WS_batteries_energy _storage_2018

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Batteries and Related Titles on Energy Storage 2018 NEW

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Editor’s

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Series on Chemistry, Energy and the Environment - Vol 4

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Nanomaterials for Energy Conversion and Storage

Prospects for Li-ion Batteries and Emerging Energy Electrochemical Systems

edited by Dunwei Wang (Boston College, USA) & Guozhong Cao (University of Washington, USA)

edited by Laure Monconduit (Institut Charles Gerhardt de Montpellier (ICGM) - CNRS, France & Réseau Français sur le Stockage Électrochimique de l’Énergie, France & ALISTORE-ERI European Research Institute, France) & Laurence Croguennec (Institut de Chimie de la Matiè re Condensée de Bordeaux (ICMCM) - CNRS, France & Réseau Français sur le Stockage Électrochimique de l’Énergie, France & ALISTORE-ERI European Research Institute, France)

The use of nanomaterials in energy conversion and storage represents an opportunity to improve the performance, density and ease of transportation in renewable resources. This book looks at the most recent research on the topic, with particular focus on artificial photosynthesis and lithium-ion batteries as the most promising technologies to date. Research on the broad subject of energy conversion and storage calls for expertise from a wide range of backgrounds, from the most fundamental perspectives of the key catalytic processes at the molecular level to device scale engineering and optimization. Although the nature of the processes dictates that electrochemistry is a primary characterization tool, due attention is given to advanced techniques such as synchrotron studies in operando. These studies look at the gap between the performance of current technology and what is needed for the future, for example how to improve on the lithium-ion battery and to go beyond its capabilities.

This book provides the challenges and perspectives for Li-ion batteries (chapters 1 and 2), at the negative electrode as well as at the positive electrode, and for technologies beyond the Li-ion with the emerging Naion batteries and multivalent (Mg, Al, Ca, etc) systems (chapters 4 and 5). It aims to alert on the necessity to develop the recycling methods of the millions of produced batteries which are going to further flood our societies (chapter 3), and also to continuously increase the safety of the energy storage systems. For the latter challenge, it is interesting to seriously consider polymer electrolytes and batteries as an alternative (chapter 6). 380pp 978-981-3228-13-9

Apr 2018 US$138 £121

Ceramic Electrolytes for All-Solid-State Li Batteries

836pp 978-1-78634-362-8

Jan 2018 US$239 £210

Materials and Energy - Vol 6

Handbook of Solid State Batteries (2nd Edition)

by Masashi Kotobuki (NUS, Singapore), Shufeng Song (Chongqing University, China), Chao Chen (NUS, Singapore) & Li Lu (NUS, Singapore

edited by Nancy J Dudney (Oak Ridge National Laboratory, USA), William C West (Nagoya University, Japan) & Jagjit Nanda (Oak Ridge National Laboratory, USA)

This book is about various Li ion ceramic electrolytes and their applications to all-solid-state battery. It contains a wide range of topics from history of ceramic electrolytes and ion conduction mechanisms to recent research achievements. Here oxide-type and sulfide-type ceramic electrolytes are described in detail. Additionally, their applications to all-solid-state batteries, including Li-air battery and Li-S battery, are reviewed.

“A clearly written book, filled with data and in-depth technical descriptions from solid state battery fundamentals to state-of-the-art devices, it is likely to provide insights into new developments in this fields. Anyone interested in battery technology will find it well-worth owning.” IEEE Electrical Insulation Magazine

Consisting of fundamentals and advanced technology, this book would be suitable for beginners in the research of ceramic electrolytes; it can also be used by scientists and research engineers for more advanced development. 220pp 978-981-3233-88-1

Sep 2018 US$88

836pp Sep 2015 978-981-4651-89-9 US$235 £195 eBook at a lower price now (find out more on website/ Kindle)

£77

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Batteries and Related Titles on Energy Storage 2018 Modern Battery Engineering A Comprehensive Introduction edited by Kai Peter Birke (University of Stuttgart, Germany)

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Nanostructured and Photoelectrochemical Systems for Solar Photon Conversion

7KLV ULFKO\ LOOXVWUDWHG ERRN ZULWWHQ E\ 3URIHVVRU .DL 3HWHU %LUNH DQG VHYHUDO FR DXWKRUV DGGUHVVHV both scientific and engineering aspects of modern batteries in a unique way. Emphasizing the engineering part of batteries, the book acts as a compass towards next generation batteries for automotive and stationary applications. The book provides distinguished answers to still open questions on how future batteries look like. This book explains why and how batteries have to be designed for successful commercialization in e-mobility and stationary applications. The book will help readers understand the principle issues of battery designs, paving the way for engineers to avoid wrong paths and settle on appropriate cell technologies for next generation batteries. This book is ideal for training courses for readers interested in the field of modern batteries. 300pp 978-981-3272-15-6

edited by Mary D Archer (Imperial College, UK) & Arthur J Nozik (National Renewable Energy Laboratory, USA) “This book provides an excellent overview of nano-structured and photochemical systems for solar photon energy conversion ... a historic overview is given as well — to an extent difficult to find elsewhere ... It provides access to the latest findings in these rapidly developing fields and is certainly suitable for PhD students, and researchers with backgrounds both in physics and chemistry.â€? Dr Christian KĂśnrgstein, European Patent Office Readership: Chemists, physicists, materials scientists and hydrogen energy specialists. 780pp 978-1-86094-255-6

Nov 2018 US$138 ÂŁ120

Bestseller

Aug 2008 US$282 ÂŁ234

World Scientific Series in Current Energy Issues - Vol 4

Energy Storage

Li-S Batteries The Challenges, Chemistry, Materials and Future Perspectives

edited by Gerard M Crawley (Marcus Enterprise LLC, USA & University of South Carolina, USA)

edited by Rezan Demir-Cakan (Gebze Technical University, Turkey)

“Anyone wanting to learn quickly about the latest developments in energy storage should read this book. It provides enough technical depth for the reader to understand the advantages and limitations of the various storage methods, and sufficient references to enable the reader to dig more deeply into the technical details.� IEEE Journals & Magazines

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3URYLGHV FXUUHQW NQRZOHGJH DQG recent concepts of Li-S batteries and highlights research of top international VFLHQWLVWV LQ WKH ÂżHOG 'HVLJQHG IRU UHVHDUFKHUV DQG SUDFWLWLRQHUV ZRUNLQJ ZLWK /L 6 batteries, as well as an academic text for teaching and reading $XWKRUV DUH VWURQJO\ HQJDJHG LQ WKH SURJUHVV RI /L 6 EDWWHULHV and concentrate on the fundamental understandings and challenges surrounding their increased adoption

Readership: Undergraduates, graduate students, researchers, physicists, chemists and materials scientists interested in energy storage, material science and electrochemistry. 372pp 978-1-78634-249-2

Aug 2017 US$148 ÂŁ123

Readership: Graduate students, researchers and professionals in fields related to, and or dealing with issues pertaining to energy studies/research, electrical and electronic engineering. 320pp

Aug 2017

978-981-3208-95-7

US$138

ÂŁ115

Lithium-Ion Batteries Solid-Electrolyte Interphase edited by Perla B Balbuena & Yixuan Wang (University of South Carolina, USA)

Black TiO2 Nanomaterials for Energy Applications edited by Xiaobo Chen (University of MissouriKansas City, USA) & Yi Cui (Stanford) This book presents the recent progress on the research of black TiO2 nanomaterials, and how they can be used in a number of clean energy applications. The text covers a number of research topics, including the synthesis of black TiO2 nanomaterials (nanoparticles, nanowires and nanotubes) and their properties, the effect of point defects and ordered/disordered morphology, the applications in charge storage and photoelectrochemical water splitting, use in lithium ion batteries and in microwave absorption. Also included is a theoretical analysis of this research, thereby providing a comprehensive review of the subject for students, researchers and practitioners in catalytic science, materials science, nanotechnology, green technology, and chemistry. Readership: Students, researchers and practitioners in catalytic science, materials science, nanotechnology, green technology, and chemistry. 332pp 978-1-78634-165-5

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This book focuses on the mechanisms of formation of a solid-electrolyte interphase (SEI) on the electrode surfaces of lithium-ion batteries. The SEI film is due to electrochemical reduction of species present in the electrolyte. It is widely recognized that the presence of the film plays an essential role in the battery performance, and its very nature can determine an extended (or shorter) life for the battery. In spite of the numerous related research efforts, details on the stability of the SEI composition and its influence on the battery capacity are still controversial. Readership: Upper-level undergraduates, graduate students, academics and industrial researchers interested in lithium-ion battery technology; academics in electrochemistry, surface chemistry and computational chemistry. 424pp 978-1-86094-362-1

May 2004 US$210 ÂŁ174

Feb 2017 US$135 ÂŁ112

WORLD SCIENTIFIC

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Batteries and Related Titles on Energy Storage 2018 The Chemistry of Nanostructured Materials (Volume II)

Flexible Electronics From Materials to Devices edited by Guozhen Shen (Chinese Academy of Sciences, China) & Zhiyong Fan (The Hong Kong University of Science and Technology, Hong Kong) “This book gives an excellent introduction to flexible electronics, which refers to the science and technology of using flexible materials for manufacturing electronic circuits and optoelectronic devices. I recommend this book to all interested in this subject.� MRS Bulletin This book provides a comprehensive overview of the recent development of flexible electronics. This is a fast evolving research field and tremendous progress has been made in the past decade. In this book, new material development and novel flexible device, circuit design, fabrication and FKDUDFWHUL]DWLRQV ZLOO EH LQWURGXFHG 3DUWLFXODUO\ UHFHQW SURJUHVV RI nanomaterials, including carbon nanotubes, graphene, semiconductor nanowires, nanofibers, for flexible electronic applications, assembly of nanomaterials for large scale device and circuitry, flexible energy devices, such as solar cells and batteries, etc, will be introduced. And through reviewing these cutting edge research, the readers will be able to see the key advantages and challenges of flexible electronics both from material and device perspectives, as well as identify future directions of the field. Readership: Academics, researcher and graduate students in electrical & electronic engineering, microelectronics and nanomaterials & nanostructures. 476pp 978-981-4651-98-1

Jun 2016 US$178 ÂŁ148

World Scientific Series in Nanoscience and Nanotechnology - Vol 7

Scanning Probe Microscopy for Energy Research edited by Dawn A Bonnell (The University of Pennsylvania, USA) & Sergei V Kalinin (Oak Ridge National Laboratory, USA) Ĺź

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$ ÂżUVW EURDG RYHUYLHZ RI 6FDQQLQJ 3UREH 0LFURVFRS\ 630 IRU HQHUJ\ materials and devices :ULWWHQ E\ ZRUOG OHDGHUV LQ VFDQQLQJ SUREH PLFURVFRS\ &RQWDLQV ERWK DSSOLFDWLRQV RI HVWDEOLVKHG 630 WHFKQLTXHV DV well as overview of novel emergent methods and addresses applications in all major arenas of energy: alternative energy generation, energy harvesting, and storage

Readership: Students, professionals and researchers in materials science, nanomaterials and new materials. 640pp 978-981-4434-70-6

edited by Peidong Yang (UC Berkeley) This book covers the most exciting developments in the nanostructured materials field for the past five to ten years, with a particular focus on their applications in energy conversion and energy VWRUDJH 3URPLQHQW DXWKRUV RI UHFRJQL]HG DXWKRULW\ in the field contribute their expertise in the review chapters. Readership: Undergraduate and graduate students in nanochemistry. 336pp 978-981-4313-05-6 978-981-4313-06-3(pbk)

Jan 2011 US$94 ÂŁ78 US$42 ÂŁ35

Materials for Sustainable Energy A Collection of Peer-Reviewed Research and Review Articles from Nature Publishing Group edited by Vincent Dusastre (Nature Publishing Group, UK) “Materials science is an important enabler of scientific discovery, and many of the groundbreaking results appear in Nature. This volume is an important collection of some of the best of these papers with a concentration in those materials relevant for energy, making it a valuable reference. This is a very valuable reference for students or researchers in material science or nanoscience.� Mark Reed Yale University “Real impact in this field will require an integrated approach, from materials to systems, and this collection of papers from researchers impacting materials for energy is a considerable reference. It is an absolutely musthave for serious researchers worldwide.� Eugene T Fitzgerald Massachusetts Institute of Technology Readership: Students, professional and chemists, physicists, material scientists, engineers, biomedical scientists and anyone interested in energetic issues. 360pp 978-981-4317-64-1 978-981-4317-65-8(pbk)

Nov 2011 US$157 ÂŁ130 US$72 ÂŁ60

Jun 2013 US$158 ÂŁ131

Materials and Energy - Vol 3

The World Scientific Handbook of Energy edited by Gerard M Crawley (University of South Carolina, USA) This handbook provides comprehensive, reliable and timely sets of data on energy resources and uses; it gathers in one publication a concise description of the current state-of-the-art for a wide variety of energy resources, including data on resource availability worldwide and at different cost levels. The end use of energy in transportation, residential and industrial areas is outlined, and energy storage, conservation and the impact on the environment included.

Title of Interest The Grant Writer’s Handbook How to Write a Research Proposal and Succeed by Gerard M Crawley (University of South Carolina, USA) & Eoin O’Sullivan (University of Cambridge, UK) 252pp Dec 2015 978-1-78326-414-8(pbk) US$28 £23 978-1-78326-759-0 US$58 £48

Experts and key personnel straddling academia and related agencies and industries provide critical data for further exploration and research. Readership: Scientists, engineers and policymakers; undergraduates, graduates and researchers in energy studies. 588pp 978-981-4343-51-0

Mar 2013 US$212 ÂŁ186

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Batteries and Related Titles on Energy Storage 2018 JOURNALS: Subscribe Now! Functional Materials Letters (FML) www.worldscientific.com/fml Most read and featured articles on Batteries Recent Advances in Sodium Intercalation Positive Electrode Materials for Sodium Ion Batteries -LQJ ;X 'DH +RH /HH <LQJ 6KLUOH\ 0HQJ '2, 6

World Scientific Series on Carbon b Nanoscience Nano i N

Handbook of Carbon Nano Materials Volume 5: Volume 6: Volume 7: Volume 8:

Graphene – Fundamental Properties Graphene – Energy and Sensor Applications Synthetic Developments of Graphene and Nanotubes Characterization, Conducting Polymer and Sensor Applications

edited by Francis D’Souza (University of North Texas, USA) & Karl M Kadish (University of Houston, USA) “This is a very timely and important book which provides a useful catalogue of ideas and an invaluable source of up-to-date information, whether for the researcher who aims to make electronic devices, sensors, or materials for energy storage or biomedical applications, or indeed for those scientists and engineers who are simply intrigued by the properties of carbon nanomaterials and would like to learn more. The book serves as an essential guide to the synthesis, properties and applications of nanocarbons, which undoubtedly will appeal to a wide cross section of the research community.� Journal of Applied Crystallography The fifth and sixth volumes of the Handbook of Carbon Nano Materials focus on fundamental properties and key applications of graphene. Graphene, the thinnest known material made of a single atom thick sheet of carbon atoms arranged hexagonally, offers great opportunities for application development in nanotechnology. This handbook covers fundamental properties, characterization, chemical manipulation, and applications of graphene. Specific applications cover latest developments in chemical manipulation, thermodynamic characterization, energy conversion and storage, and biosensor development. The seventh and eighth volumes of Handbook of Carbon Nano Materials focus on novel properties and applications of nanocarbons, viz., graphene, nanotube and fullerene. The books provide a comprehensive overview of the author’s work, and significant discoveries and pioneering contributions from other groups. Specific applications cover latest developments in JUDSKHQH V\QWKHVLV &9' RI FDUERQ QDQRPDWHULDOV PXOWLIXQFWLRQDO FDUERQ nanostructures, chemical manipulation, energy conversion and storage, nanotube micellar surface chemistry, and biosensor development. 552pp (Vol.5-6) 978-981-4566-69-8(Set)

Apr 2014 US$330 ÂŁ274

600pp (Vol.7-8) 978-981-4678-90-2(Set)

Oct 2015 US$320 ÂŁ266

Find out info on other volumes of World Scientific Series on Carbon Nanoscience at http://bit.ly/wsscn

Check out the FREE articles online!

Li-rich layer-structured cathode materials for high energy Li-ion batteries Liu Li, Kim Seng Lee, Li Lu '2, 6 Architecture engineering of supercapacitor electrode materials .XQIHQJ &KHQ *RQJ /L 'RQJIHQJ ;XH '2, 6 Novel corn cob-like Fe3O4@Ni3S2 as high-performance electrode for supercapacitors $Q <H <DQZHL 6XL <RQJSHQJ +DQ =KL 6XQ -LTLX 4L )X[LDQJ :HL <H]HQJ +H 4LQJNXQ 0HQJ '2, 6 ; Three-dimensional self-supported metal oxides as cathodes for microbatteries :HQ ;LRQJ 4LX\LQJ ;LD +XL ;LD '2, 6 Special Issue on Advanced Functional Materials and Devices *XHVW (GLWRUV -LQNXL )HQJ DQG <X &KHQ Volume: 09, Number: 06

NANO www.worldscientific.com/nano

Most read and featured articles on Batteries One-Pot Synthesis of aa-Fe2O3 Nanospindles as High-Performance Lithium-Ion Battery Anodes Yanhua Ding, Bing Liu, Rongsheng Cai, Tuo Xin, Chen Li, Linhua Xia, Yiqian Wang

Check out the FREE articles online!

Optimized Assembly of Micro-/Meso-/ Macroporous Carbon for Li–S Batteries 4LRQJ 7DQJ +HTLQ /L 0LQ =XR -LQJ =KDQJ <LTLQ +XDQJ 3HLZHQ %DL -LDTL ;X .XDQ =KRX '2, 6 Nitrogen-Doped Hollow Carbon Nanospheres Derived from Dopamine as High-Performance Anode Materials for SodiumIon Batteries <XURQJ <DQJ 0LQ 4LX /L /LX 'DQ 6X <DQPHL 3L *XRPLQ <DQ '2, 6 A Review of Metal Oxide Composite Electrode Materials for Electrochemical Capacitors 0 < +R 3 6 .KLHZ ' ,VD 7 . 7DQ : 6 &KLX & + &KLD '2, 6

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