Synthesis of α-Fe2O3/carbon nanocomposites as high capacity electrodes for next generation lithium ion batteries: a review
Author:
Affiliation:
1. Energy Research Institute at Nanyang Technological University (ERI@N)
2. Singapore 637553
3. Singapore
4. School of Materials Science and Engineering
5. Nanyang Technological University
6. Singapore 639798
Abstract
Review of the research progress in α-Fe2O3/carbon nanocomposites with superior electrochemical performance as promising alternatives to graphite anodes in LIBs.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/TA/C6TA08456G
Reference150 articles.
1. The Li-Ion Rechargeable Battery: A Perspective
2. Future generations of cathode materials: an automotive industry perspective
3. A perspective on the high-voltage LiMn1.5Ni0.5O4 spinel cathode for lithium-ion batteries
4. Materials Challenges and Opportunities of Lithium Ion Batteries
5. Key challenges in future Li-battery research
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