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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Elektronik och kommunikationer

    Printed Batteries

    Materials, Technologies and Applications

    AvSenentxu Lanceros-Méndez,Carlos Miguel Costa

    Inbunden, Engelska, 2018

    1 770 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Offers the first comprehensive account of this interesting and growing research fieldPrinted Batteries: Materials, Technologies and Applications reviews the current state of the art for printed batteries, discussing the different types and materials, and describing the printing techniques. It addresses the main applications that are being developed for printed batteries as well as the major advantages and remaining challenges that exist in this rapidly evolving area of research. It is the first book on printed batteries that seeks to promote a deeper understanding of this increasingly relevant research and application area. It is written in a way so as to interest and motivate readers to tackle the many challenges that lie ahead so that the entire research community can provide the world with a bright, innovative future in the area of printed batteries.Topics covered in Printed Batteries include, Printed Batteries: Definition, Types and Advantages; Printing Techniques for Batteries, Including 3D Printing; Inks Formulation and Properties for Printing Techniques; Rheological Properties for Electrode Slurry; Solid Polymer Electrolytes for Printed Batteries; Printed Battery Design; and Printed Battery Applications. Covers everything readers need to know about the materials and techniques required for printed batteriesInforms on the applications for printed batteries and what the benefits areDiscusses the challenges that lie ahead as innovators continue with their researchPrinted Batteries: Materials, Technologies and Applications is a unique and informative book that will appeal to academic researchers, industrial scientists, and engineers working in the areas of sensors, actuators, energy storage, and printed electronics.

    Produktinformation

    • Utgivningsdatum:2018-04-18
    • Mått:158 x 231 x 20 mm
    • Vikt:499 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:264
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119287421

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    SENENTXU LANCEROS-MÉNDEZ, PHD, is Ikerbasque Professor at BCMaterials, Basque Center for Materials, Applications and Nanostructures, Spain and Associate Professor at the Physics Department of the University of Minho, Portugal. His work is focused in the area of smart and multifunctional materials for sensors and actuators, energy, and biomedical applications. CARLOS MIGUEL COSTA, PHD, is Researcher at the Physics and Chemistry Centers of the University of Minho, Portugal. His work is focused in the development of advanced polymer composites and novel materials and formulations for energy storage applications, including lithium-ion batteries, sodium-ion batteries, and printed batteries.

    Innehållsförteckning

    • 1 Printed Batteries: An Overview 1Juliana Oliveira, Carlos Miguel Costa and Senentxu Lanceros-Méndez1.1 Introduction 11.2 Types of Printed Batteries 71.3 Design of Printed Batteries 91.4 Main Advantages and Disadvantages of Printed Batteries 111.4.1 Advantages 111.4.2 Disadvantages 121.5 Application Areas 131.6 Commercial Printed Batteries 141.7 Summary and Outlook 14Acknowledgements 15References 162 Printing Techniques for Batteries 21Andreas Willert, Anh-Tuan Tran-Le, Kalyan Yoti Mitra, Maurice Clair, Carlos Miguel Costa, Senentxu Lanceros-Méndez and Reinhard Baumann2.1 Introduction/Abstract 212.2 Materials and Substrates 222.3 Printing Techniques 232.3.1 Screen Printing 252.3.1.1 Flatbed 252.3.1.2 Rotary 272.3.1.3 Screen Mesh 282.3.1.4 Squeegee 292.3.2 Stencil Printing 302.3.3 Flexographic Printing 312.3.3.1 Letterpress Printing 312.3.3.2 Flexography 322.3.4 Gravure Printing 332.3.5 Lithographic/Offset Printing 352.3.6 Coating 362.3.7 Inkjet 382.3.7.1 Inkjet Printing Technology and Applications 382.3.7.2 Selective View of the Market for Inkjet Technology 442.3.7.3 Advanced Applications: Printed Functionalities and Electronics 482.3.8 Drying Process 502.3.9 Process Chain 522.3.10 Printing of Layers 532.4 Conclusions 54Acknowledgements 54References 553 The Influence of Slurry Rheology on Lithium-ion Electrode Processing 63Ta]Jo Liu, Carlos Tiu, Li-Chun Chen and Darjen Liu3.1 Introduction 633.2 Slurry Formulation 643.3 Rheological Characteristics of Electrode Slurry 653.3.1 Viscosity and Shear-Thinning 653.3.2 Viscoelasticity 663.3.3 Yield Stress 683.4 Effects of Rheology on Electrode Processing 693.4.1 Composition of Electrode Slurry 693.4.2 Electrode Slurry Preparation 703.4.2.1 Mixing Methods 703.4.2.2 Mixing Devices 733.4.3 Electrode Coating 753.4.4 Electrode Drying 753.5 Conclusion 76List of Symbols and Abbreviations 76References 764 Polymer Electrolytes for Printed Batteries 80Ela Strauss, Svetlana Menkin and Diana Golodnitsky4.1 Electrolytes for Conventional Batteries 804.1.1 Polymer/Gel Electrolytes for Aqueous Batteries 814.1.2 Electrolytes for Lithium-ion Batteries 824.2 Electrolytes for Printed Batteries 844.2.1 Screen-printed Electrolytes 854.2.2 Spray-printed Electrolytes 864.2.3 Direct-write Printed Electrolytes 884.2.4 Laser-printed Electrolytes 994.3 Summary 107References 1085 Design of Printed Batteries: From Chemistry to Aesthetics 112Keun-Ho Choi and Sang-Young Lee5.1 Introduction 1125.2 Design of Printed Battery Components 1145.2.1 Printed Electrodes 1145.2.2 Printed Separator Membranes and Solid-state Electrolytes 1215.3 Aesthetic Versatility of Printed Battery Systems 1265.3.1 Zn/MnO2 Batteries 1265.3.2 Supercapacitors 1325.3.3 Li-ion Batteries 1345.3.4 Other Systems 1385.4 Summary and Prospects 138Acknowledgements 141References 1416 Applications of Printed Batteries 144Abhinav M. Gaikwad, Aminy E. Ostfeld and Ana Claudia Arias6.1 Printed Microbatteries 1466.2 Printed Primary Batteries 1516.3 Printed Rechargeable Batteries 1606.4 High-Performance Printed Structured Batteries 1696.5 Power Electronics and Energy Harvesting 174References 1827 Industrial Perspective on Printed Batteries 185Patrick Rassek, Michael Wendler and Martin Krebs7.1 Introduction 1857.2 Printing Technologies for Functional Printing 1867.2.1 Flexography 1887.2.2 Gravure Printing 1907.2.3 Offset Printing 1927.2.4 Screen Printing 1937.2.5 Conclusion 1977.3 Comparison of Conventional Battery Manufacturing Methods with Screen Printing Technology 1977.4 Industrial Aspects of Screen-printed Thin Film Batteries 2007.4.1 Layout Considerations 2007.4.1.1 Sandwich Architecture (Stack Configuration) 2007.4.1.2 Parallel Architecture (Coplanar Configuration) 2017.4.2 Carrier Substrates and Multifunctional Substrates for Printed Batteries 2037.4.2.1 Barrier Requirements and Material Selection 2057.4.2.2 Process Requirements of Qualified Materials 2067.4.3 Current Collectors 2097.4.4 Electrodes 2107.4.5 Electrolytes and Separator 2147.4.6 Encapsulation Technologies 2157.4.6.1 Screen Printing of Adhesives 2157.4.6.2 Contact Heat Sealing 2167.4.6.3 Ultrasonic Welding 2177.4.7 Conclusion 2197.5 Industrial Applications and Combination With Other Flexible Electronic Devices 2207.5.1 Self-powered Temperature Loggers 2207.5.2 Smart Packaging Devices 2227.6 Industrial Perspective on Printed Batteries 2237.6.1 Competition with Conventional Batteries 2237.6.2 Cold Chain Monitoring 2257.6.3 Health]monitoring Devices 2267.7 Conclusion 226References 2278 Open Questions, Challenges and Outlook 230Carlos Miguel Costa, Juliana Oliveira and Senentxu Lanceros-MéndezAcknowledgements 233References 233Index 235