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Materials Science

D-Index
47
Citations
16968
World Ranking
10973
National Ranking
447

Engineering and Technology

D-Index
48
Citations
17059
World Ranking
4449
National Ranking
295

Overview

Matthew A. Meitl is affiliated with Durham University in the United Kingdom. Their research is primarily situated within the broad field of Engineering, with significant contributions to the subfields of Electrical and Electronic Engineering, Biomedical Engineering, Computational Mechanics, Materials Chemistry, and Mechanical Engineering.

The scientist's research covers a range of specialized topics including Advanced Sensor and Energy Harvesting Materials, Thin-Film Transistor Technologies, Semiconductor Lasers and Optical Devices, Surface Roughness and Optical Measurements, Modular Robots and Swarm Intelligence, Silicone and Siloxane Chemistry, and Advanced Optical System Design.

Throughout their career, they have frequently published in several key academic venues. These include:

  • SID Symposium Digest of Technical Papers
  • Proceedings of the International Display Workshops
  • IEEE Journal of Selected Topics in Quantum Electronics
  • Information Display

Their recent papers demonstrate a focus on microLED display technology and related manufacturing processes. Notable publications include:

  • "44-2: Invited Paper: More than microLEDs: Mass Transfer of Pixel Engines for Emissive Displays," 2020, SID Symposium Digest of Technical Papers
  • "60-1: Invited Paper: Mass Transfer Throughput and Yield Using Elastomer Stamps," 2021, SID Symposium Digest of Technical Papers
  • "50-1: Invited Paper: Designs and Manufacturing Processes for microLED Displays in Handsets, Smartwatches, and Personal Computers," 2022, SID Symposium Digest of Technical Papers
  • "PixelEngineTM All-in-One: a Printable Pixel-Driver MicroIC with Three-Dimensionally Integrated Red, Green, and Blue MicroLEDs," 2022, IEEE Journal of Selected Topics in Quantum Electronics
  • "76-3: Invited Paper: Integration of Sensing Technologies into MicroLED Displays," 2024, SID Symposium Digest of Technical Papers

Collaborations with other researchers are evident, with frequent coauthors including Erich Radauscher, Christopher A. Bower, Carl Prevatte, Salvatore Bonafede, and Brook Raymond. These partnerships appear productive, reflecting joint work on multiple publications, especially in areas related to display technologies and advanced materials.

Best Publications

  • Pattern Transfer Printing by Kinetic Control of Adhesion to an Elastomeric Stamp

    Ralph G. Nuzzo;John A. Rogers;Etienne Menard;Keon Jae Lee

  • Method and device for manufacturing and assembling printable semiconductor element

    G Nuzzo Ralph;ラルフ, ジー. ヌッツォ,;A Rogers John;ジョン, エー. ロジャーズ,

  • Printed assemblies of inorganic light-emitting diodes for deformable and semitransparent displays.

    Sang-Il Park;Yujie Xiong;Rak-Hwan Kim;Paulius Elvikis

  • GaAs photovoltaics and optoelectronics using releasable multilayer epitaxial assemblies

    Jongseung Yoon;Sungjin Jo;Sungjin Jo;Ik Su Chun;Inhwa Jung

  • Micro- and nanopatterning techniques for organic electronic and optoelectronic systems.

    Etienne Menard;Matthew A. Meitl;Yugang Sun;Jang Ung Park

  • Solution Casting and Transfer Printing Single-Walled Carbon Nanotube Films

    Matthew A. Meitl;Yangxin Zhou;Anshu Gaur;Seokwoo Jeon

  • Polymer Imprint Lithography with Molecular-Scale Resolution

    Feng Hua;Yugang Sun;Anshu Gaur;Matthew A. Meitl

  • Competing fracture in kinetically controlled transfer printing.

    Xue Feng;Matthew A. Meitl;Audrey M. Bowen;Yonggang Huang

  • Method for fabricating semiconductor-based optical system

    Rogers John;Nuzzo Ralph;Meitl Matthew;Menard Etienne

  • Guided growth of large-scale, horizontally aligned arrays of single-walled carbon nanotubes and their use in thin-film transistors.

    Coskun Kocabas;Seung Hyun Hur;Anshu Gaur;Matthew A. Meitl

  • PEELING METHOD FOR PRODUCING TRANSFERABLE SEMICONDUCTOR STRUCTURE, DEVICE, AND DEVICE COMPONENT

    John A Rogers;Ralph G Nuzzo;Matthew Meitl;Ko Heung Cho

  • Highly bendable, transparent thin-film transistors that use carbon-nanotube-based conductors and semiconductors with elastomeric dielectrics

    Qing Cao;Seung Hyun Hur;Zheng Tao Zhu;Yugang Sun

  • Printable semiconductor structures and related methods of making and assembling

    Ralph G. Nuzzo;John A. Rogers;Etienne Menard;Keon Jae Lee

  • p-Channel, n-Channel Thin Film Transistors and p−n Diodes Based on Single Wall Carbon Nanotube Networks

    Yangxin Zhou;Anshu Gaur;Seung Hyun Hur;Coskun Kocabas

  • Semiconductor Wires and Ribbons for High- Performance Flexible Electronics

    Alfred J. Baca;Jong Hyun Ahn;Jong Hyun Ahn;Yugang Sun;Matthew A. Meitl

  • Three-Dimensional and Multilayer Nanostructures Formed by Nanotransfer Printing

    Jana Zaumseil;Matthew A. Meitl;Julia W P Hsu;Bharat R. Acharya

  • Wafer-scale integration of group III – V lasers on silicon using transfer printing of epitaxial layers

    John Justice;Chris Bower;Matthew Meitl;Marcus B. Mooney

  • Printable, flexible and stretchable diamond for thermal management

    John A. Rogers;Tae Ho Kim;Won Mook Choi;Dae Hyeong Kim

  • Controlled buckling structures in semiconductor interconnects and nanomembranes for stretchable electronics

    John A. Rogers;Matthew Meitl;Yugang Sun;Heung Cho Ko

  • Printed multilayer superstructures of aligned single-walled carbon nanotubes for electronic applications.

    Seong Jun Kang;Seong Jun Kang;Coskun Kocabas;Hoon Sik Kim;Qing Cao

Frequent Co-Authors

John A. Rogers
John A. Rogers Northwestern University
Etienne Menard
Etienne Menard HeliosLite
Ronald Steven Cok
Ronald Steven Cok Independent Scientist / Consultant, US
Ralph G. Nuzzo
Ralph G. Nuzzo University of Illinois at Urbana-Champaign
Yugang Sun
Yugang Sun Temple University
Jong Hyun Ahn
Jong Hyun Ahn Yonsei University
Xing Sheng
Xing Sheng Tsinghua University
Zhengtao Zhu
Zhengtao Zhu South Dakota School of Mines and Technology
Yonggang Huang
Yonggang Huang Northwestern University
Keon Jae Lee
Keon Jae Lee Korea Advanced Institute of Science and Technology

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