In situ growth of ZnS nanowires with a new crystallographic orientation relationship of wurtzite and sphalerite structures
Hailong Zhang, Juntao Zhang, Tengfei Xu, Meng He, Jianye Li
Abstract
Hailong Zhang, Juntao Zhang, Tengfei Xu, Meng He, Jianye Li
Abstract
Through a low temperature (500 °C) catalyst-free chemical vapor deposition (CVD) method, ZnS nanowires with lengths of up to tens of micrometers were grown in situ on a substrate with CS2, used as the sulfur source, for the first time. The nanowires were characterized and a new crystallographic orientation relationship between wurtzite and sphalerite ZnS phases is identified in the ZnS nanowires: the individual ZnS nanowires consist of both wurtzite and sphalerite structures coexisting as two parallel components along the axis direction.
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Through a low temperature (500 °C) catalyst-free chemical vapor deposition (CVD) method, ZnS nanowires with lengths of up to tens of micrometers were grown in situ on a substrate with CS2, used as the sulfur source, for the first time. The nanowires were characterized and a new crystallographic orientation relationship between wurtzite and sphalerite ZnS phases is identified in the ZnS nanowires: the individual ZnS nanowires consist of both wurtzite and sphalerite structures coexisting as two parallel components along the axis direction.
Key concepts: Wurtzite crystal structure, Sphalerite, Nanowire, In situ, Materials science, Substrate (aquarium), Chemical vapor deposition, Crystallography