2013RSC AdvancesRequires access

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

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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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What this paper is about

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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Available 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.

Key concepts: Wurtzite crystal structure, Sphalerite, Nanowire, In situ, Materials science, Substrate (aquarium), Chemical vapor deposition, Crystallography

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