Ordered mesoporous metallic MoO2 materials with highly reversible lithium storage capacity

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Abstract

Highly ordered mesoporous crystalline MoO2 materials with bicontinuous la3dmesostructure were synthesized by using phosphomolybdic acid as a precursor and mesoporous silica KIT-6 as a hard template in a 10% H 2 atmosphere via nanocasting strategy. The prepared mesoporous MoO2 material shows a typical metallic conductivity with a low resistivity (∼0.01Ω cm at 300 K), which makes it different from all previously reported mesoporous metal oxides materials. Primary test found that mesoporous MoO2 material exhibits a reversible electrochemical lithium storage capacity as high as 750 mA h g -1 at C/20 after 30 cycles, rendering it as a promising anode material for lithium ion batteries. © 2009 American Chemical Society.

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Shi, Y., Guo, B., Corr, S. A., Shi, Q., Hu, Y. S., Heier, K. R., … Stucky, G. D. (2009). Ordered mesoporous metallic MoO2 materials with highly reversible lithium storage capacity. Nano Letters, 9(12), 4215–4220. https://doi.org/10.1021/nl902423a

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