4.2 Article

Solvothermal Synthesis of 3D BiOCl Microstructures and Their Electrochemical Hydrogen Storage Behavior

期刊

JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
卷 12, 期 3, 页码 2068-2075

出版社

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/jnn.2012.5673

关键词

Inorganic Materials; BiOCl; Surface Area; Electrochemical Hydrogen Storage

资金

  1. 973 Project of China [2011CB935900]
  2. National Nature Science Fund of China [91022033]

向作者/读者索取更多资源

Bi-based layered materials, at present, serve as the potential candidates for the application of hydrogen storage. In our study, several 3D BiOCl microstructures, such as 2500 nm peonies, 1000 nm ball-flowers, and 3000 nm rough spheres are selectively and solvothermally prepared at 180 degrees C. These microstructures are composed of nanoplate with size of similar to 1000 nm, similar to 300 nm and similar to 200 nm, respectively, the growth surface of which are all (001). Electrochemical hydrogen storage capacities of these microstructures are investigated in Ni/H battery model. It is found that rough spheres could store 0.52 wt% hydrogen related to a discharge capacity of 140 mAh . g(-1) at a current density of 50 mA . g(-1). The hydrogen storage of ball-flowers and peonies is 0.49 wt% (133 mAh . g(-1)) and 0.32 wt% (85 mAh . g(-1)). Brunauer-Emmett-Teller (BET) surface areas of rough spheres, ball-flowers and peonies are 35.0 m(2) . g(-1), 33.7 m(2) . g(-1), and 19.2 m(2) . g(-1), respectively. In addition, the hydrogen storage study of BiOCl microstructure composed of nanoplates with exposed facet perpendicular to [221] axis indicates that hydrogen enters into the interlayer.

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