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Host (nanodimensional Pores Of Mesoporous Material)-guest (semiconductor Nanoparticles) Nanocomposite Materials

机译:主体(介孔材料的纳米孔)-客体(半导体纳米颗粒)纳米复合材料

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摘要

An aluminosilicate with the MCM-41 structure (AlMCM-41) was used as a host for the synthesis of cobalt sulfide nanoparticles. Cobalt sulfide nanoparticles were introduced in host by ion exchange and hydrother-mal methods. Products (CoSAIMCM-41) were characterized by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), EDX, IR, BET and UV-vis spectroscopy. The results show that CoS nanoparticles encapsulated into channels of AlMCM-41 material by hydrothermal synthesis and they grow outside the mesopore AlMCM-41 matrix by ion-exchange methods. Absorption peaks at higher energy than the fundamental absorption edge of bulk CoS indicate quantum confinement effect in nanoparticles as a consequence of their small size. The absorption spectra show that the optical band gap for CoS nanoparticles by hydrothermal and ion-exchange methods are 3.73 and 4.89, respectively.
机译:具有MCM-41结构的铝硅酸盐(AlMCM-41)被用作合成硫化钴纳米颗粒的主体。通过离子交换和水热法将硫化钴纳米粒子引入宿主。通过X射线粉末衍射(XRD),扫描电子显微镜(SEM),EDX,IR,BET和UV-vis光谱对产品(CoSAIMCM-41)进行表征。结果表明,CoS纳米颗粒通过水热合成被包封在AlMCM-41材料的通道中,并通过离子交换方法在中孔AlMCM-41基质外生长。能量的吸收峰比块状​​CoS的基本吸收边缘高,这表明纳米颗粒的尺寸小,因此具有量子限制作用。吸收光谱表明,通过水热法和离子交换法测得的CoS纳米粒子的光学带隙分别为3.73和4.89。

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