4.8 Article

Hydrogenated TiO2 Branches Coated Mn3O4 Nanorods as an Advanced Anode Material for Lithium Ion Batteries

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 19, 页码 10348-10355

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b01208

关键词

hybrid materials; nanostructures; oxygen vacancies; electrochemical properties; batteries

资金

  1. 973 Project of China [2011CB935901]
  2. National Nature Science Foundation of China [91022033, 51172076, 21471090]
  3. Shandong Provincial Natural Science Foundation for Distinguished Young Scholar [JQ201205]
  4. Independent Innovation Foundations of Shandong University [2012ZD007]
  5. new faculty start-up funding in Shandong University

向作者/读者索取更多资源

Rational design and delicate control on the component, structure, and surface of electrodes in lithium ion batteries are highly important to their performances in practical applications. Compared with various components and structures for electrodes, the choices for their surface are quite limited. The most widespread surface for numerous electrodes, a carbon shell, has its own issues, which stimulates the desire to find another alternative surface. Here, hydrogenated TiO2, is exemplified as an appealing surface for advanced anodes by the growth of ultrathin hydrogenated TiO2 branches on Mn3O4 nanorods. High theoretical Capacity of Mn3O4 is well matched with lbw volume variation (similar to 4%), enhanced electrical conductivity, good cycling stability, and rate capability of hydrogenated TiO2, as demonstrated in their electrochemical performances. The proof-of-concept reveals the promising potential of hydrogenated TiO2 as a next-generation material for the surface in high-performance hybrid electrodes.

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