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聚集诱导制备超稳定硫化锌胶体纳米球及其对多种有机染料的光催化降解

Aggregation-induced preparation of ultrastable zinc sulfide colloidal nanospheres and their photocatalytic degradation of multiple organic dyes.

作者信息

Yang Wanting, Liu Xiaoli, Li Dong, Fan Louzhen, Li Yunchao

机构信息

Department of Chemistry, Beijing Normal University, Beijing, 100875, P. R. China.

出版信息

Phys Chem Chem Phys. 2015 Jun 14;17(22):14532-41. doi: 10.1039/c5cp01831e.

Abstract

Monodispersed and ultrastable colloidal ZnS nanospheres (NPs) composed of tiny nanoparticles were successfully synthesized by using a limited ligand-induced in situ aggregation strategy. With such a strategy, the whole size as well as the particle size of those ZnS NPs could be tuned simultaneously by appropriately varying the reaction conditions. Three representative ZnS NP samples with different sphere sizes and particle sizes were thus obtained, which were all proven to possess rather large surface areas, robust structures and excellent colloidal stability. Furthermore, the photocatalytic activities of the as-prepared ZnS NPs toward the photodegradation of eosin B, methylene blue and their binary mixture were explored respectively. An interesting size-dependent degradation performance associated with the ZnS NPs was observed in all the photodegradation cases. Finally, their degradation mechanism was fully elucidated according to the control experiments under different atmospheres in combination with the related energy level information. We believe that the control strategy for tuning the fine and whole structures of spherical nanostructures in a synergistic manner together with the structure-dependent photodegradation performance revealed herein will definitely benefit the fabrication of highly efficient photocatalysts as well as the nanocomplexes with hierarchical architectures.

摘要

通过使用有限配体诱导原位聚集策略,成功合成了由微小纳米颗粒组成的单分散且超稳定的胶体硫化锌纳米球(NPs)。采用这种策略,可以通过适当改变反应条件同时调节这些硫化锌NPs的整体尺寸和颗粒尺寸。由此获得了三种具有不同球体尺寸和颗粒尺寸的代表性硫化锌NP样品,所有这些样品都被证明具有相当大的表面积、坚固的结构和优异的胶体稳定性。此外,分别研究了所制备的硫化锌NPs对曙红B、亚甲基蓝及其二元混合物光降解的光催化活性。在所有光降解情况下,均观察到与硫化锌NPs相关的有趣的尺寸依赖性降解性能。最后,根据不同气氛下的对照实验并结合相关能级信息,充分阐明了它们的降解机理。我们相信,以协同方式调节球形纳米结构的精细和整体结构的控制策略以及本文揭示的结构依赖性光降解性能,必将有利于高效光催化剂以及具有分级结构的纳米复合物的制备。

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