Updated on 2026/06/19

Information

 

写真a

 
WANG CHANG MING
 
Organization
Center of Advanced Instrumental Analysis Assistant Professor
Title
Assistant Professor
Contact information
メールアドレス

Research Areas

  • Nanotechnology/Materials / Analytical chemistry

  • Nanotechnology/Materials / Nano/micro-systems

Degree

  • Doctor ( 2019.1 )

Research History

  • National Taiwan University  Academic Researcher 

    2020.10 - 2025.7

Education

  • National Taiwan Univerisity   College of Science   Department of Chemistry

    2014.2 - 2019.1

      More details

    Country:Taiwan, Province of China

Research Interests・Research Keywords

  • Research theme: Research on micro/nanofabrication using femtosecond laser

    Keyword: マイクロ・ナノ加工技術

    Research period: 2024.4 - Present

  • Research theme: Surface modification using chemical lift-off lithography

    Keyword: ケミカルリフトオフリソグラフィー

    Research period: 2014.2 - Present

  • Research theme: Paper-based analytical devices

    Keyword: マイクロ流体デバイス

    Research period: 2014.2 - 2019.1

  • Research theme: Sponge-based piezoresistive sensors

    Keyword: Sponge-based piezoresistive sensors

    Research period: 2014.2 - 2019.1

  • Research theme: Microfluidic Devices

    Keyword: マイクロ流体デバイス

    Research period: 2014.2 - 2019.1

Papers

  • Switchable Noncontinuous Circuits for All Pressure-Range-Sensitive Units

    2024.4

  • Spatially Mediated Paper Reactors for On-Site Multi-Coded Encryption

    2024.2

  • Tunable Micro/Nanomaterial Encapsulation in Porous Melamine Sponges by Rotational Vortexing: Implications for Functional Nanomaterial Recycling Reviewed

    2023.8

  • Guiding Metal Organic Framework Morphology via Monolayer Artificial Defect-Induced Preferential Facet Selection Reviewed

    2023.3

  • Gap-Directed Chemical Lift-Off Lithographic Nanoarchitectonics for Arbitrary Sub-Micrometer Patterning Reviewed

    2023.1

  • Moldable Carbon Dot-Linked Elastomers for Three-Dimensional Arbitrary Fluorescent Structures Reviewed

    2022.12

  • Metal-Free Transparent Three-Dimensional Flexible Electronics by Selective Molecular Bridges  Reviewed

    2022.1

  • Delicate Junction Meniscus Manipulation for Three-Dimensional Nanostructures using Partially Molten Interfaces: Implications for Plasmonic Sensing Reviewed

    2021.10

  • Manipulating Chemical Processes by Pseudosolid Spatial Limitation Reviewed

    2021.8

  • Enclosed Paper-Based Analytical Devices: Concept, Variety, and Outlook Reviewed

    2021.2

  • Designing Sensing Devices Using Porous Composite Materials Reviewed

    2021.1

  • Metal-Free Colorimetric Detection of Pyrophosphate Ions by Inhibitive Nanozymatic Carbon Dots Reviewed

    2020.4

  • Enhancing Piezoresistive Pressure Response Device Sensitivity by Orders of Magnitude Reviewed

    2020.3

  • A Special Connection between Nanofabrication and Analytical Devices: Chemical Lift-Off Lithography  Reviewed

    2019.2

  • Multilayered Ag NPs-PEDOT-Paper Composite Device for Human-Machine Interfacing Reviewed

    2019.2

  • Finely Tunable Surface Wettability by Two-Dimensional Molecular Manipulation Reviewed

    2018.11

  • Low-Voltage Driven Portable Paper Bipolar Electrode-Supported Electrochemical Sensing Device Reviewed

    2018.7

  • Surface Functional DNA Density Control by Programmable Molecular Defects Reviewed

    2018.2

  • Laminated Copper Nanocluster Incorporated Antioxidative Paper Device with RGB System-Assisted Signal Improvement Reviewed

    2018.2

  • Large Area Nanoparticle Alignment by Chemical Lift-Off Lithography Reviewed

    2018.1

  • Wafer‑Scale Bioactive Substrate Patterning by Chemical Lift‑Off Lithography Reviewed

    2018.1

  • Self‑Standing Aptamers by An Artificial Defect-Rich Matrix Reviewed

    2018.1

  • Paper-Polymer Composite Devices with Minimal Fluorescence Background Reviewed

    2017.4

  • Multicolor Functional Carbon Dots via One-Step Refluxing Synthesis Reviewed

    2017.2

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Educational Activities

  • 大学院生や学部生の実験指導において、マイクロ流体デバイスの作製技術や安全な有機・高分子材料の取り扱い方を丁寧に教え、研究遂行能力の育成に努めている。