World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
31
Citations
2975
World Ranking
6684
National Ranking
122

Overview

Yao-Joe Yang is affiliated with National Taiwan University in Taiwan and has contributed to the field of engineering with a specific focus on biomedical, electrical and electronic, and mechanical engineering. Their research portfolio includes 35 publications that reflect interdisciplinary work spanning materials chemistry and applications in advanced sensor technologies.

The primary fields of study for Yao-Joe Yang encompass:

  • Engineering

Within this broader domain, the subfields of specialization include:

  • Biomedical Engineering
  • Electrical and Electronic Engineering
  • Mechanical Engineering
  • Materials Chemistry
  • Electronic, Optical and Magnetic Materials

The main research topics that characterize their work cover:

  • Advanced Sensor and Energy Harvesting Materials
  • Advanced Materials and Mechanics
  • Dielectric materials and actuators
  • Soft Robotics and Applications
  • Gas Sensing Nanomaterials and Sensors
  • Wireless Power Transfer Systems
  • Innovative Microfluidic and Catalytic Techniques Innovation

Yao-Joe Yang's recent publications illustrate the scope and specialization of their research. Notable papers include:

  • A novel single-actuator bistable microdevice with a moment-driven mechanism, 2020, Sensors and Actuators A Physical
  • Highly improved thermoelectric performance of BiCuTeO achieved by decreasing the oxygen content, 2020, Materials Today Physics
  • A wireless passive pressure sensor using microstructured ferromagnetic films with tunable effective permeability, 2021, Journal of Micromechanics and Microengineering
  • Photothermal Thin Films with Highly Efficient NIR Conversion for Miniaturized Liquid-Crystal Elastomer Actuators, 2022, Polymers
  • A miniaturized soft actuator based on liquid crystal elastomer with temperature-compensated self-sensing capability, 2024, Sensors and Actuators A Physical

The venues where Yao-Joe Yang frequently publishes include:

  • Sensors and Actuators A Physical
  • Polymers
  • 2022 IEEE 35th International Conference on Micro Electro Mechanical Systems Conference (MEMS)
  • Materials Today Physics
  • Journal of Micromechanics and Microengineering

Collaboration is a notable element of their research activity. Frequent co-authors have included:

  • Chia-Yu Cho
  • Shin-Wei Huang
  • Wei-Yi Wang
  • Bo-You Lin
  • Yen-Peng Liao

Best Publications

  • Flexible Temperature Sensor Array Based on a Graphite-Polydimethylsiloxane Composite

    Wen Pin Shih;Li Chi Tsao;Chian Wen Lee;Ming Yuan Cheng

  • An integrated flexible temperature and tactile sensing array using PI-copper films ☆

    Y.-J. Yang;M.-Y. Cheng;W.-Y. Chang;L.-C. Tsao

  • A Polymer-Based Capacitive Sensing Array for Normal and Shear Force Measurement

    Ming-Yuan Cheng;Chun-Liang Lin;Yu-Tse Lai;Yao-Joe Yang

  • A flexible capacitive tactile sensing array with floating electrodes

    M.-Y. Cheng;X.-H. Huang;C.-W. Ma;Y.-J. Yang

  • Electron mobility enhancement in strained-germanium n-channel metal-oxide-semiconductor field-effect transistors

    Y.-J. Yang;W. S. Ho;C.-F. Huang;S. T. Chang

  • A hydrogel-based intravascular microgripper manipulated using magnetic fields

    Jui-Chang Kuo;Hen-Wei Huang;Shu-Wei Tung;Yao-Joe Yang

  • A novel gas sensor using polymer-dispersed liquid crystal doped with carbon nanotubes

    Yu-Tse Lai;Jui-Chang Kuo;Yao-Joe Yang

  • The development of a highly twistable tactile sensing array with stretchable helical electrodes

    M.-Y. Cheng;C.-M. Tsao;Y.-Z. Lai;Y.-J. Yang

  • A 32 × 32 temperature and tactile sensing array using PI-copper films

    Y.-J. Yang;M.-Y. Cheng;S.-C. Shih;X.-H. Huang

  • Low-order models for fast dynamical simulation of MEMS microstructures

    E.S. Hung;Yao-Joe Yang;S.D. Senturia

  • A novel thermo-pneumatic peristaltic micropump with low temperature elevation on working fluid

    Bonnie Tingting Chia;Hsin-Hung Liao;Yao-Joe Yang

  • Developing Barbed Microtip-Based Electrode Arrays for Biopotential Measurement

    Li-Sheng Hsu;Shu-Wei Tung;Che-Hsi Kuo;Yao-Joe Yang

  • A novel 2 × 2 MEMS optical switch using the split cross-bar design

    Yao-Joe Yang;Bo-Ting Liao;Wen-Cheng Kuo

  • Numerical Simulation of Compressible Squeezed-Film Damping

    Y.-J. Yang;S.D. Senturia

  • Nonlinear heat-transfer macromodeling for MEMS thermal devices

    Yao-Joe Yang;Kuo-Yeh Shen

  • Increased photocurrent in bulk-heterojunction solar cells mediated by FeS2 nanocrystals

    C. W. Lin;D. Y. Wang;Y. T. Wang;Chia Chun Chen

  • Nonlinear electromechanical behaviour of an electrostatic microrelay

    M.-A. Gretillat;Y.-J. Yang;E.S. Hung;V. Rabinovich

  • A Highly Sensitive Pressure-Sensing Array for Blood Pressure Estimation Assisted by Machine-Learning Techniques.

    Kuan-Hua Huang;Fu Tan;Tzung-Dau Wang;Yao-Joe Yang

  • Ferroelectric HfZrO 2 With Electrode Engineering and Stimulation Schemes as Symmetric Analog Synaptic Weight Element for Deep Neural Network Training

    K.-Y. Hsiang;C.-Y. Liao;K.-T. Chen;Y.-Y. Lin

  • A smart medication system using wireless sensor network technologies

    Wen-Wei Chang;Tung-Jung Sung;Heng-Wei Huang;Wei-Chih Hsu

  • Polymer-dispersed liquid crystal doped with carbon nanotubes for dimethyl methylphosphonate vapor-sensing application

    Yu-Tse Lai;Jui-Chang Kuo;Yao-Joe Yang

  • PULL-IN DYNAMICS OF ELECTROSTATICALLY-ACTUATED BEAMS

    Raj K. Gupta;Elmer S. Hung;Yao-Joe Yang;G. K. Ananthasuresh

  • A MEMS Bistable Device With Push-On–Push-Off Capability

    Hen-Wei Huang;Yao-Joe Yang

  • A Passive Inertial Switch Using MWCNT–Hydrogel Composite With Wireless Interrogation Capability

    Jui-Chang Kuo;Po-Hung Kuo;Yu-Tse Lai;Cheng-Wen Ma

  • Development and characterization of thermopneumatic peristaltic micropumps

    Yao-Joe Yang;Hsin-Hung Liao

  • Tactile and shear stress sensing array using capacitive mechanisms with floating electrodes

    M.-Y. Cheng;C.-L. Lin;Y.-J. Yang

  • MULTI-LAYER EMBEDMENT OF CONDUCTIVE AND NON-CONDUCTIVE PDMS FOR ALL-ELASTOMER MEMS

    Unknown

Frequent Co-Authors

Shey-Shi Lu
Shey-Shi Lu National Taiwan University
Chee Wee Liu
Chee Wee Liu National Taiwan University
Yu-Chong Tai
Yu-Chong Tai California Institute of Technology
N. F. de Rooij
N. F. de Rooij École Polytechnique Fédérale de Lausanne
Kuei-Hsien Chen
Kuei-Hsien Chen Academia Sinica
Haixia Zhang
Haixia Zhang Peking University
Oliver G. Schmidt
Oliver G. Schmidt Chemnitz University of Technology
Chang-Jin Kim
Chang-Jin Kim University of California, Los Angeles
Zhong-Qun Tian
Zhong-Qun Tian Xiamen University

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