Substantially enhanced rate capability of lithium storage in Na2Ti6O13 with self-doping and carbon-coating
Author:
Affiliation:
1. Department of Chemical Engineering
2. University of Missouri
3. Columbia
4. USA
5. Department of Chemistry
6. Middle Tennessee State University
7. Murfreesboro
8. Electron Microscopy Core Facility
Abstract
Ti3+ self-doping and carbon-coating are efficient approaches to simultaneously improve the rate capability and cyclability of Na2Ti6O13 nanowires for lithium storage.
Funder
Vehicle Technologies Program
University of Missouri
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2018/RA/C8RA00468D
Reference34 articles.
1. High-performance Na2Ti2O5 nanowire arrays coated with VS2 nanosheets for sodium-ion storage
2. Hydrogenation Driven Conductive Na2Ti3O7 Nanoarrays as Robust Binder-Free Anodes for Sodium-Ion Batteries
3. Carbon coated sodium-titanate nanotube as an advanced intercalation anode material for sodium-ion batteries
4. Na2Ti3O7: an intercalation based anode for sodium-ion battery applications
5. Na2Ti3O7: Lowest Voltage Ever Reported Oxide Insertion Electrode for Sodium Ion Batteries
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