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Dive into the research topics where Jin Su Kim is active.

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Featured researches published by Jin Su Kim.


Nano Letters | 2013

High Throughput Ultralong (20 cm) Nanowire Fabrication Using a Wafer-Scale Nanograting Template

Jeongho Yeon; Young Jae Lee; Dong Eun Yoo; Kyoung Jong Yoo; Jin Su Kim; Jun Lee; Jeong Oen Lee; Seon-Jin Choi; Gun-Wook Yoon; Dong Wook Lee; Gi Seong Lee; Hae Chul Hwang; Jun-Bo Yoon

Nanowires are being actively explored as promising nanostructured materials for high performance flexible electronics, biochemical sensors, photonic applications, solar cells, and secondary batteries. In particular, ultralong (centimeter-long) nanowires are highly attractive from the perspective of electronic performance, device throughput (or productivity), and the possibility of novel applications. However, most previous works on ultralong nanowires have issues related to limited length, productivity, difficult alignment, and deploying onto the planar substrate complying with well-matured device fabrication technologies. Here, we demonstrate a highly ordered ultralong (up to 20 cm) nanowire array, with a diameter of 50 nm (aspect ratio of up to 4,000,000:1), in an unprecedented large (8 in.) scale (2,000,000 strands on a wafer). We first devised a perfectly connected ultralong nanograting master template on the whole area of an 8 in. substrate using a top-down approach, with a density equivalent to that achieved with e-beam lithography (100 nm). Using this large-area, ultralong, high-density nanograting template, we developed a fast and effective method for fabricating up to 20 cm long nanowire arrays on a plastic substrate, composed of metal, dielectric, oxide, and ferroelectric materials. As a suggestion of practical application, a prototype of a large-area aluminum wire grid polarizer was demonstrated.


Archive | 2010

Wire Grid Polarizer, Liquid Crystal Device Including The Wire Grid Polarizer, 3-D Stereoscopic Image Display Device Including The Wire Grid Polarizer, and Method of Manufacturing The Wire Grid Polarizer

Young Jae Lee; Jin Su Kim; Jun Lee; Ki-Cheol Kim


Archive | 2011

Method for manufacturing a wire grid polarizer

Jin Su Kim; Kyoung Jong Yoo; Young-Jae Lee; Jun Lee


Archive | 2012

Nanowire manufacturing method

Young Jae Lee; Kyoung Jong Yoo; Jun Lee; Jin Su Kim; Jae Wan Park


Archive | 2011

METHOD FOR FABRICATING LARGE-AREA NANOSCALE PATTERN

Young-Jae Lee; Kyoung Jong Yoo; Jin Su Kim; Jun Lee; Yong In Lee; Jun-Bo Yoon; Jeongho Yeon; Joohyung Lee; Jeong Oen Lee


Archive | 2010

Wire grid polarizer, lcd device including the same, 3d stereoscopic image display device, and manufacturing method of wire grid polarizer

Young Jae Lee; 이영재; Jin Su Kim; 김진수; Jun Lee; 이준; Ki-Cheol Kim; 김기철


Archive | 2012

NANOWIRE GRID STRUCTURE

Young Jae Lee; Kyoung Jong Yoo; Jin Su Kim; Jun Lee


Archive | 2012

Transparent substrate having nano pattern and method of manufacturing the same

Jun Lee; Kyoung Jong Yoo; Young Jae Lee; Jin Su Kim


Archive | 2011

Wire grid polarizer and method for manufacturing the same

Jin Su Kim; Jun Lee; Young-Jae Lee; Kyoung Jong Yoo


Archive | 2011

Wire grid polarizer and liquid crystal display including the same

Jin Su Kim; Jun Lee; Young-Jae Lee; Kyoung Jong Yoo

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Jeong Oen Lee

California Institute of Technology

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Dong Wook Lee

Chungbuk National University

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