Produktbild: Portable and Wearable Sensing Systems

Portable and Wearable Sensing Systems Techniques, Fabrication, and Biochemical Detection

Fr. 178.00

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

24.04.2024

Abbildungen

farbige Illustrationen, schwarz-weiss Illustrationen

Herausgeber

Qingjun Liu

Verlag

Wiley-VCH

Seitenzahl

256

Maße (L/B/H)

24.4/17/1.9 cm

Gewicht

640 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-35183-1

Beschreibung

Portrait

Qingjun Liu is currently Professor in Biosensor National Special Laboratory, Director of Biomedical Engineering Institute of Zhejiang University, China. He was also a visiting scholar in Biomedical Engineering at the Hong Kong Polytechnic University and the Micro and Nanotechnology Laboratory at the University of Illinois at Urbana-Champaign. He is also a member of the Youth Committee of the China Biomedical Engineering Society and a director of the China Micron Nanotechnology Society. His interests mainly focus on biomedical sensing and detection research.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

24.04.2024

Abbildungen

farbige Illustrationen, schwarz-weiss Illustrationen

Herausgeber

Qingjun Liu

Verlag

Wiley-VCH

Seitenzahl

256

Maße (L/B/H)

24.4/17/1.9 cm

Gewicht

640 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-35183-1

Herstelleradresse

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

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  • Produktbild: Portable and Wearable Sensing Systems
  • Preface xi

    1 Portable and Wearable Sensing Technologies for Biochemical Detection 1
    Xin Li, Fenni Zhang, and Qingjun Liu

    1.1 Biochemical Detection: Increasing Demands and Challenges 1

    1.2 Portable Sensing Technologies: Efficient Biochemical Analysis 2

    1.3 From Portable toWearable: Toward In Situ Biosensing 4

    1.4 Summary and Outlook 12

    2 Portable Electrochemical Sensing Systems 19
    Zijian An, Yue Wu, Yuting Zhao, Yanli Lu, and Qingjun Liu

    2.1 Fundamentals of Portable Electrochemical Sensing Systems 20

    2.2 Techniques of Portable Electrochemical Measurement 25

    2.3 Fabrication of Portable Electrochemical Systems 28

    2.4 Applications of Portable Electrochemical Sensing Systems 31

    2.5 Summary and Outlook 35

    3 Portable Optical Sensing Systems 41
    Jinbiao Ma, Jiahao Xu, Baiqi Cui, Dehong Yang, Ying Fang, Xiaoyin Liu, and Fenni Zhang

    3.1 Fundamentals of Portable Optical Sensing Systems 41

    3.2 Plasmonic Sensing-Based Portable Optical Systems 42

    3.3 Scattering Sensing-Based Portable Optical Systems 49

    3.4 Chemiluminescence Sensing-Based Portable Optical Systems 54

    3.5 Colorimetric Sensing-Based Portable Optical Systems 57

    3.6 Summary and Outlook 62

    4 Portable Optical-Electrochemical-Coupled Sensing Systems 71
    Zetao Chen, Fenni Zhang, Yanli Lu, and Qingjun Liu

    4.1 Fundamentals of Optical-Electrochemical-Coupled Sensing Systems 72

    4.2 Optical-Electrochemical-Coupled Sensing Techniques 73

    4.3 Fabrication of Optical-Electrochemical-Coupled Electrodes 77

    4.4 Construction of Portable Optical-Electrochemical-Coupled Systems 81

    4.5 Summary and Outlook 85

    5 Smartphone-Based Portable Sensing Systems for Point-of-Care Detections 89
    Guang Liu, Yue Wu, Yutian Wang, Weihong Ye, Minyang Wu, and Qingjun Liu

    5.1 Smartphone-Based Optical Sensing System 90

    5.2 Smartphone-Based Electrochemical System 94

    5.3 Smartphone-Based Photoelectrochemical (PEC) System 99

    5.4 Smartphone-Based Point-of-Care Detections 101

    5.5 Summary and Outlook 103

    6 Flexible Electronics for Wearable Sensing Systems 111
    Qi-Qi Fu

    6.1 Flexible Electronics: Definition and Development 112

    6.2 Advantages of Flexible Electronics inWearable Sensing 112

    6.3 FabricatingWearable Sensing Systems with Flexible Electronic Technologies 113

    6.4 Wearable Sensing Systems Fabricated by Using Flexible Electronic Technologies 125

    6.5 Summary and Outlook 129

    7 Wearable Sensors for In Situ Biofluid Analysis 139
    Zhenghan Shi, Chaobo Dai, Feiyue Fang, Yifan Shuai, Chuhan Xiong, and Qingjun Liu

    7.1 Wearable Sensors for Sweat Analysis 140

    7.2 Wearable Sensors for Saliva Analysis 145

    7.3 Wearable Sensors for Interstitial Fluid (ISF) Analysis 149

    7.4 Wearable Sensors for Tear Analysis 151

    7.5 Summary and Outlook 152

    8 Wearable Sensors for In Situ Breath Analysis 157
    Jingjiang Lv, Xin Li, Jingying Pan, Rujing Sun, Yanli Lu, and Qingjun Liu

    8.1 Wearable Breath Sensors for Physiological Monitoring 157

    8.2 Wearable Breath Sensors for Volatile Markers Analysis 162

    8.3 Wearable Breath Sensors for Virus Detection 170

    8.4 Summary and Outlook 174

    9 Wearable Sensors for Wound Diagnosis and Close-Loop Therapeutics 179
    Lihua Peng, Jinyu Zhao, and Minhong Tan

    9.1 Wearable Sensors forWound Monitoring 180

    9.2 Wearable Drug Delivery forWound Treatment 186

    9.3 IntegratingWearable Sensors withWearable Therapy 190

    9.4 Close-Loop Therapeutics withWearable Devices 197

    9.5 Summary and Outlook 200

    10 Self-Powered Sensors for Wearable Detections 207
    Yang Zou and Zhou Li

    10.1 Biofuel-Based Sensors 208

    10.2 Thermoelectric Nanogenerator-Based Sensors 212

    10.3 Triboelectric Nanogenerator-Based Sensors 215

    10.4 Piezoelectric Nanogenerator-Based Sensors 220

    10.5 Summary and Outlook 224

    Acknowledgments 226

    References 226

    Index 233