Patents by Inventor Sung-Yeon Jang
Sung-Yeon Jang 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).
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Patent number: 11637231Abstract: Disclosed are an organic thermoelectric material and a thermoelectric generator including the same. More particularly, the thermoelectric generator includes an ionically conductive active layer containing a polyanion including an anionic group and a counter cation in a repeat unit thereof; a conductive polymer; and a polyvalent crosslinking agent as a single molecule including a plurality of acid functional groups. First and second electrodes are disposed to be connected to the ionically conductive active layer.Type: GrantFiled: October 16, 2020Date of Patent: April 25, 2023Assignees: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATION, UNIST (Ulsan National Institute of Science and Technology)Inventors: Ju-Won Jeon, Sung-Yeon Jang
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Patent number: 11305091Abstract: Disclosed are an apparatus and a system for managing circadian rhythm. The apparatus includes an illuminance measuring portion which measures a bio illuminance value of external light using a circadian lambda filter which passes the external light along according to a circadian rhythm sensitivity curve and a visual lambda filter which passes the external light along according to a visual sensitivity curve, a controller which outputs a control signal for reinforcing a user's circadian rhythm on the basis of the bio illuminance value, and a circadian rhythm reinforcing portion which emits light of a circadian wavelength band toward the user according to the control signal.Type: GrantFiled: July 29, 2019Date of Patent: April 19, 2022Assignee: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATIONInventors: Hyun Sun Mo, Young Rag Do, Dae Jeong Kim, Dae Hwan Kim, Sung Yeon Jang, In Hwan Jung, Dong Myung Kim, Seong Jin Choi, Sanggyu Yim, Hyung Min Kim, Sun Woong Choi, Gu Min Jeong, Seung Min Lee
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Publication number: 20210119100Abstract: Disclosed are an organic thermoelectric material and a thermoelectric generator including the same. More particularly, the thermoelectric generator includes an ionically conductive active layer containing a polyanion including an anionic group and a counter cation in a repeat unit thereof; a conductive polymer; and a polyvalent crosslinking agent as a single molecule including a plurality of acid functional groups. First and second electrodes are disposed to be connected to the ionically conductive active layer.Type: ApplicationFiled: October 16, 2020Publication date: April 22, 2021Applicants: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATION, UNIST (Ulsan National Institute of Science and Technology)Inventors: Ju-Won JEON, Sung-Yeon JANG
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Publication number: 20200381185Abstract: The present invention relates to a method for preparing a hole transporting material for a perovskite solar cell with improved long-term stability, a hole transporting material for a perovskite solar cell prepared thereby, and a perovskite solar cell including the same, and more particularly, to a method for preparing a hole transporting material for a hole transporting material for a perovskite solar cell, which has high hole mobility, and thus is excellent in power conversion efficiency and may simultaneously realize excellent long-term stability, a hole transporting material for a perovskite solar cell prepared thereby, and a perovskite solar cell which includes the same, and thus may simultaneously realize excellent power conversion efficiency and long-term stability.Type: ApplicationFiled: October 30, 2019Publication date: December 3, 2020Inventors: In Hwan JUNG, Sung Yeon JANG, Randi AZMI, Jun Ho KIM
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Publication number: 20200230346Abstract: Disclosed are an apparatus and a system for managing circadian rhythm. The apparatus includes an illuminance measuring portion which measures a bio illuminance value of external light using a circadian lambda filter which passes the external light along according to a circadian rhythm sensitivity curve and a visual lambda filter which passes the external light along according to a visual sensitivity curve, a controller which outputs a control signal for reinforcing a user's circadian rhythm on the basis of the bio illuminance value, and a circadian rhythm reinforcing portion which emits light of a circadian wavelength band toward the user according to the control signal.Type: ApplicationFiled: July 29, 2019Publication date: July 23, 2020Applicant: KOOKMIN UNIVERSITY INDUSTRY ACADEMY COOPERATION FOUNDATIONInventors: Hyun Sun Mo, Young Rag Do, Dae Jeong Kim, Dae Hwan Kim, Sung Yeon Jang, In Hwan Jung, Dong Myung Kim, Seong Jin Choi, Sanggyu Yim, Hyung Min Kim, Sun Woong Choi, Gu Min Jeong, Seung Min Lee
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Patent number: 9994488Abstract: An ultrafine continuous fibrous ceramic filter, which comprises a filtering layer of a fibrous porous body, wherein the fibrous porous body comprises continuous ultrafine fibers of metal oxide which are randomly arranged and layered, and powdery nano-alumina incorporated into the ultrafine fibers or coated thereon, the ultrafine fibers being obtained by electrospinning a spinning solution comprising a metal oxide precursor sol-gel solution, and optionally, a polymer resin, and sintering the electrospun fibers, in which the ultrafine fibers have an average diameter of 10˜500 nm, and the fibrous porous body has a pore size of maximum frequency ranging from 0.05 to 2 ?m, exhibits high filtration efficiency at a high flow rate, and can be regenerated.Type: GrantFiled: May 4, 2016Date of Patent: June 12, 2018Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Seong Mu Jo, Dong Young Kim, Sung-Yeon Jang, Jeong Joo Choo
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Publication number: 20160244373Abstract: An ultrafine continuous fibrous ceramic filter, which comprises a filtering layer of a fibrous porous body, wherein the fibrous porous body comprises continuous ultrafine fibers of metal oxide which are randomly arranged and layered, and powdery nano-alumina incorporated into the ultrafine fibers or coated thereon, the ultrafine fibers being obtained by electrospinning a spinning solution comprising a metal oxide precursor sol-gel solution, and optionally, a polymer resin, and sintering the electrospun fibers, in which the ultrafine fibers have an average diameter of 10˜500 nm, and the fibrous porous body has a pore size of maximum frequency ranging from 0.05 to 2 ?m, exhibits high filtration efficiency at a high flow rate, and can be regenerated.Type: ApplicationFiled: May 4, 2016Publication date: August 25, 2016Inventors: Seong Mu JO, Dong Young KIM, Sung-Yeon JANG, Jeong Joo CHOO
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Patent number: 9368287Abstract: A dye-sensitized solar cell having improved photoelectric conversion characteristic includes a metal oxide layer having dye-adsorbed metal oxide nanoparticles, wherein the metal oxide nanoparticles are formed by electrospinning a mixed solution of a metal oxide precursor and a polymer into ultrafine composite fibers, and thermally compressing and sintering the ultrafine composite fibers.Type: GrantFiled: August 27, 2008Date of Patent: June 14, 2016Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Seong-Mu Jo, Dong-Young Kim, Sung-Yeon Jang, Nam-Gyu Park, Byoung-Hong Yi
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Patent number: 9180412Abstract: An ultrafine fiber-based composite separator comprising a fibrous porous body which comprises ultrafine metal oxide/polymer composite fibers, or ultrafine metal oxide fibers and a polymer resin coating layer formed on the surface thereof, the ultrafine fibers being continuously randomly arranged and layered, and obtained by electrospinning a metal oxide precursor sol-gel solution or a mixture of a metal oxide precursor sol-gel solution and a polymer resin solution, wherein the surface of the metal oxide/polymer composite fibers has a uniform mixing composition of the metal oxide and the polymer resin, in which the separator has a heat shrinkage rate at 150˜250° C. of 10% or less and does not break down due to melting at a temperature of 200° C. or lower, has low heat shrinkage rate, and superior heat resistance and ionic conductivity, being capable of providing improved cycle and power properties when used in manufacturing a battery.Type: GrantFiled: April 18, 2011Date of Patent: November 10, 2015Inventors: Seong Mu Jo, Dong Young Kim, Sung-Yeon Jang
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Patent number: 9133549Abstract: The present invention provides a gas sensor, including: a sensor substrate provided with an electrode; and a thin layer of sensor material formed by spraying a solution in which metal oxide nanoparticles are dispersed onto the sensor substrate. The gas sensor is advantageous in that a sensor material is formed into a porous thin layer containing metal oxide nanoparticles having a large specific surface area, thus realizing high sensitivity on the ppb scale and a high reaction rate. Further, the gas sensor is advantageous in that it can be manufactured at room temperature, and the thickness of a sensor material can be easily adjusted by adjusting the spray time, so that a thin gas sensor or a thick gas sensor can be easily manufactured.Type: GrantFiled: April 30, 2010Date of Patent: September 15, 2015Assignees: AMOGREENTECH CO., LTD., Korea Institute of Science and TechnologyInventors: Il-Doo Kim, Dong-Young Kim, Sung-Yeon Jang, Seong-Mu Jo, Jae-Min Hong, Yun-Seok Lee, Sung-Chul Yang
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Patent number: 8519045Abstract: Disclosed are a graphene composite nanofiber and a preparation method thereof. The graphene composite nanofiber is produced by dispersing graphenes to at least one of a surface and inside of a polymer nanofiber or a carbon nanofiber having a diameter of 1˜1000 nm, and the graphenes include at least one type of monolayer graphenes, and multilayer graphenes having a thickness of 10 nm or less. The graphene composite nanofiber can be applied to various industrial fields, e.g., a light emitting display, a micro resonator, a transistor, a sensor, a transparent electrode, a fuel cell, a solar cell, a secondary cell, and a composite material, owing to a unique structure and property of graphene.Type: GrantFiled: February 25, 2010Date of Patent: August 27, 2013Assignee: Korea Institute of Science and TechnologyInventors: Sung-Yeon Jang, Ho Seok Park, Seong Mu Jo, Dong Young Kim, Won Hi Hong, Sang Yup Lee, Tae Jung Park, Bong Gill Choi
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Patent number: 8486584Abstract: Disclosed is a method for fabricating a carbon material, by which carbon fibers or carbon tubes, particularly branched carbon fibers or carbon tubes, are obtained via a so-called self-growing process without using external carbon sources. The carbon material obtained by the method has a large specific surface area and further includes a metal catalyst, and thus may be used in cell materials for a fuel cell or secondary battery, hydrogen storage devices, capacitors, solar cells, display panel or the like.Type: GrantFiled: July 21, 2009Date of Patent: July 16, 2013Assignee: Korea Institute of Science and TechnologyInventors: Heung Yong Ha, Han-ik Joh, Seong Mu Jo, Soo-Kil Kim, Suk-Woo Nam, In Hwan Oh, Tae Hoon Lim, Seong Ahn Hong, Sung-Yeon Jang
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Publication number: 20120113565Abstract: The present invention discloses an improved electrode for a supercapacitor and a method of preparation thereof. The inventive electrode comprises a collector, a carbon substrate disposed on the collector comprising ultrafine carbon fibers having a specific surface area of at least 200 m2/g (BET) and a d002 value of 0.36 nm or less, and a metal oxide thin layer formed on the carbon substrate. The electrode of the subject invention retains a high specific capacitance during high-speed charging and discharging cycles.Type: ApplicationFiled: January 16, 2012Publication date: May 10, 2012Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Dong Young KIM, Seong Mu JO, Sung-Yeon JANG, Young Rack AHN
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Patent number: 8129211Abstract: A dye-sensitized solar cell comprising a semiconductor electrode prepared by spraying a metal oxide nanoparticle dispersion on a conductive substrate using an electric field to form a metal oxide nanoball layer which is composed of agglomerated metal oxide nanoparticles and has a high porosity and specific surface area, exhibits improved photoelectric properties even when a gel or solid electrolyte is used.Type: GrantFiled: October 6, 2009Date of Patent: March 6, 2012Assignee: Korea Institute of Science and TechnologyInventors: Dong Young Kim, Seong Mu Jo, Sung-Yeon Jang, Byung-Hong Lee, Hyun-Ju Kim
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Publication number: 20120042713Abstract: The present invention provides a gas sensor, including: a sensor substrate provided with an electrode; and a thin layer of sensor material formed by spraying a solution in which metal oxide nanoparticles are dispersed onto the sensor substrate. The gas sensor is advantageous in that a sensor material is formed into a porous thin layer containing metal oxide nanoparticles having a large specific surface area, thus realizing high sensitivity on the ppb scale and a high reaction rate. Further, the gas sensor is advantageous in that it can be manufactured at room temperature, and the thickness of a sensor material can be easily adjusted by adjusting the spray time, so that a thin gas sensor or a thick gas sensor can be easily manufactured.Type: ApplicationFiled: April 30, 2010Publication date: February 23, 2012Applicants: Korea Institute of Science and Technology, Amogreentech Co., Ltd.Inventors: Il-Doo Kim, Dong-Young Kim, Sung-Yeon Jang, Seong-Mu Jo, Jae-Min Hong, Yun-Seok Lee, Sung-Chul Yang
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Patent number: 8120892Abstract: The present invention discloses an improved electrode for a supercapacitor and a method of preparation thereof. The inventive electrode comprises a collector, a carbon substrate disposed on the collector comprising ultrafine carbon fibers having a specific surface area of at least 200 m2/g (BET) and a d002 value of 0.36 nm or less, and a metal oxide thin layer formed on the carbon substrate. The electrode of the subject invention retains a high specific capacitance during high-speed charging and discharging cycles.Type: GrantFiled: April 15, 2008Date of Patent: February 21, 2012Assignee: Korea Institute of Science and TechnologyInventors: Dong Young Kim, Seong Mu Jo, Sung-Yeon Jang, Young Rack Ahn
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Publication number: 20120003524Abstract: An ultrafine fiber-based composite separator comprising a fibrous porous body which comprises ultrafine metal oxide/polymer composite fibers, or ultrafine metal oxide fibers and a polymer resin coating layer formed on the surface thereof, the ultrafine fibers being continuously randomly arranged and layered, and obtained by electrospinning a metal oxide precursor sol-gel solution or a mixture of a metal oxide precursor sol-gel solution and a polymer resin solution, wherein the surface of the metal oxide/polymer composite fibers has a uniform mixing composition of the metal oxide and the polymer resin, in which the separator has a heat shrinkage rate at 150˜250° C. of 10% or less and does not break down due to melting at a temperature of 200° C. or lower, has low heat shrinkage rate, and superior heat resistance and ionic conductivity, being capable of providing improved cycle and power properties when used in manufacturing a battery.Type: ApplicationFiled: April 18, 2011Publication date: January 5, 2012Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Seong Mu JO, Dong Young KIM, Sung-Yeon JANG
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Publication number: 20110266213Abstract: An ultrafine continuous fibrous ceramic filter, which comprises a filtering layer of a fibrous porous body, wherein the fibrous porous body comprises continuous ultrafine fibers of metal oxide which are randomly arranged and layered, and powdery nano-alumina incorporated into the ultrafine fibers or coated thereon, the ultrafine fibers being obtained by electrospinning a spinning solution comprising a metal oxide precursor sol-gel solution, and optionally, a polymer resin, and sintering the electrospun fibers, in which the ultrafine fibers have an average diameter of 10˜500 nm, and the fibrous porous body has a pore size of maximum frequency ranging from 0.05 to 2 ?m, exhibits high filtration efficiency at a high flow rate, and can be regenerated.Type: ApplicationFiled: May 2, 2011Publication date: November 3, 2011Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Seong Mu JO, Dong Young KIM, Sung-Yeon JANG, Jeong Joo CHOO
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Publication number: 20100317790Abstract: Disclosed are a graphene composite nanofiber and a preparation method thereof. The graphene composite nanofiber is produced by dispersing graphenes to at least one of a surface and inside of a polymer nanofiber or a carbon nanofiber having a diameter of 1˜1000 nm, and the graphenes include at least one type of monolayer graphenes, and multilayer graphenes having a thickness of 10 nm or less. The graphene composite nanofiber can be applied to various industrial fields, e.g., a light emitting display, a micro resonator, a transistor, a sensor, a transparent electrode, a fuel cell, a solar cell, a secondary cell, and a composite material, owing to a unique structure and property of graphene.Type: ApplicationFiled: February 25, 2010Publication date: December 16, 2010Inventors: Sung-Yeon JANG, Ho Seok PARK, Seong Mu JO, Dong Young KIM, Won Hi HONG, Sang Yup LEE, Tae Jung PARK, Bong Gill CHOI
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Publication number: 20100084008Abstract: A dye-sensitized solar cell comprising a semiconductor electrode prepared by spraying a metal oxide nanoparticle dispersion on a conductive substrate using an electric field to form a metal oxide nanoball layer which is composed of agglomerated metal oxide nanoparticles and has a high porosity and specific surface area, exhibits improved photoelectric properties even when a gel or solid electrolyte is used.Type: ApplicationFiled: October 6, 2009Publication date: April 8, 2010Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Dong Young KIM, Seong Mu JO, Sung-Yeon JANG, Byung-Hong LEE, Hyun-Ju KIM