Patents by Inventor Kyung Ho Cho
Kyung Ho Cho 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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Publication number: 20240177114Abstract: Provided are a system for business process automation and a method thereof. The system according to some embodiments may include a connect manager configured to register and manage application programming interface (API) information for services, a process execution engine configured to execute a target business process comprising a particular service task, which is a task using a particular service provided by a service module, and a connect broker configured to acquire API information for the particular service, registered through the connect manager, during execution of the target business process in response to a request from the process execution engine, and process the particular service task by sending a request for the particular service to the service module using the acquired API information.Type: ApplicationFiled: November 13, 2023Publication date: May 30, 2024Applicant: SAMSUNG SDS CO., LTD.Inventors: Young Sik JUNG, Moo Young CHO, Kang Hyeok LEE, Hyong Gook KIM, In Yong JANG, Chul Ho CHOI, Jeong Heon KIM, Ho Kyung YOO, Yeong Ho LEE, Kyung Ho CHO, Tae Jin HWANG, Jung Hee YOON, Hee Jong KIM
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Patent number: 11801496Abstract: The present disclosure relates to a catalyst for preparing 1,2-pentanediol from furfural and/or furfuryl alcohol, and more particularly to a catalyst, which is configured such that a catalytically active metal containing both at least one transition metal and tin (Sn) is supported on a basic support and is capable of increasing reaction selectivity for 1,2-pentanediol, and a method of preparing 1,2-pentanediol using the same.Type: GrantFiled: July 4, 2019Date of Patent: October 31, 2023Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Young Kyu Hwang, Do Young Hong, Jaesung Kwak, Pandharinath Pravin Upare, Dong Won Hwang, Jung Ho Lee, Jong-San Chang, Joung-mo Cho, U Hwang Lee, Kyung Ho Cho, Su Kyung Lee
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Publication number: 20220323931Abstract: The present invention relates to a metal-organic framework (MOF) having a three-dimensional porous structure and being represented by the chemical formula of [Al8(OH)a(BTC)b(IPA)c(L)d], a preparation method therefor, and a use thereof as an adsorbent and a catalyst.Type: ApplicationFiled: August 28, 2020Publication date: October 13, 2022Applicant: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Jong-San CHANG, Kyung Ho CHO, U Hwang LEE, Young Kyu HWANG, Ji Woong YOON
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Patent number: 11285455Abstract: The present invention relates to an organic-inorganic hybrid nanoporous material, maintaining a nanoporous skeleton structure formed by coordination of an organic ligand containing an aromatic compound to a trivalent central metal ion, and further having an intramolecular acid anhydride functional group modified on the aromatic compound of the nanoporous skeleton structure, and thereby exhibits selectivity for olefins, and an adsorbent comprising the same. Specifically, the organic-inorganic hybrid nanoporous material of the present invention exhibits an excellent olefin-selective adsorption capacity through differences in adsorption equilibrium and adsorption rate, and thus can be usefully employed in the separation of C2-C4 hydrocarbons.Type: GrantFiled: October 17, 2017Date of Patent: March 29, 2022Assignee: Korea Research Institute of Chemical TechnologyInventors: Ji Woong Yoon, Jong San Chang, Young Kyu Hwang, Kyung Ho Cho, U Hwang Lee, Su Kyung Lee, Ji Sun Lee
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Publication number: 20220001328Abstract: The present invention provides an energy-saving air dryer comprising: a compressor for compressing the air in the atmosphere to form compressed air; a heat exchanger which is disposed on one side of the compressor and recovers compression heat from the compressed air; a pre-filter which is disposed on one side of the heat exchanger and removes pollutants from the compressed air; a pair of adsorption towers which communicate with the pre-filter and are filled with an adsorbent, wherein dry air is formed when compressed air flows into the adsorption towers according to the opening and closing of a valve and moisture is adsorbed, or moisture is desorbed from the adsorbent when dry air retaining the compression heat recovered in the heat exchanger is transferred to the adsorption towers; and an after filter which extends from the one side of the adsorption towers and removes pollutants from the dry air from which moisture has been removed.Type: ApplicationFiled: October 25, 2019Publication date: January 6, 2022Inventors: Ji Woong YOON, Jong-San CHANG, U Hwang LEE, Young Kyu HWANG, Kyung Ho CHO
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Publication number: 20210346873Abstract: The present disclosure relates to a catalyst for preparing 1,2-pentanediol from furfural and/or furfuryl alcohol, and more particularly to a catalyst, which is configured such that a catalytically active metal containing both at least one transition metal and tin (Sn) is supported on a basic support and is capable of increasing reaction selectivity for 1,2-pentanediol, and a method of preparing 1,2-pentanediol using the same.Type: ApplicationFiled: July 4, 2019Publication date: November 11, 2021Inventors: Young Kyu HWANG, Do Young HONG, Jaesung KWAK, Pandharinath Pravin UPARE, Dong Won HWANG, Jung Ho LEE, Jong-San CHANG, Joung-mo CHO, U Hwang LEE, Kyung Ho CHO, Su Kyung LEE
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Patent number: 10647738Abstract: The present invention relates to a xylene-based amphiphilic compound, a method for preparing the same, and a method for extracting, solubilizing, stabilizing or crystallizing a membrane protein using the same. By using the xylene-based compound according to the present invention, a membrane protein may be stably stored in an aqueous solution for a long time, and may be applied in functional and structural analyses. The structural and functional analysis of the membrane protein is one of the fields of highest interest in biology and chemistry, and the xylene-based compound according to the present invention can be applied in research on protein structure that is closely related to development of a new drug.Type: GrantFiled: April 15, 2016Date of Patent: May 12, 2020Assignee: Industry-University Cooperation FoundationInventors: Pil Seok Chae, Kyung Ho Cho
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Patent number: 10640527Abstract: The present invention relates to a mesitylene-cored amphiphile, a method of preparing the same and a method of extraction, solubilization, stabilization, crystallization or analysis of a membrane protein using the same. When a mesitylene-cored compound according to the present invention is used, membrane proteins can be stored in a stable conformation for a long time in an aqueous solution in comparison with conventional compounds, by which the membrane proteins are usable in both functional and structural analyses thereof. The functional and structural analyses of membrane proteins are one of the fields that are most spotlighted in current biology and chemistry. The present invention can be used to research on a protein structure closely related to new drug development.Type: GrantFiled: August 31, 2016Date of Patent: May 5, 2020Assignee: Industry-University Cooperation Foundation Hanyang University Erica CampusInventors: Pil Seok Chae, Kyung Ho Cho
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Patent number: 10644350Abstract: Provided is a secondary battery having a battery case which accommodates an electrode assembly including a cathode, a anode, and a separator disposed between the cathode and the anode, together with an electrolyte, wherein one or more selected from the group consisting of the cathode, the anode, the separator, the electrolyte, and the interior of the battery case include, as a water adsorbent, a first organic-inorganic hybrid nanoporous material which may be regenerated by desorbing 70% or more of a total adsorption amount of adsorbed water at 150° C. or lower; and optionally, a second organic-inorganic hybrid nanoporous material, of which water adsorption capacity is higher than water desorption capacity at a relative humidity p/p0 of 0.3 or less (herein, p0 represents a saturated vapor pressure at an application temperature and p represents a vapor pressure upon adsorption).Type: GrantFiled: March 16, 2018Date of Patent: May 5, 2020Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Jong San Chang, Young Kyu Hwang, Kyung Ho Cho, U Hwang Lee, Sue Kyung Lee, Do Young Hong, Dong Won Hwang
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Publication number: 20190291075Abstract: The present invention relates to an organic-inorganic hybrid nanoporous material, maintaining a nanoporous skeleton structure formed by coordination of an organic ligand containing an aromatic compound to a trivalent central metal ion, and further having an intramolecular acid anhydride functional group modified on the aromatic compound of the nanoporous skeleton structure, and thereby exhibits selectivity for olefins, and an adsorbent comprising the same. Specifically, the organic-inorganic hybrid nanoporous material of the present invention exhibits an excellent olefin-selective adsorption capacity through differences in adsorption equilibrium and adsorption rate, and thus can be usefully employed in the separation of C2-C4 hydrocarbons.Type: ApplicationFiled: October 17, 2017Publication date: September 26, 2019Applicant: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Ji Woong YOON, Jong San CHANG, Young Kyu HWANG, Kyung Ho CHO, U Hwang LEE, Su Kyung LEE, Ji Sun LEE
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Publication number: 20190241597Abstract: The present invention relates to a mesitylene-cored amphiphile, a method of preparing the same and a method of extraction, solubilization, stabilization, crystallization or analysis of a membrane protein using the same. When a mesitylene-cored compound according to the present invention is used, membrane proteins can be stored in a stable conformation for a long time in an aqueous solution in comparison with conventional compounds, by which the membrane proteins are usable in both functional and structural analyses thereof. The functional and structural analyses of membrane proteins are one of the fields that are most spotlighted in current biology and chemistry. The present invention can be used to research on a protein structure closely related to new drug development.Type: ApplicationFiled: August 31, 2016Publication date: August 8, 2019Applicant: Industry-University Cooperation Foundation Hanyang Erica CampusInventors: Pil Seok CHAE, Kyung Ho CHO
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Patent number: 10276847Abstract: A rechargeable battery pack including unit cells each including a rechargeable battery, barriers coupled to each other at an outer circumference of the unit cells and each located between respective ones of the unit cells, and a pack housing that accommodates the unit cells and the barriers, and that is coupled to the barriers by tight-fitting.Type: GrantFiled: August 9, 2016Date of Patent: April 30, 2019Assignee: Samsung SDI Co., Ltd.Inventors: Kyung-Ho Cho, Byung-Don Kwon, Ji-Soon Lim
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Patent number: 10253012Abstract: The present invention relates to a method and apparatus for preparation of lactide using a lactide purification process, comprising introducing an aqueous solution comprising lactic acid into a reactor filled with a catalyst and reacting the same to produce crude lactide vapor; and purifying the crude lactide vapor to produce lactide crystals, wherein a first purification comprises collecting and crystallizing the crude lactide vapor using a first solvent to produce lactide crystals, and separating the lactide crystal from a residue through filtration.Type: GrantFiled: October 11, 2016Date of Patent: April 9, 2019Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Dong Won Hwang, Jong San Chang, Young Kyu Hwang, U Hwang Lee, Do Young Hong, Su Kyung Lee, Kyung Ho Cho, Pravin Pandharinath Upare
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Patent number: 10213048Abstract: The present invention relates to a heat-retaining tray for a pizza, comprising one of a support means and an electricity supply means. The present invention provides a heat-retaining tray comprising: an upper plate having a plurality of protrusions formed such that food is laid on the upper surface of the plurality of protrusions; a side wall integrally formed vertically on the periphery of the upper plate; and a temperature increase unit for raising the temperature of the upper plate.Type: GrantFiled: July 21, 2015Date of Patent: February 26, 2019Assignees: Moru Co., Ltd., Jeju National University Industry-Academic Cooperation FoundationInventors: Ho Won Lee, Seung Geon Kim, Kyung Ho Cho, Kyung Mo Im
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Patent number: 10195592Abstract: The present invention relates to a catalyst for transfer hydrogenation, which is formed of a metal-organic framework having an MOF-808 based X-ray diffraction pattern. A high crystalline porous MOF-808 based metal-organic framework exhibits excellent performance in the transfer hydrogenation of ethyl levulinate (EL) at high and low temperature.Type: GrantFiled: May 2, 2017Date of Patent: February 5, 2019Assignee: KOREA RESEARCH INSTITUTE OF CHEMICAL TECHNOLOGYInventors: Young Kyu Hwang, Jong San Chang, Do Young Hong, Dong Won Hwang, U Hwang Lee, Kyung Ho Cho, Anil Haribhau Valekar, Su Kyung Lee
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Publication number: 20180339955Abstract: The present invention relates to a method for preparing mannitol which includes performing the hydrogenation of fructose in the presence of a Cu-based nanocomposite catalyst, for example, a nanocomposite catalyst of CuO(x)/SiO2(100-x) (wherein x is a real number from 20 to 90), using butanol as a solvent.Type: ApplicationFiled: May 29, 2018Publication date: November 29, 2018Inventors: Dong Won HWANG, Pravin Pandharinath UPARE, Young Kyu HWANG, Do Young HONG, Jong San CHANG, U Hwang LEE, Su Kyung LEE, Kyung Ho CHO
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Patent number: 10138185Abstract: The present invention relates to a method for preparing mannitol which includes performing the hydrogenation of fructose in the presence of a Cu-based nanocomposite catalyst, for example, a nanocomposite catalyst of CuO(x)/SiO2(100-x) (wherein x is a real number from 20 to 90), using butanol as a solvent.Type: GrantFiled: May 29, 2018Date of Patent: November 27, 2018Assignee: Korea Research Institute of Chemical TechnologyInventors: Dong Won Hwang, Pravin Pandharinath Upare, Young Kyu Hwang, Do Young Hong, Jong San Chang, U Hwang Lee, Su Kyung Lee, Kyung Ho Cho
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Patent number: 10100026Abstract: The present disclosure relates to the preparation of a useful compound, which can be used as an intermediate for preparing an important compound in the industrial field from a homoserine-based compound, and provides a process for treating a homoserine-based compound, capable of mass-producing a useful compound from a homoserine-based compound in a simple manner with excellent efficiency.Type: GrantFiled: April 10, 2015Date of Patent: October 16, 2018Assignees: CJ Cheiljedang Corporation, Korea Research Institute of Chemical TechnologyInventors: Young Lyeol Yang, Byung Sik Kim, Jeong Hyun Kim, Jung Ho Lee, Hyun Kwan Shin, Ju Nam Kim, Kyung Ho Cho
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Publication number: 20180273570Abstract: The present invention relates to a xylene-based amphiphilic compound, a method for preparing the same, and a method for extracting, solubilizing, stabilizing or crystallizing a membrane protein using the same. By using the xylene-based compound according to the present invention, a membrane protein may be stably stored in an aqueous solution for a long time, and may be applied in functional and structural analyses. The structural and functional analysis of the membrane protein is one of the fields of highest interest in biology and chemistry, and the xylene-based compound according to the present invention can be applied in research on protein structure that is closely related to development of a new drug.Type: ApplicationFiled: April 15, 2016Publication date: September 27, 2018Inventors: Pil Seok Chae, Kyung Ho Cho
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Publication number: 20180261882Abstract: Provided is a secondary battery having a battery case which accommodates an electrode assembly including a cathode, a anode, and a separator disposed between the cathode and the anode, together with an electrolyte, wherein one or more selected from the group consisting of the cathode, the anode, the separator, the electrolyte, and the interior of the battery case include, as a water adsorbent, a first organic-inorganic hybrid nanoporous material which may be regenerated by desorbing 70% or more of a total adsorption amount of adsorbed water at 150° C. or lower; and optionally, a second organic-inorganic hybrid nanoporous material, of which water adsorption capacity is higher than water desorption capacity at a relative humidity p/p0 of 0.3 or less (herein, p0 represents a saturated vapor pressure at an application temperature and p represents a vapor pressure upon adsorption).Type: ApplicationFiled: March 16, 2018Publication date: September 13, 2018Inventors: Jong San CHANG, Young Kyu Hwang, Kyung Ho Cho, U Hwang Lee, Sue Kyung Lee, Do Young Hong, Dong Won Hwang