Literature DB >> 23038151

Hydrogenated Li(4)Ti(5)O(12) nanowire arrays for high rate lithium ion batteries.

Laifa Shen1, Evan Uchaker, Xiaogang Zhang, Guozhong Cao.   

Abstract

Self-supported Li(4) Ti(5) O(12) nanowire arrays with high conductivity architectures are designed and fabricated for application in a Li-ion battery. The Li(4) Ti(5) O(12) nanowire arrays grow directly on Ti foil by a facile solution-based method, further enhancing Li-ion storage properties by creating Ti(3+) sites through hydrogenation. This configuration ensures that every Li(4) Ti(5) O(12) nanowire participates in the fast electrochemical reaction, enabling remarkable rate performance and a long cycle life.
Copyright © 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Year:  2012        PMID: 23038151     DOI: 10.1002/adma.201203151

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  12 in total

Review 1.  The role of nanotechnology in the development of battery materials for electric vehicles.

Authors:  Jun Lu; Zonghai Chen; Zifeng Ma; Feng Pan; Larry A Curtiss; Khalil Amine
Journal:  Nat Nanotechnol       Date:  2016-12-06       Impact factor: 39.213

2.  Electron bottleneck in the charge/discharge mechanism of lithium titanates for batteries.

Authors:  Edgar Ventosa; Marcel Skoumal; Francisco Javier Vazquez; Cristina Flox; Jordi Arbiol; Joan Ramon Morante
Journal:  ChemSusChem       Date:  2015-04-17       Impact factor: 8.928

3.  Two-dimensional wavelike spinel lithium titanate for fast lithium storage.

Authors:  Jiehua Liu; Xiangfeng Wei; Xue-Wei Liu
Journal:  Sci Rep       Date:  2015-05-18       Impact factor: 4.379

4.  Stabilization of oxygen-deficient structure for conducting Li4Ti5O12-δ by molybdenum doping in a reducing atmosphere.

Authors:  Hannah Song; Tae-Gyung Jeong; Young Hoon Moon; Ho-Hwan Chun; Kyung Yoon Chung; Hyung Sun Kim; Byung Won Cho; Yong-Tae Kim
Journal:  Sci Rep       Date:  2014-03-12       Impact factor: 4.379

5.  Directly grown nanostructured electrodes for high volumetric energy density binder-free hybrid supercapacitors: a case study of CNTs//Li4Ti5O12.

Authors:  Wenhua Zuo; Chong Wang; Yuanyuan Li; Jinping Liu
Journal:  Sci Rep       Date:  2015-01-14       Impact factor: 4.379

6.  High Performance Li₄Ti₅O12/Si Composite Anodes for Li-Ion Batteries.

Authors:  Chunhui Chen; Richa Agrawal; Chunlei Wang
Journal:  Nanomaterials (Basel)       Date:  2015-08-28       Impact factor: 5.076

7.  A Facile Surface Reconstruction Mechanism toward Better Electrochemical Performance of Li4Ti5O12 in Lithium-Ion Battery.

Authors:  Kun Qian; Linkai Tang; Marnix Wagemaker; Yan-Bing He; Dongqing Liu; Hai Li; Ruiying Shi; Baohua Li; Feiyu Kang
Journal:  Adv Sci (Weinh)       Date:  2017-07-10       Impact factor: 16.806

8.  High-Density Microporous Li4Ti5O12 Microbars with Superior Rate Performance for Lithium-Ion Batteries.

Authors:  Linkai Tang; Yan-Bing He; Chao Wang; Shuan Wang; Marnix Wagemaker; Baohua Li; Quan-Hong Yang; Feiyu Kang
Journal:  Adv Sci (Weinh)       Date:  2017-01-25       Impact factor: 16.806

9.  Preparation of Ce- and La-Doped Li₄Ti₅O12 Nanosheets and Their Electrochemical Performance in Li Half Cell and Li₄Ti₅O12/LiFePO₄ Full Cell Batteries.

Authors:  Meng Qin; Yueming Li; Xiao-Jun Lv
Journal:  Nanomaterials (Basel)       Date:  2017-06-20       Impact factor: 5.076

10.  Recent Progress in Self-Supported Metal Oxide Nanoarray Electrodes for Advanced Lithium-Ion Batteries.

Authors:  Feng Zhang; Limin Qi
Journal:  Adv Sci (Weinh)       Date:  2016-04-15       Impact factor: 16.806

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