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Sonochemistry-assisted synthesis and optical properties of mesoporous ZnS nanomaterials

机译:声化学辅助合成介孔ZnS纳米材料及其光学性质

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Zinc sulfide (ZnS) nanomaterials with well-defined mesoporosity were synthesized with the assistance of sonochemistry in an ethanot system of Zn(NO3)2 and Na2S, without using any templates or surfactants. The prepared ZnS presented a crystalline structure of the cubic zinc-blende phase and possessed a high specific surface area of 263 m~2 g~(-1) with a narrow pore size distribution around 5.1 nm. Abundant surface defects existed in the obtained mesoporous ZnS, thanks to the NaNO3 salt protection through the process of occasional precipitation in the alcohol system. Sonochemically synthesized ZnS nanomaterials showed higher activities for the photodegradation of Rhodamine B under UV light irradiation than the ones prepared in the absence of sonochemistry or in an aqueous system, which was mainly due to the well-structured mesoporosity and the surface defects.
机译:借助声化学在Zn(NO3)2和Na2S的乙醇体系中合成了具有良好介孔性的硫化锌(ZnS)纳米材料,无需使用任何模板或表面活性剂。制备的ZnS呈现立方晶状闪锌矿相的晶体结构,具有263 m〜2 g〜(-1)的高比表面积和5.1 nm附近的窄孔径分布。所得的介孔ZnS中存在大量的表面缺陷,这要归功于通过在酒精系统中偶然沉淀的过程中的NaNO3盐保护作用。超声化学合成的ZnS纳米材料在紫外光照射下对若丹明B的光降解活性高于无声化学或在水性体系中制备的ZnS纳米材料,这主要是由于结构良好的介孔性和表面缺陷。

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