Produktbild: Solid-Liquid Contact Electrification
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Solid-Liquid Contact Electrification From Fundamentals to Applications in Nanogenerators

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.02.2028

Herausgeber

Zong-Hong Lin

Verlag

Wiley-VCH

Seitenzahl

300

Maße (B/H)

17/24,4 cm

Sprache

Englisch

ISBN

978-3-527-35026-1

Beschreibung

Portrait

Dr. Zong-Hong Lin is currently Associate Professor at the Institute of Biomedical Engineering and Department of Power Mechanical Engineering, National Tsing Hua University, Taiwan. His research interests include the understanding of triboelectrification mechanisms, the development of active portable sensors for biomedical monitoring, the design of highly efficient catalysts for environmental purification and self-powered systems with controllable disinfection performance.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

23.02.2028

Herausgeber

Zong-Hong Lin

Verlag

Wiley-VCH

Seitenzahl

300

Maße (B/H)

17/24,4 cm

Sprache

Englisch

ISBN

978-3-527-35026-1

Herstelleradresse

Wiley-VCH GmbH
Boschstrasse 12
69469 Weinheim
DE
product_safety@wiley.com

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  • Produktbild: Solid-Liquid Contact Electrification
  • Chapter 1. Overview of contact electrification and triboelectric devices
    1.1 Introduction
    1.2 Solid-solid contact electrification (TENG)
    1.3 Triboelectric devices (TENG)
    1.4 Impact and applications of solid-solid triboelectric devices
    1.5 Potential challenges of solid-solid triboelectric devices
    Chapter 2. Solid-liquid contact electrification
    2.1 Electron transfer mechanism
    2.2 Ion transfer mechanism
    2.3 Role of surface wettability
    2.4 Strategies for the enhancement of surface charge transfer
    2.5 Environmental effects
    Chapter 3. Interacting modes of contact liquid
    3.1 Droplet contacting mode
    3.2 Flow contacting mode
    3.3 Wave contacting mode
    3.4 Other potential contacting modes
    Chapter 4. Operating principles of solid-liquid triboelectric devices
    4.1 Sliding mode
    4.2 Contact separation mode
    4.3 Single electrode mode
    4.4 Free standing mode
    Chapter 5. Intrinsic properties of solid contact materials
    5.1 Physical property
    5.2 Electrical property
    Chapter 6. Extrinsic properties of solid contact materials
    6.1 Surface morphology
    (a) 1-3 dimensional nano- and micro-structures
    (b) bio-inspired compositions and structures
    6.2 Surface modification
    (a) Chemical modification
    (b) Electrical modification
    Chapter 7. Influence of liquid contact materials
    7.1 Liquid polarity
    7.2 Ionic activity
    Chapter 8. Applications: solid-liquid interactive electrokinetic devices
    8.1 Mechanisms
    8.2 Operating principles
    8.3 Device design strategies
    8.4 Properties of solid contact materials
    8.5 Properties of liquid contact materials
    Chapter 9. Applications: Self-powered sensors and systems
    9.1 Chemical sensors
    9.2 Physical sensors
    9.3 Actuators and other electronics
    Chapter 10. Applications: energy harvesting devices
    10.1 Rain drop energy harvesting devices.
    10.2 Sea wave energy harvesting devices.
    10.3 Hybrid energy harvesting devices.
    Chapter 11. Conclusions
    11.1 At the level of devices
    11.2 At the level of systems