zhu, David Padowitz, Paul R. Markoff Johnson, Wayne A. Chomitz, Matthew C. Kuchta
  • Patent number: 8828785
    Abstract: Techniques for producing a single-crystal phase change material and the incorporation of those techniques in an electronic device fabrication process flow are provided. In one aspect, a method of fabricating an electronic device is provided which includes the following steps. A single-crystal phase change material is formed on a first substrate. At least one first electrode in contact with a first side of the single-crystal phase change material is formed. The single-crystal phase change material and the at least one first electrode in contact with the first side of the single-crystal phase change material form a transfer structure on the first substrate. The transfer structure is transferred to a second substrate. At least one second electrode in contact with a second side of the single-crystal phase change material is formed. A single-crystal phase change material-containing structure and electronic device are also provided.
    Type: Grant
    Filed: September 12, 2012
    Date of Patent: September 9, 2014
    Assignee: International Business Machines Corporation
    Inventors: Guy Cohen, Simone Raoux
  • Patent number: 8829337
    Abstract: Novel structures of photovoltaic cells (also treated as solar cells) are provided. The cells are based on nanometer-scaled wires, tubes, and/or rods, which are made of electronic materials covering semiconductors, insulators or metallic in structure. These photovoltaic cells have large power generation capability per unit physical area over the conventional cells. These cells will have enormous applications in space, commercial, residential, and industrial applications.
    Type: Grant
    Filed: October 8, 2012
    Date of Patent: September 9, 2014
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20140246744
    Abstract: A graphite substrate is accommodated into a chamber where vacuum drawing is performed via a pump. Thereafter, carbon is heated under vacuum, whereby impurities in the carbon are evaporated causing the carbon to be purified. The carbon in the graphite substrate is purified, achieving suppression of the impurities as donor/acceptor elements and also metallic elements in the semiconductor layer of 0.1 ppm or less, the impurities being contained in the carbon in the graphite substrate. As a result, occurrence of leak current or an abnormal leak point enables to be suppressed, and thus abnormal crystal growth in the semiconductor layer enables to be suppressed.
    Type: Application
    Filed: March 19, 2012
    Publication date: September 4, 2014
    Applicant: SHIMADZU CORPORATION
    Inventors: Masatomo Kaino, Satoshi Tokuda, Toshinori Yoshimuta, Hiroyuki Kishihara, Akina Yoshimatsu, Toshiyuki Sato, Shoji Kuwabara
  • Patent number: 8822261
    Abstract: A method of making a photovoltaic device is presented. The method includes disposing an absorber layer on a window layer. The method further includes treating at least a portion of the absorber layer with a first solution including a first metal salt to form a first component, wherein the first metal salt comprises a first metal selected from the group consisting of manganese, cobalt, chromium, zinc, indium, tungsten, molybdenum, and combinations thereof. The method further includes treating at least a portion of the first component with cadmium chloride to form a second component. The method further includes treating at least a portion of the second component with a second solution including a second metal salt to form an interfacial layer on the second component, wherein the second metal salt comprises a second metal selected from the group consisting of manganese, cobalt, nickel, zinc, and combinations thereof.
    Type: Grant
    Filed: September 26, 2011
    Date of Patent: September 2, 2014
    Assignee: First Solar, Inc.
    Inventors: Donald Franklin Foust, Hongbo Cao
  • Publication number: 20140238486
    Abstract: Disclosed are a solar cell and a method of fabricating the solar cell. The solar cell includes a back electrode layer; a light absorbing layer on the back electrode layer; and a buffer layer on the light absorbing layer, wherein the buffer layer includes a first buffer layer, a second buffer layer on the first buffer layer and a third buffer layer on the second buffer layer, and wherein the first buffer layer includes a group I-VI compound. A method of fabricating a solar cell includes the steps of: forming a back electrode layer on a substrate; forming a light absorbing layer on the back electrode layer; forming a second buffer layer on the light absorbing layer including selenium; and forming a third buffer layer including sulfide on the second buffer layer.
    Type: Application
    Filed: October 16, 2012
    Publication date: August 28, 2014
    Applicant: LG INNOTEK CO., LTD.
    Inventor: Myoung Seok Sung
  • Patent number: 8815632
    Abstract: A method of manufacturing an order vacancy compound (OVC) is provided. The method includes the following steps. A trivalent ion, a hexavalent ion and one of a univalent ion and a bivalent ion for an electrodeposition process are provided to form a solar energy absorbing film. The OVC is formed by performing an electrochemical etching process on the solar energy absorbing film.
    Type: Grant
    Filed: November 29, 2012
    Date of Patent: August 26, 2014
    Assignee: National Chen-Kung University
    Inventor: Wen-Hsi Lee
  • Patent number: 8815633
    Abstract: A method of fabricating a 3-dimensional structure on a copper-indium-gallium-diselenide material comprises steps: preparing a CIGS (Copper Indium Gallium Diselenide) substrate, and defining two types of regions complementary to each other on the CIGS substrate; providing a mold absorbing an etching solution that can etch the CIGS substrate instead of the mold; aligning the mold to the two types of regions, and allowing the etching solution to flow out from the mold and contact with the two types of regions to etch the two types of regions for generating a level drop between the two types of regions and forming a 3-dimensional (3D) structure on the CIGS substrate. As a result, the present invention can fabricate a large-area 3D structure on a CIGS substrate rapidly without using expensive equipments or complicated processes.
    Type: Grant
    Filed: June 5, 2013
    Date of Patent: August 26, 2014
    Assignee: National Tsing Hua University
    Inventors: Yu-Lun Chueh, Hsiang-Ying Cheng, Yi-Chung Wang, Yu-Ting Yen
  • Patent number: 8809109
    Abstract: A method for manufacturing a thin-film photovoltaic device includes providing a glass substrate contained sodium species. The glass substrate comprising a surface region and a peripheral edge region surround the surface region. The method further includes forming a barrier material overlying the surface region and partially overlying the peripheral edge region and forming a conductor material overlying the barrier material. Additionally, the method includes forming at least a first trench in a vicinity of the peripheral edge region to remove substantially the conductor material therein and forming precursor materials overlying the patterned conductor material. Furthermore, the method includes thermally treating the precursor materials to transform the precursor materials into a film of photovoltaic absorber. The first trench is configured to maintain the film of photovoltaic absorber substantially free from peeling off the conductor material.
    Type: Grant
    Filed: May 21, 2012
    Date of Patent: August 19, 2014
    Assignee: Stion Corporation
    Inventors: Laila Dounas, Robert D. Wieting, Chester A. Farris, III
  • Patent number: 8809108
    Abstract: Some embodiments include methods of forming memory cells. Such methods can include forming a first electrode, a second electrode, and a memory element directly contacting the first and second electrodes. Forming the memory element can include forming a programmable portion of the memory element isolated from the first electrode by a first portion of the memory element and isolated from the second electrode by a second portion of the memory element. Other embodiments are described.
    Type: Grant
    Filed: November 19, 2010
    Date of Patent: August 19, 2014
    Assignee: Micron Technology, Inc.
    Inventors: Jun Liu, Michael P. Violette
  • Publication number: 20140227826
    Abstract: Methods for treating a semiconductor material, and for making devices containing a semiconducting material, are presented. One embodiment is a method for treating a semiconductor material that includes a chalcogenide. The method comprises contacting at least a portion of the semiconductor material with a chemical agent. The chemical agent comprises a solvent, and an iodophor dissolved in the solvent.
    Type: Application
    Filed: April 15, 2014
    Publication date: August 14, 2014
    Applicant: FIRST SOLAR, INC.
    Inventor: Donald Franklin Foust
  • Publication number: 20140224312
    Abstract: A thin film photovoltaic cell includes a light absorption layer of Group I-III-VI2 semiconductor materials and a high surface energy thin film layer that improves adhesion between the light absorption layer and an underlying electrode layer. The high surface energy thin film either replaces or is deposited on top of the back electrode to decrease the formation of voids at the back interface during absorber growth/deposition and thereby enabling a wider process window and improved cell efficiencies. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    Type: Application
    Filed: February 13, 2013
    Publication date: August 14, 2014
    Applicant: NANOSOLAR, INC.
    Inventors: Gregory Brown, Gregory Kimball, Peter Stone
  • Publication number: 20140224311
    Abstract: A photoelectric conversion element, a photoelectric conversion device and a method for manufacturing a photoelectric conversion element are disclosed. The photoelectric conversion element includes a lower electrode layer, a light absorption layer on the lower electrode layer and a semiconductor layer on the light absorption layer. The light absorption layer includes a group I-III-VI compound containing a group I-B element, a group III-B element, and Se. The semiconductor layer includes a group III-VI compound containing a group III-B element, S, and Se. The composition in atomic percent of Se of the group III-VI compound of the semiconductor layer at a side of the light absorption layer is higher than that at a side opposite to the light absorption layer. The photoelectric conversion device includes the aforementioned photoelectric conversion element.
    Type: Application
    Filed: August 29, 2012
    Publication date: August 14, 2014
    Applicant: KYOCERA CORPORATION
    Inventors: Shinichi Abe, Hirotaka Sano, Shuichi Kasai
  • Patent number: 8802977
    Abstract: Techniques for improving energy conversion efficiency in photovoltaic devices are provided. In one aspect, an antimony (Sb)-doped film represented by the formula, Cu1-yIn1-xGaxSbzSe2-wSw, provided, wherein: 0?x?1, and ranges therebetween; 0?y?0.2, and ranges therebetween; 0.001?z?0.02, and ranges therebetween; and 0?w?2, and ranges therebetween. A photovoltaic device incorporating the Sb-doped CIGS film and a method for fabrication thereof are also provided.
    Type: Grant
    Filed: May 9, 2008
    Date of Patent: August 12, 2014
    Assignee: International Business Machines Corporation
    Inventors: Min Yuan, David B. Mitzi, Wei Liu
  • Patent number: 8803119
    Abstract: A technique capable of improving performances of a semiconductor memory device provided with a recording film having a super lattice structure is provided. The semiconductor memory device records information by changing an electric resistance of a recording film by use of a change in an atomic arrangement of the recording film. Moreover, the recording film is provided with a stacked layer portion in which a first crystal layer and a second crystal layer made of chalcogen compounds having respectively different compositions are stacked, an orientation layer that enhances an orientation of the stacked layer portion, and an adhesive layer that improves the flatness of the orientation layer.
    Type: Grant
    Filed: February 22, 2013
    Date of Patent: August 12, 2014
    Assignee: National Institute of Advanced Industrial Science and Technology
    Inventors: Takahiro Morikawa, Toshimichi Shintani
  • Publication number: 20140216552
    Abstract: A method for manufacturing a CI(G)S-based thin film using a Cu—Se two-component nanoparticle flux, and a CI(G)S-based thin film manufactured by the method are provided. The method for manufacturing the CI(G)S-based thin film, according to the present invention, comprises the steps of: manufacturing Cu—Se two-component nanoparticles and In nanoparticles; manufacturing a slurry comprising the Cu—Se two-component nanoparticles by mixing the Cu—Se two-component nanoparticles, a solvent, and a binder, and manufacturing a slurry comprising the In nanoparticles by mixing the In nanoparticles, a solvent, and a binder; forming a thin film in which a plurality of layers are laminated by alternately coating the slurry comprising the Cu—Se two-component nanoparticles and the slurry comprising the In nanoparticles on a substrate, regardless of order; and heat-processing the thin film which is formed.
    Type: Application
    Filed: July 17, 2012
    Publication date: August 7, 2014
    Applicant: KOREA INSTITUTE OF ENERGY RESEARCH
    Inventors: Ara Cho, SeJin Ahn, Kyung-Hoon Yoon, Jae-Ho Yun, Jihye Gwak, Kee-Shik Shin, SeoungKyu Ahn
  • Publication number: 20140217284
    Abstract: Photodetectors, methods of fabricating the same, and methods using the same to detect radiation are described. A photodetector can include a first electrode, a light sensitizing layer, an electron blocking/tunneling layer, and a second electrode. Infrared-to-visible upconversion devices, methods of fabricating the same, and methods using the same to detect radiation are also described. An Infrared-to-visible upconversion device can include a photodetector and an OLED coupled to the photodetector.
    Type: Application
    Filed: July 2, 2012
    Publication date: August 7, 2014
    Applicants: NANOHOLDINGS, LLC, University of Florida Research Foundation, Inc.
    Inventors: Franky So, Do Young Kim, Jae Woong Lee, Bhabendra K. Pradhan
  • Publication number: 20140220729
    Abstract: A CIGS film production method is provided which ensures that a CIGS film having a higher conversion efficiency can be produced at lower costs at higher reproducibility even for production of a large-area device. A CIGS solar cell production method is also provided for producing a CIGS solar cell including the CIGS film. The CIGS film production method includes: a stacking step of stacking a layer (A) containing indium, gallium and selenium and a layer (B) containing copper and selenium in a solid phase in this order over a substrate; and a heating step of heating a stacked structure including the layer (A) and the layer (B) to melt a compound of copper and selenium of the layer (B) into a liquid phase to thereby diffuse copper from the layer (B) into the layer (A) to permit crystal growth to provide a CIGS film.
    Type: Application
    Filed: September 5, 2012
    Publication date: August 7, 2014
    Applicant: NITTO DENKO CORPORATION
    Inventors: Hiroto Nishii, Shigenori Morita, Seiki Teraji, Kazuhito Hosokawa, Takashi Minemoto
  • Publication number: 20140217540
    Abstract: A fully depleted “diode passivation active passivation architecture” (DPAPA) produces a photodiode structure which includes a substrate, a highly-doped buffer layer of a first carrier doping type above the substrate, a low-doped or undoped semiconductor active layer of the first carrier doping type above the buffer layer, a low-doped or undoped passivation layer above the active layer, the passivation layer having a wider band gap than the active layer; and a junction layer of a carrier doping type opposite the first carrier doping type above the passivation layer such that a pn junction is formed between the junction layer and the passivation and active layers, the junction creating a depletion region which expands completely through the passivation and active layers in response to a reverse bias voltage. The fully depleted structure substantially eliminates Auger recombination, reduces dark currents and enables cryogenic level performance at high temperatures.
    Type: Application
    Filed: February 4, 2013
    Publication date: August 7, 2014
    Applicant: TELEDYNE SCIENTIFIC & IMAGING, LLC
    Inventors: WILLIAM E. TENNANT, DONALD L. LEE, ERIC C. PIQUETTE
  • Publication number: 20140220728
    Abstract: Embodiments of the present invention generally include methods for forming semiconductor films having nominal I2-II-IV-VI4 stoichiometry, such as CZTS or CZTSSe, using a solution of including sources of the I, II, IV, and VI elements in a liquid solvent. Precursors may be mixed in the solvent to form the solution. Metal halide salts may be used as precursors in some examples. The solution may be coated onto a substrate and annealed to yield the semiconductor film. In some examples, the source of the ‘I’ and ‘IV’ elements may contain the elements in a +2 oxidation state, while the semiconductor film may contain the ‘I’ element in a +1 oxidation state and the ‘IV’ element in a +4 oxidation state. Examples may be used to provide I2-(II,IV)-IV-VI4 films.
    Type: Application
    Filed: February 17, 2012
    Publication date: August 7, 2014
    Inventors: Hugh Hillhouse, Wooseok Ki
  • Publication number: 20140216550
    Abstract: A photovoltaic device includes a substrate structure and a p-type semiconductor absorber layer, the substrate structure including a CdSSe layer. A photovoltaic device may alternatively include a CdSeTe layer. A process for manufacturing a photovoltaic device includes forming a CdSSe layer over a substrate by at least one of sputtering, evaporation deposition, CVD, chemical bath deposition process, and vapor transport deposition process. The process includes forming a p-type absorber layer above the CdSSe layer.
    Type: Application
    Filed: February 3, 2014
    Publication date: August 7, 2014
    Applicant: FIRST SOLAR, INC.
    Inventors: Dan Damjanovic, Feng Liao, Rick Powell, Rui Shao, Jigish Trivedi, Zhibo Zhao
  • Patent number: 8796660
    Abstract: A nonvolatile memory element (20) of the present invention comprises a resistance variable element (14) and a diode (18) which are formed on a substrate (10) such that the resistance variable element (14) has a resistance variable layer (11) sandwiched between a lower electrode (12) and an upper electrode (13), and the diode (18) which is connected in series with the resistance variable element (14) in the laminating direction and has an insulating layer or semiconductor layer (15) sandwiched between a first electrode (16) at the lower side and a second electrode (17) at the upper side. The resistance variable layer (11) is embedded in a first contact hole (21) formed on the lower electrode (12).
    Type: Grant
    Filed: September 21, 2007
    Date of Patent: August 5, 2014
    Assignee: Panasonic Corporation
    Inventors: Takeshi Takagi, Takumi Mikawa
  • Publication number: 20140209174
    Abstract: A method for producing a nanoparticle for forming a CZTS compound semiconductor thin film is provided which includes the step of reacting a solution including a metal salt or a metal complex with a solution including a chalcogenide salt to produce a CZTS compound nanoparticle. A CZTS compound semiconductor thin film is formed by coating or printing the nanoparticle for forming the CZTS compound semiconductor thin film, and subjecting it to a heat treatment. A solar cell including the CZTS compound semiconductor thin film as the light-absorbing layer is provided.
    Type: Application
    Filed: March 28, 2014
    Publication date: July 31, 2014
    Applicants: TOKYO INSTITUTE OF TECHNOLOGY, TOPPAN PRINTING CO.,LTD.
    Inventors: Yiwen ZHANG, Akira YAMADA
  • Patent number: 8791359
    Abstract: Novel structures of photovoltaic cells (also called as solar cells) are provided. The cells are based on nanoparticles or nanometer-scaled wires, tubes, and/or rods, which are made of electronic materials covering semiconductors, insulators, and may be metallic in structure. These photovoltaic cells have large power generation capability per unit physical area over the conventional cells. These cells will have enormous applications such as in space, commercial, residential and industrial applications.
    Type: Grant
    Filed: January 24, 2007
    Date of Patent: July 29, 2014
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Kumar Dutta
  • Publication number: 20140206132
    Abstract: A solar cell includes an absorber layer formed of a CIGAS, copper, indium, gallium, aluminum, and selenium. A method for forming the absorber layer provides for using an indium-aluminum target and depositing an aluminum-indium film as a metal precursor layer using sputter deposition. Additional metal precursor layers such as a CuGa layer are also provided and a thermal processing operation causes the selenization of the metal precursor layers. The thermal processing operation/selenization operation converts the metal precursor layers to an absorber layer. In some embodiments, the absorber layer includes a double graded chalcopyrite-based bandgap.
    Type: Application
    Filed: March 19, 2014
    Publication date: July 24, 2014
    Applicant: TSMC SOLAR LTD.
    Inventors: Wen-Tsai YEN, Chung-Hsien WU, Shih-Wei CHEN, Wen-Chin LEE
  • Patent number: 8785237
    Abstract: A method of forming a variable resistance memory device includes forming an opening in an insulating layer, and forming a variable resistance layer by filling the opening with an antimony rich antimony-tellurium compound.
    Type: Grant
    Filed: November 25, 2009
    Date of Patent: July 22, 2014
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Dong-Hyun Im, Hyeonggeun An, Sunglae Choi, Ik Soo Kim
  • Patent number: 8785900
    Abstract: Resistive memory and methods of processing resistive memory are described herein. One or more method embodiments of processing resistive memory include forming a resistive memory cell material on an electrode having an access device contact, and forming a heater electrode on the resistive memory cell material after forming the resistive memory cell material on the electrode such that the heater electrode is self-aligned to the resistive memory cell material.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: July 22, 2014
    Assignee: Micron Technology, Inc.
    Inventor: David H. Wells
  • Patent number: 8785899
    Abstract: According to example embodiments, a nonvolatile memory cell includes a first electrode and a second electrode, a resistance change film between the first electrode and the second electrode, and a first barrier film contacting the second electrode. The resist change film contains oxygen ions and contacts the first electrode. The first barrier film is configured to reduce (and/or block) the outflow of the oxygen ions from the resistance change film.
    Type: Grant
    Filed: August 16, 2012
    Date of Patent: July 22, 2014
    Assignee: Samsung Electronics Co., Ltd
    Inventors: Hyun-Su Ju, Min-Kyu Yang, Eun-Mi Kim, Seong-Geon Park
  • Patent number: 8785230
    Abstract: A localized surface plasmon resonance sensor may include a localized surface plasmon excitation layer including a chalcogenide material. The chalcogenide material may include: a first material including at least one of selenium (Se) and tellurium (Te); and a second material including at least one of germanium (Ge) and antimony (Sb). The localized surface plasmon excitation layer may be prepared by forming a thin film including the chalcogenide material and crystallizing the thin film to have a predetermined pattern by irradiating laser on the thin film.
    Type: Grant
    Filed: December 21, 2012
    Date of Patent: July 22, 2014
    Assignee: Korea Institute of Science and Technology
    Inventors: Taek Sung Lee, Kyeong Seok Lee, In Ho Kim, Wook Seong Lee, Doo Seok Jeong, Won Mok Kim, Byung Ki Cheong
  • Patent number: 8785235
    Abstract: A method and apparatus for forming a solar cell. The apparatus includes a housing defining a vacuum chamber and a rotatable substrate apparatus configured to hold a plurality of substrates on a plurality of surfaces wherein each of the plurality of surfaces are disposed facing an interior surface of the vacuum chamber. A first sputtering source is configured to deposit a plurality of absorber layer atoms of a first type over at least a portion of a surface of each one of the plurality of substrates. An evaporation source is disposed in a first subchamber of the vacuum chamber and configured to deposit a plurality of absorber layer atoms of a second type over at least a portion of the surface of each one of the plurality of substrates. A first isolation source is configured to isolate the evaporation source from the first sputtering source.
    Type: Grant
    Filed: June 1, 2012
    Date of Patent: July 22, 2014
    Assignee: TSMC Solar Ltd.
    Inventors: Edward Teng, Ying-Chen Chao, Chih-Jen Yang, Kuo-Jui Hsiao
  • Publication number: 20140196775
    Abstract: A method of fabricating CIGS nanorod or nanowire according to one exemplary embodiment of the present disclosure comprises a deposition preparation step of placing a raw material including copper, indium, gallium and selenium and a substrate, and a deposition step of growing CIGS nanorod or nanowire on the substrate by maintaining an internal temperature of a reactor, in which carrier gas flows at a constant flow rate, at a temperature in the range of 850 to 1000° C. According to the method, Cu(In,Ga)Se2 nanorod or nanowire as a direct transition type semiconductor material having substantially uniform composition, high crystallinity and high light absorption ratio can be fabricated.
    Type: Application
    Filed: September 13, 2013
    Publication date: July 17, 2014
    Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Ji Yeong LEE, Myoung Woon MOON, Won Kyung SEONG, Jong Ku PARK, Cheol Woong YANG, So Hye CHO, Kwang Ryeol LEE
  • Patent number: 8778081
    Abstract: Systems and methods for depositing complex thin-film alloys on substrates are provided. In particular, systems and methods for the deposition of thin-film Cd1-xMxTe ternary alloys on substrates using a stacked-source sublimation system are provided, where M is a metal such as Mg, Zn, Mn, and Cu.
    Type: Grant
    Filed: January 3, 2013
    Date of Patent: July 15, 2014
    Assignee: Colorado State University Research Foundation
    Inventors: Walajabad S. Sampath, Pavel S. Kobyakov, Kevin E. Walters, Davis R. Hemenway
  • Patent number: 8779282
    Abstract: Disclosed are a solar cell apparatus and a method for manufacturing the same. The solar cell apparatus includes a substrate; a back electrode layer on the substrate; a light absorbing layer on the back electrode layer; and a front electrode layer on the light absorbing layer, wherein an outer peripheral side of the back electrode layer is aligned on a plane different from a plane of an outer peripheral side of the light absorbing layer.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: July 15, 2014
    Assignee: LG Innotek Co., Ltd.
    Inventor: Se Han Kwon
  • Publication number: 20140193941
    Abstract: A method for manufacturing a solar cell includes forming a first electrode on a substrate, removing a portion of the first electrode to form a first electrode opening, forming a light absorbing layer on the first electrode and in the first electrode opening, and applying a laser beam to the substrate to create an interface reaction between the first electrode and at least the light absorbing layer, thereby removing a portion of the light absorbing layer to form a light absorbing layer opening.
    Type: Application
    Filed: November 22, 2013
    Publication date: July 10, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: Min-Sung Kim, Min-Kyu Kim, Su-Yeon Kim, Yuk-Hyun Nam, Ku-Hyun Kang
  • Publication number: 20140193942
    Abstract: A method for depositing one or more thin-film layers on a flexible polyimide substrate having opposing front and back outer surfaces includes the following steps: (a) heating the flexible polyimide substrate such that a temperature of the front outer surface of the flexible polyimide substrate is higher than a temperature of the back outer surface of the flexible polyimide substrate, and (b) depositing the one or more thin-film layers on the front outer surface of the flexible polyimide substrate. A deposition zone for executing the method includes (a) one of more physical vapor deposition sources adapted to deposit one or more metallic materials on the front outer surface of the substrate, and (b) one or more radiant zone boundary heaters.
    Type: Application
    Filed: January 8, 2014
    Publication date: July 10, 2014
    Applicant: Ascent Solar Technologies, Inc.
    Inventors: Lawrence M. Woods, Rosine Ribelin, Joseph H. Armstrong
  • Publication number: 20140193944
    Abstract: A polymer substrate and back contact structure for a photovoltaic element, and a photovoltaic element include a CIGS photovoltaic structure, a polymer substrate having a device side at which the photovoltaic element can be located and a back side opposite the device side. A layer of dielectric is formed at the back side of the polymer substrate. A metal structure is formed at the device side of the polymer substrate.
    Type: Application
    Filed: March 13, 2014
    Publication date: July 10, 2014
    Applicant: ASCENT SOLAR TECHNOLOGIES, INC.
    Inventors: Lawrence M. Woods, Hobart Stevens, Joseph H. Armstrong
  • Publication number: 20140193943
    Abstract: A method for fabricating a Cu—In—Ga—Se film solar cell is provided. The method comprises: a) fabricating a molybdenum back electrode on a substrate; b) fabricating a Cu—In—Ga—Se absorbing layer on the back electrode by fractional sputtering in a plurality of sputter chambers; c) performing an annealing; d) fabricating an In2Se3 or ZnS buffer layer on the Cu—In—Ga—Se absorbing layer; e) fabricating an intrinsic zinc oxide high impedance layer on the In2Se3 or ZnS buffer layer; f) fabricating an indium tin oxide film low impedance layer on the intrinsic zinc oxide high impedance layer; g) fabricating an aluminum electrode on the indium tin oxide film low impedance layer.
    Type: Application
    Filed: January 11, 2014
    Publication date: July 10, 2014
    Inventors: Liuyu Lin, Zhun Zhang
  • Patent number: 8772071
    Abstract: A method for manufacturing thin film solar cells, includes forming a light permeable first electrode layer in the back light surface of a glass substrate, and formed in the first electrode layer a plurality of first openings for exposing a part of the back light surface therefrom; forming a photoelectric conversion layer on the first electrode layer and the exposed back light surface, and forming a plurality of second openings in the photoelectric conversion layer for exposing a part of the first electrode layer therefrom; and forming a glistening second electrode layer having a plurality of third openings formed therein, wherein the second electrode layer comprises a conductive colloid comprised of non-diffractive fillings and polymeric base material.
    Type: Grant
    Filed: December 8, 2011
    Date of Patent: July 8, 2014
    Assignee: Industrial Technology Research Institute
    Inventors: Jun-Chin Liu, Yu-Hung Chen, Chien-Liang Wu, Yu-Ru Chen, Yu-Ming Wang
  • Patent number: 8772076
    Abstract: The present invention provides for new ohmic contact materials and diffusion barriers for Group IBIIIAVIA based solar cell structures, which eliminate two way diffusion while preserving the efficient ohmic contacts between the substrate and the absorber layers.
    Type: Grant
    Filed: September 3, 2010
    Date of Patent: July 8, 2014
    Assignee: Solopower Systems, Inc.
    Inventors: Mustafa Pinarbasi, James Freitag, Jorge Vasquez
  • Patent number: 8772122
    Abstract: Programmable metallization memory cells having an active electrode, an opposing inert electrode and a variable resistive element separating the active electrode from the inert electrode. The variable resistive element includes a plurality of alternating solid electrolyte layers and electrically conductive layers. The electrically conductive layers electrically couple the active electrode to the inert electrode in a programmable metallization memory cell. Methods to form the same are also disclosed.
    Type: Grant
    Filed: July 12, 2013
    Date of Patent: July 8, 2014
    Assignee: Seagate Technology LLC
    Inventors: Nurul Amin, Insik Jin, Wei Tian, Andrew James Wirebaugh, Venugopalan Vaithyanathan, Ming Sun
  • Patent number: 8772077
    Abstract: The present invention concerns a method of forming a chalcogenide thin film for a phase-change memory. In the method of forming a chalcogenide thin film according to the present invention, a substrate with a pattern formed is loaded into a reactor, and a source gas is supplied onto the substrate. Here, the source gas includes at least one source gas selected from germanium (Ge) source gas, gallium (Ga) source gas, indium (In) source gas, selenium (Se) source gas, antimony (Sb) source gas, tellurium (Te) source gas, tin (Sn) source gas, silver (Ag) source gas, and sulfur (S) source gas. A first purge gas is supplied onto the substrate in order to purge the source gas supplied onto the substrate, a reaction gas for reducing the source gas is then supplied onto the substrate, and a second purge gas is supplied onto the substrate in order to purge the reaction gas supplied onto the substrate.
    Type: Grant
    Filed: April 16, 2009
    Date of Patent: July 8, 2014
    Assignee: IPS Ltd.
    Inventors: Ki-Hoon Lee, Jung-Wook Lee, Dong-Ho You
  • Publication number: 20140186993
    Abstract: A polymer substrate and back contact structure for a photovoltaic element, and a photovoltaic element include a CIGS photovoltaic structure, a polymer substrate having a device side at which the photovoltaic element can be located and a back side opposite the device side. A layer of dielectric is formed at the back side of the polymer substrate. A metal structure is formed at the device side of the polymer substrate.
    Type: Application
    Filed: March 5, 2014
    Publication date: July 3, 2014
    Applicant: ASCENT SOLAR TECHNOLOGIES, INC.
    Inventors: Lawrence M. Woods, Hobart Stevens, Joseph H. Armstrong
  • Publication number: 20140186992
    Abstract: A removable cover system for protecting solar cells from exposure to moisture during fabrication processes. The cover system includes a cover having a configuration that complements the configuration of a solar cell substrate to be processed in an apparatus where moisture is present. A resiliently deformable seal member attached to the cover is positionable with the cover to engage and seal the top surface of the substrate. In one embodiment, the cover is dimensioned and arranged so that the seal member engages the peripheral angled edges and corners of the substrate for preventing the ingress of moisture beneath the cover. An apparatus for fabricating a solar cell using the cover and associated method are also disclosed.
    Type: Application
    Filed: March 5, 2014
    Publication date: July 3, 2014
    Applicant: TSMC Solar Ltd.
    Inventors: Chih-Wei HUANG, Keng-Hsin CHI, Chien-Nan LIN, Hua-Tso WEI
  • Publication number: 20140182671
    Abstract: A photovoltaic device (e.g., solar cell) includes: a front substrate (e.g., glass substrate); a semiconductor absorber film; a back contact including a first conductive layer of or including copper (Cu) and a second conductive layer of or including molybdenum (Mo); and a rear substrate (e.g., glass substrate). A selenium blocking layer is provided between at least the Cu inclusive layer and the Mo inclusive layer.
    Type: Application
    Filed: December 28, 2012
    Publication date: July 3, 2014
    Applicant: GUARDIAN INDUSTRIES CORP.
    Inventor: Alexey KRASNOV
  • Patent number: 8766234
    Abstract: Selector devices that can be suitable for memory device applications can have low leakage currents at low voltages to reduce sneak current paths for non selected devices, and high leakage currents at high voltages to minimize voltage drops during device switching. In some embodiments, the selector device can include a first electrode, a tri-layer dielectric layer, and a second electrode. The tri-layer dielectric layer can include a high leakage dielectric layer sandwiched between two lower leakage dielectric layers. The low leakage layers can function to restrict the current flow across the selector device at low voltages. The high leakage dielectric layer can function to enhance the current flow across the selector device at high voltages.
    Type: Grant
    Filed: December 27, 2012
    Date of Patent: July 1, 2014
    Assignee: Intermolecular, Inc.
    Inventors: Imran Hashim, Venkat Ananthan, Tony P. Chiang, Prashant B. Phatak
  • Patent number: 8765519
    Abstract: A method of forming a phase change material which having germanium and tellurium therein includes depositing a germanium-containing material over a substrate. Such material includes elemental-form germanium. A gaseous tellurium-comprising precursor is flowed to the germanium-comprising material and tellurium is removed from the gaseous precursor to react with the elemental-form germanium in the germanium-comprising material to form a germanium and tellurium-comprising compound of a phase change material over the substrate. Other implementations are disclosed.
    Type: Grant
    Filed: November 18, 2013
    Date of Patent: July 1, 2014
    Assignee: Micron Technology, Inc.
    Inventors: Eugene P. Marsh, Timothy A. Quick, Stefan Uhlenbrock
  • Patent number: 8765555
    Abstract: A phase change memory cell includes a first electrode having a cylindrical portion. A dielectric material having a cylindrical portion is longitudinally over the cylindrical portion of the first electrode. Heater material is radially inward of and electrically coupled to the cylindrical portion of the first electrode. Phase change material is over the heater material and a second electrode is electrically coupled to the phase change material. Other embodiments are disclosed, including methods of forming memory cells which include first and second electrodes having phase change material and heater material in electrical series there-between.
    Type: Grant
    Filed: April 30, 2012
    Date of Patent: July 1, 2014
    Assignee: Micron Technology, Inc.
    Inventor: Damon E. Van Gerpen