材料科学
铜
硫化铜
光热治疗
纳米颗粒
分散性
纳米尺度
热分解
纳米技术
带隙
六方晶系
化学工程
光电子学
结晶学
化学
冶金
工程类
有机化学
高分子化学
作者
Donghwan Yoon,Haneul Jin,Suho Ryu,Su Hyun Park,Hionsuck Baik,Seungjoo Haam,Seungjoo Haam,Chulmin Joo,Kwangyeol Lee
出处
期刊:CrystEngComm
[The Royal Society of Chemistry]
日期:2015-01-01
卷期号:17 (25): 4627-4631
被引量:40
摘要
Copper sulphide materials have received great attention due to their low bandgap semiconducting properties. As compared to other chalcogenides, few synthetic examples have been reported, and a simple and scalable synthetic method for preparing size- and shape-controlled copper sulphide nanoparticles is required for potential wide application of these materials. Herein, a facile one pot scalable synthetic route has been developed for preparing highly monodisperse djurleite Cu1.94S hexagonal nanoplates. The thermal decomposition of a single precursor CuSCN was found suitable for preparing a large quantity of highly monodisperse Cu1.94S hexagonal nanoplates; a multi-gram scale product could be obtained in a single step. Under the synthetic scheme developed, the width of Cu1.94S nanoplates with a thickness of ~ 10 nm could be easily tuned from 70 nm to 130 nm. Their optical properties were investigated and their photothermal effect was also studied by photothermal optical coherence reflectometry (PT OCR). Cu1.94S hexagonal nanoplates showed a considerable photothermal effect, which was found to depend on the nanoparticle concentration.
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