Energy storage material is a hot topic in material science and chemistry. During the past decade, nuclear magnetic resonance (NMR) has emerged as a powerful tool to aid understanding of the working and failing mechanisms of energy storage materials and devices. The aim of this book is to introduce the use of NMR methods for investigating electrochemical storage materials and devices. Presenting a comprehensive overview of NMR spectroscopy and magnetic resonance imaging (MRI) on energy storage materials, the book will include the theory of paramagnetic interactions and relevant calculation methods, a number of specific NMR approaches developed in the past decade for battery materials (e.g. in situ, ex situ NMR, MRI, DNP, 2D NMR, NMR dynamics) and case studies on a variety of related materials. Helping both NMR spectroscopists entering the field of batteries and battery specialists seeking diagnostic methods for material and device degradation, it is written by leading authorities from international research groups in this field.
The aim of this book is to introduce the use of NMR and MRI methods for investigating electrochemical storage materials and devices to help both NMR spectroscopists entering the field of batteries and battery specialists seeking diagnostic ...
This book explores a wide range of energy storage devices, such as a lithium ion battery, sodium ion battery, magnesium ion battery and supercapacitors.
Aims to bridge the gap between the material synthesis and the real application. This book aims at Senior Undergraduate/Graduate students in Material Chemistry, Electrochemistry and Chemical Engineering, and Energy Storage.
“Solid Acids as Electrolyte Materials for Proton Exchange Membrane (PEM) Electrolysis: Review. ... Laguna-Bercero, M.A. “Recent Advances in High Temperature Electrolysis Using Solid Oxide Fuel Cells: A Review.” Journal of Power Sources ...
... MRI of Gels 24: Advanced Diffusion Encoding Methods in MRI 25: NMR and MRI of Electrochemical Energy Storage Materials and Devices 26: NMR Spectroscopy for Probing Functional Dynamics at Biological Interfaces 27: Fast 2D Solution-state ...
R. Cao, J. S. Lee, M. Liu and J. Cho, Recent progress in non-precious catalysts for metal-air batteries. Advanced Energy Materials, 2012, 2, 816–829. 82. Z. Wen, C. Shen and Y. Lu, Air electrode for the lithium–air batteries: Materials ...
... Ji-Guang Zhang, et al. “Critical Parameters for Evaluating Coin Cells and Pouch Cells of Rechargeable Li-Metal ... Gaoquan Shi, Fengen Chen, and Xiaoyin Hong. “Doping Level Change of Polythiophene Film During Its Electrochemical Growth ...
Offers a comprehensive introduction to various types of ADMMs, their fabrication and characterization, and how to improve their performance Analyzes, compares, and discusses advances in different ADMMs in the application of electrochemical ...
... (∼30 kW kg−1) of supercapacitors and a high energy density (∼200 Wh kg−1) of secondary batteries. v. Understanding the charge storage mechanism: The charge storage mechanism is important for exploring the electrode material.
This book compiles nine comprehensive contributions from the principle of Li-ion batteries, cathode and anode electrode materials to future energy storage systems such as solid electrolyte for all-solid-state batteries and high capacity ...