Issue 5, 2015

Topochemical transformation of Co(ii) coordination polymers to Co3O4 nanoplates for high-performance lithium storage

Abstract

Coordination polymer (CP) templated synthesis of metal oxides has been researched intensively for applications in enhanced electrochemical energy storage and improved catalytic activity. In this manuscript, we demonstrate, for the first time, a topochemical transformation route to synthesize novel layered Co3O4 nanoplates using lamellar structured cobalt-based CPs as a template for optimized lithium-ion battery applications. Endowed with the synergistic advantages of 2D layered textural features and highly exposed reactive (111) crystal planes, the Co3O4 nanoplates exhibit remarkably enhanced lithium storage performance, including fast and high level lithium storage (852 mA h g−1 at 500 mA g−1 after 100 cycles), good rate capability (597 mA h g−1 at 1000 mA g−1 after 100 cycles) and stable cyclability (up to 200 cycles).

Graphical abstract: Topochemical transformation of Co(ii) coordination polymers to Co3O4 nanoplates for high-performance lithium storage

Supplementary files

Article information

Article type
Paper
Submitted
24 Sep 2014
Accepted
03 Dec 2014
First published
03 Dec 2014

J. Mater. Chem. A, 2015,3, 2251-2257

Topochemical transformation of Co(II) coordination polymers to Co3O4 nanoplates for high-performance lithium storage

J. Guo, B. Jiang, X. Zhang, L. Tang and Y. Wen, J. Mater. Chem. A, 2015, 3, 2251 DOI: 10.1039/C4TA05041J

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