logo

EbookBell.com

Most ebook files are in PDF format, so you can easily read them using various software such as Foxit Reader or directly on the Google Chrome browser.
Some ebook files are released by publishers in other formats such as .awz, .mobi, .epub, .fb2, etc. You may need to install specific software to read these formats on mobile/PC, such as Calibre.

Please read the tutorial at this link:  https://ebookbell.com/faq 


We offer FREE conversion to the popular formats you request; however, this may take some time. Therefore, right after payment, please email us, and we will try to provide the service as quickly as possible.


For some exceptional file formats or broken links (if any), please refrain from opening any disputes. Instead, email us first, and we will try to assist within a maximum of 6 hours.

EbookBell Team

Fabrication Of Metalorganic Framework Derived Nanomaterials And Their Electrochemical Applications 1st Ed Wei Xia

  • SKU: BELL-7156040
Fabrication Of Metalorganic Framework Derived Nanomaterials And Their Electrochemical Applications 1st Ed Wei Xia
$ 31.00 $ 45.00 (-31%)

0.0

0 reviews

Fabrication Of Metalorganic Framework Derived Nanomaterials And Their Electrochemical Applications 1st Ed Wei Xia instant download after payment.

Publisher: Springer Singapore
File Extension: PDF
File size: 10.78 MB
Author: Wei Xia
ISBN: 9789811068102, 9789811068119, 9811068100, 9811068119
Language: English
Year: 2018
Edition: 1st ed.

Product desciption

Fabrication Of Metalorganic Framework Derived Nanomaterials And Their Electrochemical Applications 1st Ed Wei Xia by Wei Xia 9789811068102, 9789811068119, 9811068100, 9811068119 instant download after payment.

This thesis systematically introduces readers to a new metal-organic framework approach to fabricating nanostructured materials for electrochemical applications. Based on the metal-organic framework (MOF) approach, it also demonstrates the latest ideas on how to create optimal MOF and MOF-derived nanomaterials for electrochemical reactions under controlled conditions.

The thesis offers a valuable resource for researchers who want to understand electrochemical reactions at nanoscale and optimize materials from rational design to achieve enhanced electrochemical performance. It also serves as a useful reference guide to fundamental research on advanced electrochemical energy storage materials and the synthesis of nanostructured materials.

Related Products