Issue 11, 2012

Facile synthesis of Li4Ti5O12/C composite with super rate performance

Abstract

The Li4Ti5O12/C composite with lump morphology and excellent rate performance are synthesized using a facile hydrothermal method followed by a low temperature heat treatment. In the hydrothermal process, the introduction of cetyltrimethylammonium bromide (CTAB) as a surfactant significantly improves the rate performance of Li4Ti5O12/C composite as anode material for lithium ion battery (LIB). The specific capacities of the obtained composite at charge and discharge rates of 0.1, 1, 5, 10 and 20 C are 176, 163, 156, 151 and 136 mA h g−1, respectively, which is apparently larger than those of the Li4Ti5O12/C free from CTAB in the preparation. The Li4Ti5O12/C prepared in presence of CTAB also shows excellent cycling performance at high rate, which is attributed to its larger diffusion coefficient of lithium ion (6.82 × 10−12 cm2 s−1) and smaller charge-transfer resistance (Rct) (19.2 Ω) than those of the composite (1.22 × 10−13 cm2 s−1 and 50.2 Ω) free from CTAB in the preparation. The Li4Ti5O12 particles obtained in presence of CTAB are coated uniformly by a thin carbon layer with a thickness of ∼1 nm, whereas the Li4Ti5O12 particles obtained in absence of CTAB are covered by relatively thick surface layers with a thickness of ∼2.5 nm, which is too thick, blocks the lithium ion diffusion and leads to low ionic conductivity.

Graphical abstract: Facile synthesis of Li4Ti5O12/C composite with super rate performance

Supplementary files

Article information

Article type
Paper
Submitted
19 Jun 2012
Accepted
16 Aug 2012
First published
16 Aug 2012

Energy Environ. Sci., 2012,5, 9595-9602

Facile synthesis of Li4Ti5O12/C composite with super rate performance

B. Li, C. Han, Y. He, C. Yang, H. Du, Q. Yang and F. Kang, Energy Environ. Sci., 2012, 5, 9595 DOI: 10.1039/C2EE22591C

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