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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Controlled Solvothermal Synthesis of Nanosheets, Nanobelts, and Ultralong Nanobelt Arrays with Honeycomb-Like Micropatterns of ZnSe on Zinc Substrate
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Controlled Solvothermal Synthesis of Nanosheets, Nanobelts, and Ultralong Nanobelt Arrays with Honeycomb-Like Micropatterns of ZnSe on Zinc Substrate

机译:ZnSe蜂窝状微图案的ZnSe可控溶剂热合成纳米片,纳米带和超长纳米带阵列。

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摘要

Nanosheets, narrobelts, and ultralong nanobelt arrays with honeycomb-like micropatterns of ZnSe were synthesized via a solvothermal reaction of Zn with Se and KBH4 in ethylenediamine at 200 degrees C for 24 h and subsequent annealing. The control over these nanostructures with different morphologies was achieved by adjusting the KBH4/Se molar ratio. The role of KBH4 in the formation of ZnSe(en)(0.5) nanobelts with different length-to-width ratios was investigated, and a possible mechanism was also proposed to account for the growth and conversion of these precursor nanostructures into ZnSe nanostructures. Current-voltage behaviors of the ultralong nanobelt arrays with honeycomb-like micropatterns were investigated. In addition, variable-aspect ratio ZnS nanosheets and nanowires were also synthesized by adjusting the KBH4/thiourea molar ratio in the Zn-thiourea-KBH4-ethylenediamine solvothermal system. The results suggest that this method may be employed for the controllable synthesis of other II-VI semiconductor nanostructures such as ZnTe, NiS, MnS, and so forth and provides opportunities for both fundamental research and technological applications.
机译:通过将Zn与Se和KBH4在乙二胺中的溶剂热反应在200摄氏度下进行24小时并随后退火,合成了具有ZnSe蜂窝状微图案的纳米片,narrobelt和超长纳米带阵列。通过调节KBH4 / Se摩尔比,可以控制这些具有不同形态的纳米结构。研究了KBH4在长宽比不同的ZnSe(en)(0.5)纳米带形成中的作用,并提出了可能的机制来解释这些前体纳米结构的生长和转化为ZnSe纳米结构。研究了具有蜂窝状微图案的超长纳米带阵列的电流-电压行为。另外,通过调节Zn-硫脲-KBH4-乙二胺溶剂热体系中的KBH4 /硫脲摩尔比,还合成了纵横比可变的ZnS纳米片和纳米线。结果表明,该方法可用于可控合成ZnTe,NiS,MnS等其他II-VI半导体纳米结构,为基础研究和技术应用提供了机会。

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