Buch, Englisch, 330 Seiten, Format (B × H): 175 mm x 249 mm, Gewicht: 839 g
ISBN: 978-3-527-33865-8
Verlag: WILEY-VCH
Combining the materials science, technological, and device aspects of organic bioelectronics based on green materials, this is the first overview of the emerging concepts involving fabrication techniques for sustainable electronics with low energy and material consumption.
With contributions from top-notch editors and authors, in one focus, the book covers a collection of natural materials suited for electronics applications such as paper, silk, melanin, DNA and nucleobases, resins, gums, saccharides, cellulose, gelatine and peptides. In another thrust, the book focuses on device fabrication based on these materials, including processing aspects, and applications such as sensors, signal transducers, transient, implantable and digestible electronics.
With its interdisciplinary approach this text will appeal to the chemistry, physics, materials science, and engineering communities.
Autoren/Hrsg.
Fachgebiete
- Technische Wissenschaften Elektronik | Nachrichtentechnik Elektronik Elektronische Baugruppen, Elektronische Materialien
- Naturwissenschaften Chemie Physikalische Chemie
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Technische Mechanik | Werkstoffkunde Materialwissenschaft: Elektronik, Optik
- Technische Wissenschaften Technik Allgemein Nachhaltigkeit, Grüne Technologien
Weitere Infos & Material
Foreword and Introduction
PART I. NATURAL MATERIALS FOR ELECTRONICS APPLICATIONS
Paper
Silk
Melanin
DNA and Nucleobases
Natural Dielectrics
H-bonded Semiconductors
Genetically Engineered Peptides for Electronics
PART II. BIOCOMPATIBLE MATERIALS AND SUSTAINABLE PROCESSES FOR GREEN ELECTRONICS
Bioelectronic Devices for Sensing and Actuation
Organic Materials as Transducers of Neural Signals
Low Impedance Biomimetic Conductive Polymer and Bioactive Hydrogel Coatings for Microelectrodes and Biomedical Biosensors
Materials for Neural Interfaces
Biocompatible Circuits for Human-Machine Interfacing
Protonic Devices
Biocompatible Materials for Transient Electronics
Materials and Devices for Electronic Skin
Materials and Devices for Imperceptible Electronics
Energy Requirement for High-performance Electronics Fabrication
Bioelectronics: Quo Vadis?
List of Contributors xi
Preface xv
1 Emerging "Green" Materials and Technologies for Electronics 1
Melanie Baumgartner, Maria E. Coppola, Niyazi S. Sariciftci, Eric D. Glowacki, Siegfried Bauer, and Mihai Irimia]Vladu
2 Fabrication Approaches for Conducting Polymer Devices 55
Dimitrios A. Koutsouras, Eloïse Bihar, Jessamyn A. Fairfield, Mohamed Saadaoui, and George G. Malliaras
3 Biocompatible Circuits for Human--Machine Interfacing 91
Erik O. Gabrielsson, Daniel T. Simon, and Magnus Berggren
4 Biocompatible Devices and Sustainable Processes for Green Electronics: Biocompatible Organic Electronic Devices for Sensing Applications 119
Kyriaki Manoli, Mohammad Yusuf Mulla, Preethi Seshadri, Amber Tiwari, Mandeep Singh, Maria Magliulo, Gerardo Palazzo, and Luisa Torsi
5 Biocompatible Materials for Transient Electronics 145
Suk]Won Hwang and John A. Rogers
6 Paper Electronics 163
Martti Toivakka, Jouko Peltonen, and Ronald Österbacka
7 Engineering DNA and Nucleobases for Present and Future Device Applications 191
Eliot F. Gomez and Andrew J. Steckl
8 Grotthuss Mechanisms: From Proton Transport in Ion Channels to Bioprotonic Devices 235
Takeo Miyake and Marco Rolandi
9 Emulating Natural Photosynthetic Apparatus by Employing Synthetic Membrane Proteins in Polymeric Membranes 255
Cherng-Wen Darren Tan and Eva-Kathrin Sinner
10 Organic Optoelectronic Interfaces for Vision Restoration 269
Andrea Desii, Maria R. Antognazza, Fabio Benfenati, and Guglielmo Lanzani
11 Nanostructured Silica from Diatoms Microalgae: Smart Materials for Photonics and Electronics 287
Roberta Ragni, Stefania R. Cicco, Danilo Vona, and Gianluca M. Farinola
Acknowledgments 309
References 309
Index 315




