Patents by Inventor In Ui SONG

In Ui SONG has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20140234710
    Abstract: A negative active material includes a conductive unit bound in island-like form to silicon-based nanowires on a carbonaceous base. Such negative active material may improve the electrical conductivity of the silicon-based nanowires, and suppress separation of the silicon-based nanowires caused from volume expansion, and thus may improve lifetime characteristics of a lithium battery.
    Type: Application
    Filed: January 9, 2014
    Publication date: August 21, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: Su-Kyung Lee, So-Ra Lee, Kyu-Nam Joo, Yu-Jeong Cho, Ui-Song Do, Chang-Su Shin, Ha-Na Yoo, Sang-Eun Park, Jae-Myung Kim
  • Publication number: 20140147741
    Abstract: In an aspect, a composite anode active material including: a porous particles, said porous particles including: a plurality of composite nanostructures; and a first carbonaceous material binding the composite nanostructures, wherein the porous particles have pores within the particle, and wherein the composite nanostructures include a crystalline second carbonaceous material substrate including at least one carbon nano-sheet, and a plurality of metal nanowires arranged at intervals on the crystalline second carbonaceous material substrate is disclosed.
    Type: Application
    Filed: July 31, 2013
    Publication date: May 29, 2014
    Applicant: Samsung SDI Co., Ltd.
    Inventors: Chang-Su Shin, Jae-Myung Kim, So-Ra Lee, Yu-Jeong Cho, Su-Kyung Lee, Ui-Song Do, Sang-Eun Park, Ha-Na Yoo
  • Publication number: 20140106230
    Abstract: In an aspect, a negative active material, a method of preparing the negative active material, and a lithium battery including the negative active material are provided. The method of preparing the negative active material may increase pulverizing efficiency in pulverizing a silicon-based bulky particle into a nano-size silicon-based primary particle and decrease a capacity loss of the obtained negative active material. The nano-size negative active material has excellent crystalline characteristics, high capacity, and high initial efficiency, due to a decrease in surface oxidation and surface damage.
    Type: Application
    Filed: March 14, 2013
    Publication date: April 17, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: Beom-Kwon Kim, Jae-Myung Kim, So-Ra Lee, Ui-Song Do, Chang-Su Shin
  • Publication number: 20140079991
    Abstract: Provided is a lithium battery including: a positive electrode, a negative electrode, and an organic electrolytic solution, wherein the negative electrode has a metal/metalloid nanostructure, and the organic electrolytic solution includes a lithium sulfonimide-based compound.
    Type: Application
    Filed: March 13, 2013
    Publication date: March 20, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: So-Ra Lee, Chang-Su Shin, Yu-Jeong Cho, Su-Kyung Lee, Jae-Myung Kim, Ui-Song Do, Sang-Eun Park
  • Publication number: 20140079993
    Abstract: In an aspect, a composite anode active material including particles, wherein the particles include: a first carbonaceous material that is substantially crystalline and includes at least one carbon nano-sheet; a non-carbonaceous material capable of intercalating and deintercalating lithium; and a second carbonaceous material that binds the first carbonaceous material and the non-carbonaceous material, wherein the particles have pores having a size of 50 nm or more is disclosed.
    Type: Application
    Filed: March 14, 2013
    Publication date: March 20, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: So-La Lee, Ui-Song Do, Chang-Su Shin
  • Publication number: 20140050984
    Abstract: A composite anode active material, an anode and a lithium battery each including the composite anode active material, and a method of preparing the composite anode active material. The composite anode active material includes a composite core, and a coating layer covering at least a region of the composite core, wherein the composite core includes a carbonaceous substrate and a metal/semi-metal nanostructure on the carbonaceous substrate, the coating layer is more predominant on the nanostructure than on the carbonaceous substrate, and the coating layer includes a metal oxide.
    Type: Application
    Filed: February 5, 2013
    Publication date: February 20, 2014
    Applicant: Samsung SDI Co., Ltd.
    Inventors: Sang-Eun Park, Jae-Myung Kim, So-Ra Lee, Ui-Song Do, Chang-Su Shin, Yu-Jeong Cho, Su-Kyung Lee
  • Publication number: 20140045060
    Abstract: In an aspect, a composite anode active material including a composite core; and a coating layer covering at least a region of the composite core, wherein the composite core comprises a carbonaceous substrate; and a nanostructure disposed on the substrate, and the coating layer includes a metal oxide; an anode and a lithium battery each including the composite anode active material; and a method of preparing the composite anode active material are provided.
    Type: Application
    Filed: February 25, 2013
    Publication date: February 13, 2014
    Applicant: Samsung SDI Co., Ltd.
    Inventors: Sang-Eun Park, Jae-Myung Kim, So-Ra Lee, Yu-Jeong Cho, Ui-Song Do, Chang-Su Shin, Su-Kyung Lee
  • Publication number: 20130209881
    Abstract: A negative active material and a lithium battery including the negative active material. The negative active material includes a non-carbonaceous nanoparticle capable of doping or undoping lithium; and a crystalline carbonaceous nano-sheet, wherein at least one of the non-carbonaceous nanoparticle and the crystalline carbonaceous nano-sheet includes a first amorphous carbonaceous coating layer on its surface, and thus an electrical conductivity thereof is improved. In addition, a lithium battery including the negative active material has an improved efficiency and lifetime.
    Type: Application
    Filed: August 3, 2012
    Publication date: August 15, 2013
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: Ui-Song Do, Chang-Su Shin, So-Ra Lee, Beom-Kwon Kim, Jae-Myung Kim
  • Publication number: 20130089783
    Abstract: A negative active material and a lithium battery including the same are disclosed. Due to the inclusion of silicon nanowires formed on a spherical carbonaceous base material, the negative active material may increase the capacity and cycle lifespan characteristics of the lithium battery.
    Type: Application
    Filed: July 17, 2012
    Publication date: April 11, 2013
    Inventors: Ha-Na Yoo, Jae-Myung Kim, So-Ra Lee, Chang-Su Shin, Ui-Song Do, Yu-Jeong Cho, Su-Kyung Lee, Sang-Eun Park
  • Publication number: 20130089784
    Abstract: A negative active material and a lithium battery including the negative active material. The negative active material includes primary particles, each including: a crystalline carbonaceous core having a surface on which silicon-based nanowires are disposed; and an amorphous carbonaceous coating layer that is coated on the crystalline carbonaceous core so as not to expose at least a portion of the silicon-based nanowires. Due to the inclusion of the primary particles, an expansion ratio is controlled and conductivity is provided and thus, a formed lithium battery including the negative active material may have improved charge-discharge efficiency and cycle lifespan characteristics.
    Type: Application
    Filed: July 19, 2012
    Publication date: April 11, 2013
    Inventors: Yu-Jeong Cho, So-Ra Lee, Ha-Na Yoo, Ui-Song Do, Chang-Su Shin, Su-Kyung Lee, Jae-Myung Kim
  • Publication number: 20130004846
    Abstract: A negative active material, a method of preparing the same, and a lithium battery including the negative active material are disclosed. The negative active material includes a silicon-based nanocore and a first amorphous carbonaceous coating layer that is formed of carbonized organic material and that is uniformly and continuously formed on a surface of the silicon-based nanocore, whereby irreversible capacity losses due to volumetric expansion/contraction caused when a lithium battery is charged and discharged are compensated and cycle lifetime characteristics are enhanced.
    Type: Application
    Filed: May 4, 2012
    Publication date: January 3, 2013
    Applicant: Samsung SDI Co., Ltd.
    Inventors: Beom-Kwon Kim, Jae-Myung Kim, So-Ra Lee, Chang-Su Shin, Ui-Song Do
  • Publication number: 20120288768
    Abstract: Provided are a negative active material, a method of preparing the same, and a lithium battery including the negative active material, wherein the negative active material includes a carbonaceous material that has a peak with respect to a surface (002) at a Bragg angle 2? of 26.4°±0.1° in an X-ray diffraction spectrum, has a full width at half maximum of the peak with respect to the surface (002) of about 0.2° to about 0.6°, has an interlayer spacing (d002) of the surface (002) measured by X-ray diffraction of about 3.36 ? to about 3.37 ?, and has a crystallite size measured from the full width at half maximum of the peak with respect to the surface (002) of about 10 nm to about 45 nm, wherein the carbonaceous material includes a core; and an amorphous carbon layer disposed on a non-cracked surface portion of the core.
    Type: Application
    Filed: March 22, 2012
    Publication date: November 15, 2012
    Applicant: Samsung SDI CO., Ltd.
    Inventors: So-Ra LEE, Chang-Su Shin, Ui-Song Do, Beom-Kwon Kim, Jae-Myung Kim
  • Publication number: 20120288766
    Abstract: Provided are a negative active material, a method of preparing the same, and a lithium battery including the negative active material. The negative active material includes a carbonaceous core that has a sulfur content of about 10 ppm to 900 ppm; and an amorphous carbon layer continuously formed on a surface of the carbonaceous core, wherein the carbonaceous core has a crystalloid plate structure, and a crystallite size measured from a full width at half maximum of the peak with respect to the surface (002) of about 10 nm to about 45 nm in an X-ray diffraction spectrum of the carbonaceous core. The lithium battery including a negative electrode including the negative active material has improved capacity characteristics and ring lifetime characteristics.
    Type: Application
    Filed: March 22, 2012
    Publication date: November 15, 2012
    Applicant: Samsung SDI CO., Ltd.
    Inventors: So-Ra LEE, Chang-Su Shin, Ui-Song Do, Beom-Kwon Kim, Jae-Myung Kim
  • Publication number: 20120270108
    Abstract: In one aspect, an anode active material is provided. The anode active material may include a crystalline carbon-based material that includes a core having a lattice spacing d002 of about 0.35 nm or more, and titanium-based oxide particles.
    Type: Application
    Filed: March 8, 2012
    Publication date: October 25, 2012
    Applicant: Samsung SDI Co., Ltd.
    Inventors: Chang-Su Shin, Jae-Myung Kim, So-Ra Lee, Ui-Song Do, Beom-Kwon Kim
  • Patent number: 8228465
    Abstract: A white phosphor including: 40 to 50 parts by weight of a blue phosphor selected from the group consisting of ZnS:(Ag,Cl), ZnS:(Ag,Al), ZnS:(Ag,Al,Cl), and a combination thereof; 20 to 30 parts by weight of a green phosphor (Sr1-xCax)Ga2S4:Eu (0?x<0.2); and 20 to 30 parts by weight of a red phosphor selected from the group consisting of Y2O3:Eu, Y2O3:(Eu,Tb), Y2O2S:Eu, Y2O2S:(Eu,Tb), and combinations thereof. The white phosphor can be included in a light emission device. The light emission device can be included in a liquid crystal display.
    Type: Grant
    Filed: August 27, 2008
    Date of Patent: July 24, 2012
    Assignee: Samsung SDI Co., Ltd.
    Inventors: Yong-Chan You, Jae-Woo Bae, Gyeong-Jae Heo, Kyu-Chan Park, Sang-Hyuk Lee, Sun-Hwa Kwon, Ji-Hyun Kim, Ui-Song Do, Young-Suk Cho, Byung-Kyun Kim, Hui-Young Ku, Yoo-Jung Lee
  • Publication number: 20120146120
    Abstract: A non-volatile memory device includes memory cell active regions and common source active regions extending in parallel on a semiconductor substrate, a self aligned source active region disposed on the semiconductor substrate that intersects the memory cell active regions and the common source active regions and connects the memory cell active regions to the common source active regions, word lines disposed on the memory cell active regions and the common source active regions that intersect the memory cell active regions and the common source active regions, and memory cell transistors formed by the intersection of the word lines and the memory cell active regions, and common source line transistors formed by the intersection of the word lines and the common source active regions, wherein source and drain regions of each of the common source line transistors are separated from each other in the semiconductor substrate.
    Type: Application
    Filed: September 19, 2011
    Publication date: June 14, 2012
    Inventors: Jung-In Han, Sang Eun Lee, Hyouk Sang Yun, Tong-Hyun Shin, June-Ui Song, Hae-Bum Lee, Bong-Yong Lee
  • Publication number: 20110274970
    Abstract: A negative active material containing super-conductive nanoparticles coated with a high capacity negative material and a lithium battery including the same are provided, wherein the super-conductive nanoparticles have a structure in which polycyclic nano-sheets are stacked upon one another along a direction perpendicular to a first plane. The polycyclic nano-sheets include hexagonal rings of six carbons atoms linked to each other, wherein a first carbon and a second carbon have a distance therebetween of L1. L2 is a distance between a third carbon and a fourth carbon, and the arrangement of the polycyclic nano-sheets is such that L1?L2. The super-conductive nanoparticle is used as a negative active material in a lithium battery, and the super-conductive nanoparticle increases the capacity, thereby improving the capacity and lifespan of the lithium battery.
    Type: Application
    Filed: January 28, 2011
    Publication date: November 10, 2011
    Inventors: So-Ra Lee, Jae-Myung Kim, Kyu-Nam Joo, Jong-Hee Lee, Tae-Sik Kim, Ui-Song Do, Young-Su Kim, Deok-Hyun Kim, Gu-Hyun Chung, Beom-Kwon Kim, Yong-Mi Yu, Chang-Su Shin
  • Publication number: 20110195308
    Abstract: A secondary particle and a lithium battery including the same are provided wherein the secondary particle includes a plurality of primary particles and each primary particle contains n polycyclic nano-sheets disposed upon one another. The polycyclic nano-sheets include hexagonal rings of six carbon atoms linked to each other, wherein a first carbon and a second carbon have a distance therebetween of L1. L2 is a distance between a third carbon and a fourth carbon, and the arrangement of the polycyclic nano-sheets is such that L1?L2. The secondary particle is used as a negative active material in the lithium battery, and the secondary particle contains pores, thereby allowing for effective intercalating and deintercalating of the lithium ions into the secondary particle to impart improved capacity and cycle lifespan.
    Type: Application
    Filed: August 27, 2010
    Publication date: August 11, 2011
    Inventors: So-Ra Lee, Jae-Myung Kim, Kyu-Nam Joo, Tae-Sik Kim, Jong-Hee Lee, Ui-Song Do, Young-Su Kim, Beom-Kwon Kim, Deok-Hyun Kim, Gu-Hyun Chung, Chang-Su Shin, Yong-Mi Yu
  • Patent number: 7952266
    Abstract: A white phosphor, and a light emission device including the white phosphor, and a display device including the white phosphor, the white phosphor including 40 to 45 parts by weight of a blue phosphor selected from the group consisting of ZnS:(Ag,Cl), ZnS:(Ag,Al), ZnS:(Ag,Al,Cl), and combinations thereof; 30 to 40 parts by weight of a green phosphor selected from the group consisting of ZnS:(Cu,Al), ZnS:(Cu,Au,Al), and combinations thereof; and 20 to 25 parts by weight of a red phosphor selected from the group consisting of Y2O3:Eu, Y2O3:(Eu,Tb), Y2O2S:Eu, Y2O2S:(Eu,Tb), and combinations thereof. The white phosphor shows a color temperature of from 12,000K and 14,000K.
    Type: Grant
    Filed: August 6, 2008
    Date of Patent: May 31, 2011
    Assignee: Samsung SDI Co., Ltd.
    Inventors: Yong-Chan You, Jae-Woo Bae, Gyeong-Jae Heo, Sang-Hyuk Lee, Kyu-Chan Park, Sun-Hwa Kwon, Ji-Hyun Kim, Young-Suk Cho, Ui-Song Do, Hui-Young Ku, Yoo-Jung Lee, Byung-Kyun Kim
  • Patent number: 7839468
    Abstract: A white phosphor, a light emission device including the same, and a liquid crystal display (LCD) including the light emission device as a backlight unit. The white phosphor includes: 40 to 50 parts by weight of a blue phosphor selected from the group consisting of ZnS:(Ag,Cl), ZnS:(Ag,Al), ZnS:(Ag,Al,Cl), and a combination thereof; 23 to 36 parts by weight of a green phosphor including (Sr1-xCax)Ga2S4:Eu (0?x<0.2) and a compound selected from the group consisting of ZnS:(Cu,Al), ZnS:(Cu,Au,Al), and a combination thereof; and 20 to 30 parts by weight of a red phosphor selected from the group consisting of Y2O3:Eu, Y2O3:(Eu,Tb), Y2O2S:Eu, Y2O2S:(Eu,Tb), and a combination thereof.
    Type: Grant
    Filed: August 27, 2008
    Date of Patent: November 23, 2010
    Assignee: Samsung SDI Co., Ltd.
    Inventors: Yong-Chan You, Jae-Woo Bae, Gyeong-Jae Heo, Kyu-Chan Park, Sang-Hyuk Lee, Sun-Hwa Kwon, Ji-Hyun Kim, Young-Suk Cho, Ui-Song Do, Byung-Kyun Kim, Hui-Young Ku, Yoo-Jung Lee