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公开(公告)号:US11961632B2
公开(公告)日:2024-04-16
申请号:US17539606
申请日:2021-12-01
Inventor: Jung-Yong Lee , Kyungmin Kim
CPC classification number: H01B13/0033 , D01D5/003 , H01B1/124
Abstract: There is provided a fabrication method of conductive nanonetworks using a mastermold by which, in forming the conductive nanonetworks, electrical properties and optical properties of the conductive nanonetworks are improved by excluding contact resistance between nanowires and minimizing surface roughness of the conductive nanonetworks, and a nanoelectrode having a large area can be easily formed by applying a method of replicating the conductive nanonetworks on the mastermold to a substrate. The fabrication method of conductive nanonetworks using a mastermold includes: preparing a mastermold that has a conductive nanonetwork replicating region patterned in relief; coating the mastermold with a conductive material; and forming conductive nanonetworks on an application target substrate by replicating a conductive material, with which the conductive nanonetwork replicating region is coated, onto the application target substrate.
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公开(公告)号:US09662710B2
公开(公告)日:2017-05-30
申请号:US14196576
申请日:2014-03-04
Inventor: Hyun-Woo Koo , Tae-Woong Kim , Jung-Yong Lee , Jaemin Lee , Seonju Jeong
CPC classification number: B22F9/24 , B22F1/0025 , B22F2301/255 , B22F2304/054 , C22C5/06
Abstract: A method of manufacturing silver nanowires includes: forming a first solution including a dispersion stabilizer and a polyol; forming a second solution including a dispersion stabilizer, a silver precursor, a halogen-ion donor, deionized water, and the polyol; forming a third solution by adding the second solution to the first solution; heating the third solution from a first temperature to a second temperature; and forming silver nanowires by maintaining the third solution at the second temperature.
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公开(公告)号:US20220181048A1
公开(公告)日:2022-06-09
申请号:US17539606
申请日:2021-12-01
Inventor: Jung-Yong Lee , Kyungmin Kim
Abstract: There is provided a fabrication method of conductive nanonetworks using a mastermold by which, in forming the conductive nanonetworks, electrical properties and optical properties of the conductive nanonetworks are improved by excluding contact resistance between nanowires and minimizing surface roughness of the conductive nanonetworks, and a nanoelectrode having a large area can be easily formed by applying a method of replicating the conductive nanonetworks on the mastermold to a substrate. The fabrication method of conductive nanonetworks using a mastermold includes: preparing a mastermold that has a conductive nanonetwork replicating region patterned in relief; coating the mastermold with a conductive material; and forming conductive nanonetworks on an application target substrate by replicating a conductive material, with which the conductive nanonetwork replicating region is coated, onto the application target substrate.
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