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Controlled Synthesis of Self-Assembled CdS Hierarchical Microspheres Through a Mixed-Solvothermal Route

机译:自组装CdS分层微球通过混合溶剂热途径的受控合成

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摘要

Three kinds of hierarchical three-dimensional (3D) hexagonal CdS microspheres with different building blocks (nanoparticle-based microspheres, nanosheet-based microspheres and nanorod-based microspheres) were fabricated using CdCl2·2.5H2O and NH2CSNH2 as starting materials through a facile mixed-solvothermal route. Various techniques have been used to characterize the prepared products, such as XRD, FESEM, TEM and UV-visible absorption spectroscopy. The experimental results indicated that the morphologies of CdS microcrystals were greatly affected by the volume ratio of two different solvent. When the volume ratio of ethylenediamine and ethanol were changed from 2:1, through 1:1 to 1:2, the building units of CdS microspheres could be changed from nanoparticles, through nanosheets to nanorods. UV-Vis absorption spectra confirmed that as-obtained three kinds of microspheres all have obvious quantum-confinement effect.
机译:以CdCl2·2.5H2O和NH2CSNH2为起始原料,通过简便的混合法制备了具有不同结构单元的三种分级三维(3D)六角形CdS微球(纳米颗粒基微球,纳米片基微球和纳米棒基微球)。溶剂热途径。已经使用各种技术来表征所制备的产物,例如XRD,FESEM,TEM和UV-可见吸收光谱法。实验结果表明,两种不同溶剂的体积比对CdS微晶的形貌有很大的影响。当乙二胺和乙醇的体积比从2:1更改为1:1到1:2时,CdS微球的结构单位可以从纳米颗粒更改为纳米片,而变为纳米棒。 UV-Vis吸收光谱证实,所获得的三种微球均具有明显的量子约束作用。

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