D-Index & Metrics Best Publications
Keun-Kyu Song

Keun-Kyu Song

Samsung (South Korea)
Republic of Korea

Overview

What is he best known for?

The fields of study he is best known for:

  • Semiconductor
  • Electrical engineering
  • Optoelectronics

Thin-film transistor, Optoelectronics, Threshold voltage, Transistor and Dielectric are his primary areas of study. His Thin-film transistor study necessitates a more in-depth grasp of Layer. His work in the fields of Optoelectronics, such as Doping and Semiconductor, overlaps with other areas such as Annealing.

Keun-Kyu Song has included themes like Drain current and Indium zinc oxide in his Semiconductor study. His Transistor research incorporates themes from Nanowire and Nanomaterials. The various areas that Keun-Kyu Song examines in his Dielectric study include Yttrium and Gate dielectric.

His most cited work include:

  • Fully Flexible Solution‐Deposited ZnO Thin‐Film Transistors (140 citations)
  • High-performance low-temperature solution-processable ZnO thin film transistors by microwave-assisted annealing (135 citations)
  • Four color liquid crystal display and panel therefor (118 citations)

What are the main themes of his work throughout his whole career to date?

His primary areas of investigation include Optoelectronics, Thin-film transistor, Layer, Substrate and Substrate. His research in Optoelectronics is mostly focused on Organic semiconductor. His study in Thin-film transistor is interdisciplinary in nature, drawing from both Semiconductor, Dielectric and Threshold voltage, Transistor, Gate dielectric.

As a part of the same scientific study, Keun-Kyu Song usually deals with the Transistor, concentrating on Doping and frequently concerns with Indium. His work on Active layer is typically connected to Conductor as part of general Substrate study, connecting several disciplines of science. Keun-Kyu Song combines subjects such as Signal lines, Electronic engineering and Display device with his study of Substrate.

He most often published in these fields:

  • Optoelectronics (78.95%)
  • Thin-film transistor (78.95%)
  • Layer (33.68%)

What were the highlights of his more recent work (between 2011-2020)?

  • Thin-film transistor (78.95%)
  • Optoelectronics (78.95%)
  • Display device (20.00%)

In recent papers he was focusing on the following fields of study:

Keun-Kyu Song focuses on Thin-film transistor, Optoelectronics, Display device, Substrate and Transistor. In his works, he undertakes multidisciplinary study on Thin-film transistor and Inkjet printing. His Optoelectronics research is multidisciplinary, incorporating perspectives in Threshold voltage and Layer.

In the field of Layer, his study on Substrate overlaps with subjects such as Bend radius. His work deals with themes such as Signal lines, Light emitting device, Electrical engineering and Organic semiconductor, which intersect with Substrate. The various areas that he examines in his Solution processed study include Yttrium and Gate dielectric.

Between 2011 and 2020, his most popular works were:

  • Solution-deposited Zr-doped AlOx gate dielectrics enabling high-performance flexible transparent thin film transistors (89 citations)
  • A solution-processed yttrium oxide gate insulator for high-performance all-solution-processed fully transparent thin film transistors (77 citations)
  • A solution-processed yttrium oxide gate insulator for high-performance all-solution-processed fully transparent thin film transistors (77 citations)

In his most recent research, the most cited papers focused on:

  • Electrical engineering
  • Semiconductor
  • Mathematics

Thin-film transistor, Transistor, Threshold voltage, Dielectric and Optoelectronics are his primary areas of study. His research integrates issues of High-κ dielectric, Co doped and Solution processed in his study of Thin-film transistor. His High-κ dielectric study integrates concerns from other disciplines, such as Thin film and Doping.

His study of Co doped brings together topics like Oxygen, Stress, Temperature stress and Aqueous solution. His Solution processed research is multidisciplinary, relying on both Yttrium and Gate dielectric.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Display device and manufacturing method therefor

Tae-Young Choi;Keun-Kyu Song;Seung-Hwan Cho.
(2007)

292 Citations

Fully Flexible Solution‐Deposited ZnO Thin‐Film Transistors

Keunkyu Song;Junghun Noh;Taehwan Jun;Yangho Jung.
Advanced Materials (2010)

178 Citations

Four color liquid crystal display and panel therefor

Keun-Kyu Song;Jeong-Ye Choi;Nam-Seok Roh;Mun-pyo Hong.
(2003)

177 Citations

High-performance low-temperature solution-processable ZnO thin film transistors by microwave-assisted annealing

Taehwan Jun;Keunkyu Song;Youngmin Jeong;Kyoohee Woo.
Journal of Materials Chemistry (2011)

175 Citations

Solution-deposited Zr-doped AlOx gate dielectrics enabling high-performance flexible transparent thin film transistors

Wooseok Yang;Keunkyu Song;Yangho Jung;Sunho Jeong.
Journal of Materials Chemistry C (2013)

160 Citations

Direct nanoprinting by liquid-bridge-mediated nanotransfer moulding

Jae K. Hwang;Sangho Cho;Jeong M. Dang;Eun B. Kwak.
Nature Nanotechnology (2010)

148 Citations

Inkjet-Printed Zinc Tin Oxide Thin-Film Transistor

Dongjo Kim;Youngmin Jeong;Keunkyu Song;Seong Kee Park.
Langmuir (2009)

145 Citations

Bias-Stress-Stable Solution-Processed Oxide Thin Film Transistors

Youngmin Jeong;Changdeuck Bae;Dongjo Kim;Keunkyu Song.
ACS Applied Materials & Interfaces (2010)

123 Citations

A solution-processed yttrium oxide gate insulator for high-performance all-solution-processed fully transparent thin film transistors

Keunkyu Song;Keunkyu Song;Wooseok Yang;Yangho Jung;Sunho Jeong.
Journal of Materials Chemistry (2012)

116 Citations

Liquid crystal display and panel therefor

Baek-woon Lee;Keun-Kyu Song;Joon-Hak Oh.
(2005)

111 Citations

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