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Engineering and Technology

D-Index
39
Citations
4832
World Ranking
7823
National Ranking
487

Overview

Dongyoon Khim is affiliated with Imperial College London in the United Kingdom. Their work primarily spans the fields of engineering and materials science, with a substantial focus on electrical and electronic engineering as well as polymers and plastics.

The research contributions of Dongyoon Khim emphasize topics such as conducting polymers and applications, organic electronics and photovoltaics, advanced memory and neural computing, neural networks and reservoir computing, semiconductor materials and devices, neuroscience and neural engineering, and fullerene chemistry and applications.

  • Conducting polymers and applications
  • Organic Electronics and Photovoltaics
  • Advanced Memory and Neural Computing
  • Neural Networks and Reservoir Computing
  • Semiconductor materials and devices
  • Neuroscience and Neural Engineering
  • Fullerene Chemistry and Applications

Khim has published in several scientific venues, with multiple papers appearing in key journals related to their fields of study.

  • Organic Electronics (4 publications)
  • The Journal of Physical Chemistry Letters (2 publications)
  • IEEE Transactions on Electron Devices (2 publications)
  • Advanced Materials (1 publication)
  • Polymers (1 publication)

Recent publications include the following papers:

  • "Significant Performance Improvement in n-Channel Organic Field-Effect Transistors with C60:C70 Co-Crystals Induced by Poly(2-ethyl-2-oxazoline) Nanodots," 2021, Advanced Materials
  • "Effects of high capacitance of solution-processed polymer heterojunction gate dielectrics on the contact resistance of low-voltage n-channel organic transistors," 2024, Organic Electronics
  • "Organic Polymer-Based Photodiodes for Optoelectronic Reservoir Computing with Time-Based Coding," 2024, The Journal of Physical Chemistry Letters
  • "Proton-gated organic thin-film transistors for leaky integrate-and-fire convolutional spiking neural networks," 2024, Organic Electronics
  • "The Synergy Effect of Al/Ti Electrodes on Effective Electron Injection for n-Channel Transistors and Ambipolar Complementary Circuits," 2024, The Journal of Physical Chemistry Letters

Frequent co-authors in Khim's work include Huabin Sun, Chee Leong Tan, Yong Xu, Xiang Wan, and W. Boukhili, with collaboration counts ranging from 9 to 12 joint works.

  • Huabin Sun
  • Chee Leong Tan
  • Yong Xu
  • Xiang Wan
  • W. Boukhili

Best Publications

  • Simple bar-coating process for large-area, high-performance organic field-effect transistors and ambipolar complementary integrated circuits.

    Dongyoon Khim;Hyun Han;Kang-Jun Baeg;Juhwan Kim

  • Printed, Flexible, Organic Nano‐Floating‐Gate Memory: Effects of Metal Nanoparticles and Blocking Dielectrics on Memory Characteristics

    Minji Kang;Kang-Jun Baeg;Dongyoon Khim;Yong-Young Noh

  • High-Performance Top-Gated Organic Field-Effect Transistor Memory using Electrets for Monolithic Printed Flexible NAND Flash Memory

    Kang-Jun Baeg;Dongyoon Khim;Juhwan Kim;Byung-Do Yang

  • Remarkable enhancement of hole transport in top-gated N-type polymer field-effect transistors by a high-k dielectric for ambipolar electronic circuits.

    Kang-Jun Baeg;Dongyoon Khim;Soon-Won Jung;Minji Kang

  • Precisely Controlled Ultrathin Conjugated Polymer Films for Large Area Transparent Transistors and Highly Sensitive Chemical Sensors

    Dongyoon Khim;Gi-Seong Ryu;Won-Tae Park;Hyunchul Kim

  • High efficiency polymer solar cells via sequential inkjet-printing of PEDOT:PSS and P3HT:PCBM inks with additives

    Seung Hun Eom;Hanok Park;S.H. Mujawar;Sung Cheol Yoon

  • Uniaxial Alignment of Conjugated Polymer Films for High‐Performance Organic Field‐Effect Transistors

    Dongyoon Khim;Alessandro Luzio;Giorgio Ernesto Bonacchini;Giorgio Ernesto Bonacchini;Giuseppina Pace

  • Remarkable Enhancement of the Hole Mobility in Several Organic Small-Molecules, Polymers, and Small-Molecule:Polymer Blend Transistors by Simple Admixing of the Lewis Acid p-Dopant B(C6F5)3.

    Julianna Panidi;Alexandra F. Paterson;Dongyoon Khim;Zhuping Fei

  • High-Performance Organic Field-Effect Transistors with Directionally Aligned Conjugated Polymer Film Deposited from Pre-Aggregated Solution

    Nam-Koo Kim;Soo-Young Jang;Giuseppina Pace;Mario Caironi

  • Charge injection engineering of ambipolar field-effect transistors for high-performance organic complementary circuits.

    Kang-Jun Baeg;Juhwan Kim;Dongyoon Khim;Mario Caironi

  • High speeds complementary integrated circuits fabricated with all‐printed polymeric semiconductors

    Kang-Jun Baeg;Kang-Jun Baeg;Dongyoon Khim;Dong-Yu Kim;Soon-Won Jung

  • Development of high-performance printed organic field-effect transistors and integrated circuits

    Yong Xu;Chuan Liu;Dongyoon Khim;Yong-Young Noh

  • Modulation‐Doped In2O3/ZnO Heterojunction Transistors Processed from Solution

    Dongyoon Khim;Yen Hung Lin;Sungho Nam;Hendrik Faber

  • Control of Ambipolar and Unipolar Transport in Organic Transistors by Selective Inkjet‐Printed Chemical Doping for High Performance Complementary Circuits

    Dongyoon Khim;Dongyoon Khim;Kang-Jun Baeg;Mario Caironi;Chuan Liu

  • Large Enhancement of Carrier Transport in Solution-Processed Field-Effect Transistors by Fluorinated Dielectric Engineering.

    Dongyoon Khim;Yong Xu;Kang-Jun Baeg;Minji Kang

  • Quinoidal Molecules as a New Class of Ambipolar Semiconductor Originating from Amphoteric Redox Behavior

    Hansu Hwang;Dongyoon Khim;Dongyoon Khim;Jin-Mun Yun;Eunhwan Jung

  • Controlled Charge Transport by Polymer Blend Dielectrics in Top-Gate Organic Field-Effect Transistors for Low-Voltage-Operating Complementary Circuits

    Kang-Jun Baeg;Dongyoon Khim;Juhwan Kim;Hyun Han

  • Highly Soluble Poly(thienylenevinylene) Derivatives with Charge-Carrier Mobility Exceeding 1 cm2V–1s–1

    Juhwan Kim;Bogyu Lim;Kang-Jun Baeg;Yong-Young Noh

  • Improved performance uniformity of inkjet printed n-channel organic field-effect transistors and complementary inverters

    Kang-Jun Baeg;Kang-Jun Baeg;Dongyoon Khim;Ju-Hwan Kim;Minji Kang

  • Low-voltage, high speed inkjet-printed flexible complementary polymer electronic circuits

    Kang-Jun Baeg;Soon-Won Jung;Dongyoon Khim;Juhwan Kim

Frequent Co-Authors

Dong-Yu Kim
Dong-Yu Kim Gwangju Institute of Science and Technology
Yong-Young Noh
Yong-Young Noh Pohang University of Science and Technology
Kang-Jun Baeg
Kang-Jun Baeg Pukyong National University
Thomas D. Anthopoulos
Thomas D. Anthopoulos University of Manchester
Yong Xu
Yong Xu Nanjing University of Posts and Telecommunications
Antonio Facchetti
Antonio Facchetti Northwestern University
Chuan Liu
Chuan Liu Sun Yat-sen University
Hendrik Faber
Hendrik Faber King Abdullah University of Science and Technology
Mario Caironi
Mario Caironi Italian Institute of Technology
Wei Huang
Wei Huang Northwestern Polytechnical University

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