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Synthesis, Optical Properties and Photovoltaic Application of the SnS Quasi-one-dimensional Nanostructures 被引量:5

Synthesis, Optical Properties and Photovoltaic Application of the SnS Quasi-one-dimensional Nanostructures
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摘要 Low-toxicity single crystal Sn S nanowires had been successfully synthesized by the catalystassistant chemical vapor deposition. Au nanoparticles were applied on the ITO surface as the catalysis, using Sn S powder and S powder as forerunners. The structure, morphology and optical properties of the prepared Sn S nanowires were characterized. The experimental results show the as-synthesized nanowires are single crystalline with a preferential orientation. The synthesized Sn S nanowires show strong absorption in the visible and nearinfrared spectral region, and the direct energy band gap of Sn S nanowires is 1.46 e V. Low-toxicity single crystal SnS nanowires had been successfully synthesized by the catalyst-assistant chemical vapor deposition. Au nanoparticles were applied on the ITO surface as the catalysis, using SnS powder and S powder as forerunners. The structure, morphology and optical properties of the prepared SnS nanowires were characterized. The experimental results show the as-synthesized nanowires are single crystalline with a preferential orientation. The synthesized SnS nanowires show strong absorption in the visible and near-infrared spectral region, and the direct energy band gap of SnS nanowires is 1.46 eV.
出处 《Nano-Micro Letters》 SCIE EI CAS 2013年第1期1-6,共6页 纳微快报(英文版)
基金 partially supported by the National Science Foundation of China(No.50902117,No.11104126 and No.50825101) the Natural Science Foundation of Fujian Province of China(Grant No.2009J01263) the National Basic Research Program of China(No.2012CB933103) Scientific and Technological Innovation Platform of Fujian Province(2006L2003)
关键词 NANOSTRUCTURE Chemical vapor deposition Crystal growth Optical property Nanostructure Chemical vapor deposition Crystal growth Optical property
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