D-Index & Metrics Best Publications
Chong-Yun Kang

Chong-Yun Kang

Korea Institute of Science and Technology
Republic of Korea

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Semiconductor
  • Hydrogen

His scientific interests lie mostly in Nanotechnology, Piezoelectricity, Optoelectronics, Energy harvesting and Thin film. His biological study spans a wide range of topics, including Polystyrene and Deposition. Chong Yun Kang specializes in Piezoelectricity, namely Nanogenerator.

His Optoelectronics study integrates concerns from other disciplines, such as Inorganic chemistry, Overlayer, Equivalent oxide thickness and Conductivity. His Energy harvesting research is multidisciplinary, incorporating elements of Mechanical engineering, Power density, Impedance matching and Voltage. His Thin film study incorporates themes from Detection limit, Wafer, Deposition and Crystallinity.

His most cited work include:

  • Highly stretchable piezoelectric-pyroelectric hybrid nanogenerator. (328 citations)
  • The selective detection of C2H5OH using SnO2–ZnO thin film gas sensors prepared by combinatorial solution deposition (192 citations)
  • Boosted output performance of triboelectric nanogenerator via electric double layer effect (167 citations)

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

Chong Yun Kang mainly investigates Optoelectronics, Piezoelectricity, Thin film, Dielectric and Nanotechnology. His research investigates the link between Optoelectronics and topics such as Nanorod that cross with problems in Detection limit. His research integrates issues of Energy harvesting and Ceramic in his study of Piezoelectricity.

His research on Thin film also deals with topics like

  • Ferroelectricity which intersects with area such as Polarization,
  • Substrate which connect with Atomic layer deposition. His Dielectric research includes themes of Capacitor, Sputter deposition and Analytical chemistry. His research in Nanotechnology focuses on subjects like Oxide, which are connected to Chemical engineering and Inorganic chemistry.

He most often published in these fields:

  • Optoelectronics (45.14%)
  • Piezoelectricity (39.90%)
  • Thin film (36.91%)

What were the highlights of his more recent work (between 2018-2021)?

  • Optoelectronics (45.14%)
  • Piezoelectricity (39.90%)
  • Detection limit (9.73%)

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

Chong Yun Kang focuses on Optoelectronics, Piezoelectricity, Detection limit, Chemical engineering and Nanotechnology. His Optoelectronics research incorporates elements of Atomic layer deposition, Nanorod, Electrode and Voltage. His primary area of study in Piezoelectricity is in the field of Nanogenerator.

His Chemical engineering research focuses on Oxide and how it relates to Crystallization, Thin film, Brittleness, Nanoparticle and Lithium. In Thin film, Chong Yun Kang works on issues like Composite material, which are connected to Short circuit and Capacitance. His work on Biosensor and Epitaxy as part of general Nanotechnology study is frequently linked to NOx and Sensor system, therefore connecting diverse disciplines of science.

Between 2018 and 2021, his most popular works were:

  • A brief review of sound energy harvesting (30 citations)
  • A brief review of sound energy harvesting (30 citations)
  • Heterojunction Based on Rh-Decorated WO3 Nanorods for Morphological Change and Gas Sensor Application Using the Transition Effect (23 citations)

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

  • Electrical engineering
  • Semiconductor
  • Hydrogen

The scientist’s investigation covers issues in Optoelectronics, Chemical engineering, Acoustics, Metamaterial and Electrical resistivity and conductivity. His Wafer study in the realm of Optoelectronics connects with subjects such as Highly sensitive. Chong Yun Kang has included themes like Oxide and Annealing in his Chemical engineering study.

His studies in Acoustics integrate themes in fields like Stress and Figure of merit. The study incorporates disciplines such as Resonator, Sound pressure and Electric potential energy in addition to Metamaterial. His work carried out in the field of Electrical resistivity and conductivity brings together such families of science as Ionic bonding, Cascade, Hydroxide and Ionic conductivity.

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

Highly stretchable piezoelectric-pyroelectric hybrid nanogenerator.

Ju Hyuck Lee;Keun Young Lee;Manoj Kumar Gupta;Tae Yun Kim.
Advanced Materials (2014)

488 Citations

Boosted output performance of triboelectric nanogenerator via electric double layer effect

Jinsung Chun;Byeong Uk Ye;Jae Won Lee;Dukhyun Choi.
Nature Communications (2016)

302 Citations

Mesoporous pores impregnated with Au nanoparticles as effective dielectrics for enhancing triboelectric nanogenerator performance in harsh environments

Jinsung Chun;Jin Woong Kim;Woo Suk Jung;Chong Yun Kang.
Energy and Environmental Science (2015)

285 Citations

The selective detection of C2H5OH using SnO2–ZnO thin film gas sensors prepared by combinatorial solution deposition

Ki Won Kim;Pyeong Seok Cho;Sun Jung Kim;Jong Heun Lee.
Sensors and Actuators B-chemical (2007)

277 Citations

High output piezo/triboelectric hybrid generator.

Woo Suk Jung;Min Gyu Kang;Hi Gyu Moon;Seung Hyub Baek.
Scientific Reports (2015)

213 Citations

Wafer-scale growth of MoS2 thin films by atomic layer deposition

Jung Joon Pyeon;Jung Joon Pyeon;Soo Hyun Kim;Doo Seok Jeong;Doo Seok Jeong;Seung Hyub Baek;Seung Hyub Baek.
Nanoscale (2016)

161 Citations

All-Solution-Processed Flexible Thin Film Piezoelectric Nanogenerator

Sung Yun Chung;Sunyoung Kim;Ju Hyuck Lee;Kyongjun Kim.
Advanced Materials (2012)

152 Citations

Quick, Controlled Synthesis of Ultrathin Bi2Se3 Nanodiscs and Nanosheets

Yuho Min;Geon Dae Moon;Bong Soo Kim;Byungkwon Lim.
Journal of the American Chemical Society (2012)

144 Citations

Recent Progress on PZT Based Piezoelectric Energy Harvesting Technologies

Min Gyu Kang;Min Gyu Kang;Woo Suk Jung;Chong Yun Kang;Chong Yun Kang;Seok Jin Yoon.
Actuators (2016)

131 Citations

Highly anisotropic power generation in piezoelectric hemispheres composed stretchable composite film for self-powered motion sensor

Jinsung Chun;Na Ri Kang;Ju Young Kim;Myoung Sub Noh.
Nano Energy (2015)

123 Citations

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