Description: Rational Design of Nanostructured Polymer Electrolytes and SolidLiquid Interphases for Lithium Batteries by Snehashis Choudhury Estimated delivery 3-12 business days Format Hardcover Condition Brand New Description This thesis makes significant advances in the design of electrolytes and interfaces in electrochemical cells that utilize reactive metals as anodes. Publisher Description This thesis makes significant advances in the design of electrolytes and interfaces in electrochemical cells that utilize reactive metals as anodes. Such cells are of contemporary interest because they offer substantially higher charge storage capacity than state-of-the-art lithium-ion battery technology. Batteries based on metallic anodes are currently considered impractical and unsafe because recharge of the anode causes physical and chemical instabilities that produce dendritic deposition of the metal leading to catastrophic failure via thermal runaway. This thesis utilizes a combination of chemical synthesis, physical & electrochemical analysis, and materials theory to investigate structure, ion transport properties, and electrochemical behaviors of hybrid electrolytes and interfacial phases designed to prevent such instabilities. In particular, it demonstrates that relatively low-modulus electrolytes composed of cross-linked networks of polymer-grafted nanoparticles stabilize electrodeposition of reactive metals by multiple processes, including screening electrode electrolyte interactions at electrochemical interfaces and by regulating ion transport in tortuous nanopores. This discovery is significant because it overturns a longstanding perception in the field of nanoparticle-polymer hybrid electrolytes that only solid electrolytes with mechanical modulus higher than that of the metal electrode are able to stabilize electrodeposition of reactive metals. Author Biography Snehashis Choudhury is a postdoctoral researcher in the Department of Chemical Engineering at Stanford University. He received his PhD from Cornell University in 2018. Details ISBN 3030289427 ISBN-13 9783030289423 Title Rational Design of Nanostructured Polymer Electrolytes and SolidLiquid Interphases for Lithium Batteries Author Snehashis Choudhury Format Hardcover Year 2019 Pages 230 Edition 1st Publisher Springer Nature Switzerland AG GE_Item_ID:140625922; About Us Grand Eagle Retail is the ideal place for all your shopping needs! With fast shipping, low prices, friendly service and over 1,000,000 in stock items - you're bound to find what you want, at a price you'll love! Shipping & Delivery Times Shipping is FREE to any address in USA. Please view eBay estimated delivery times at the top of the listing. Deliveries are made by either USPS or Courier. We are unable to deliver faster than stated. International deliveries will take 1-6 weeks. NOTE: We are unable to offer combined shipping for multiple items purchased. This is because our items are shipped from different locations. Returns If you wish to return an item, please consult our Returns Policy as below: Please contact Customer Services and request "Return Authorisation" before you send your item back to us. Unauthorised returns will not be accepted. Returns must be postmarked within 4 business days of authorisation and must be in resellable condition. Returns are shipped at the customer's risk. We cannot take responsibility for items which are lost or damaged in transit. For purchases where a shipping charge was paid, there will be no refund of the original shipping charge. Additional Questions If you have any questions please feel free to Contact Us. Categories Baby Books Electronics Fashion Games Health & Beauty Home, Garden & Pets Movies Music Sports & Outdoors Toys
Price: 211.95 USD
Location: Fairfield, Ohio
End Time: 2024-02-29T06:07:35.000Z
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ISBN-13: 9783030289423
Type: NA
Publication Name: NA
Book Title: Rational Design of Nanostructured Polymer Electrolytes and Solid-Liquid Interphases for Lithium Batteries
Item Length: 9.3in
Item Width: 6.1in
Author: Snehashis Choudhury
Format: Hardcover
Language: English
Topic: Materials Science / General, Textiles & Polymers, Power Resources / General
Publisher: Springer International Publishing A&G
Publication Year: 2019
Genre: Technology & Engineering
Item Weight: 19.1 Oz
Number of Pages: Xvii, 230 Pages