Electro-Chemo-Mechanics of Solids Softcover Reprint of the Original 1st 2017 ed. Edition

Electro-Chemo-Mechanics of Solids Softcover Reprint of the Original 1st 2017 ed. Edition book cover

Electro-Chemo-Mechanics of Solids Softcover Reprint of the Original 1st 2017 ed. Edition

Author(s): Sean R. Bishop (Author), Nicola H. Perry (Editor), Dario Marrocchelli (Editor), Brian W. Sheldon (Editor)

  • Publisher: Springer Nature
  • Publication Date: May 8 2018
  • Edition: Softcover Reprint of the Original 1st 2017 ed.
  • Language: English
  • Print length: 192 pages
  • ISBN-10: 3319846426
  • ISBN-13: 9783319846422

Book Description

This book brings together a collection of chapters that focus on the relationship among electrical, chemical, and mechanical properties and the study of adjusting one property through the control of another, namely, Electro-Chemo-Mechanics (ECM). The authors examine how this relationship can result in beneficial properties, such as mixed ionic and electronic conductivity, in oxides, upon oxygen deficiency or lithium insertion (electro-chemo) and/or changes in ionic and electronic mobility observed in strained systems (electro-mechano). They also consider how ECM interactions can be responsible for large stresses from non-stoichiometry induced lattice dilation (chemo-mechano). While many volumes are available devoted to the study of the origins and characteristics of electro-chemical relationships, they form the well-known field of electrochemistry, this volume is highly novel in its examination of the corresponding electro-mechanical, chemo-mechanical, and electro-chemo-mechanical relationships. The book is ideal for researchers and design engineers interested in energy storage and conversion and the electrical and mechanical properties of materials.

Editorial Reviews

From the Back Cover

This book brings together a collection of chapters that focus on the relationship among electrical, chemical, and mechanical properties and the study of adjusting one property through the control of another, namely, Electro-Chemo-Mechanics (ECM). The authors examine how this relationship can result in beneficial properties, such as mixed ionic and electronic conductivity, in oxides, upon oxygen deficiency or lithium insertion (electro-chemo) and/or changes in ionic and electronic mobility observed in strained systems (electro-mechano). They also consider how ECM interactions can be responsible for large stresses from non-stoichiometry induced lattice dilation (chemo-mechano). While many volumes are available devoted to the study of the origins and characteristics of electro-chemical relationships, they form the well-known field of electrochemistry, this volume is highly novel in its examination of the corresponding electro-mechanical, chemo-mechanical, and electro-chemo-mechanical relationships. The book is ideal for researchers and design engineers interested in energy storage and conversion and the electrical and mechanical properties of materials.

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