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Functional Membranes for High Efficiency Molecule and Ion Transport [Hardcover]

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  • Category: Books (Science)
  • ISBN-10:  981198154X
  • ISBN-10:  981198154X
  • ISBN-13:  9789811981548
  • ISBN-13:  9789811981548
  • Publisher:  Springer
  • Publisher:  Springer
  • Binding:  Hardcover
  • Binding:  Hardcover
  • Pub Date:  01-Apr-2023
  • Pub Date:  01-Apr-2023
  • SKU:  981198154X-11-MING
  • SKU:  981198154X-11-MING
  • Pages:  302
  • Pages:  302
  • Item ID: 105381910
  • Seller: ShopSpell
  • Ships in: 2 business days
  • Transit time: Up to 5 business days
  • Delivery by: Oct 15 to Oct 17
  • Notes: Brand New Item. Not shipped to AK, HI, APO, FPO, AE.

This book provides an overview of functional membranes for efficient ion/molecule transfer and separation. It first presents the design, fabrication, structure, and performance of several kinds of membranes. Then, the application of membrane technology in organic solvent nanofiltration, hydrogen fuel cells, and solid-state lithium batteries is introduced. Furthermore, the book proposes strategies of strengthening the ion/molecular-level separation and transfer process in membrane processes. It also analyzes the development status, existing problems, and optimization methods in the field of membranes and membrane processes. Finally, it highlights the construction strategy of membrane structures, the structureperformance relationships as well as the transfer and separation mechanisms. The target group of this book is academics and researchers in materials science, chemical engineering, biomedical engineering, and other related fields.

Introduction to Membrane.- Composite Membrane for Organic Solvent Nanofiltration.-Lamellar Membrane for Organic Solvent Nanofiltration.- Composite Proton Exchange Membrane for Hydrogen Fuel Cell.- Lamellar and Nanofiber-based Proton Exchange Membranes for Hydrogen Fuel Cell.- Composite Separator for Lithiumsulfur Battery.- Composite Electrolyte for All-solid-state Lithium Battery.

Jingtao Wang obtained his doctorate from Tianjin University in 2012. Then, he has worked at School of Chemical Engineering, Zhengzhou University, since 2012. His current interests include: the development of high-performance conductive membrane materials and research of their structure-performance relationship for improvement of the performance and life of hydrogen fuel cells and solid-state lithium batteries.

Wenjia Wu received his PhD degree in Chemical Engineering from Zhengzhou University. He then worked as a postdoctoral fellow with Prof. Lingbo Qu inlÃØ