An overview of the developments of nanotechnology and heterogeneous photocatalysis in the presence of metal nanoparticles

Mekonnen Tigabu Bekele
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引用次数: 1

Abstract

In general, nanotechnology can be understood as a technology of design, fabrication and applications of nanostructures and nanomaterials, as well as a fundamental understanding of the physical properties and phenomena of nanomaterials and nanostructures. In recent years the development of industries like textile, leather, paint, food, plastics, and cosmetics is enlarged and these industries are connected with the discarding of a vast number of organic pollutants which are harmful to microbes, aquatic systems, and human health by influencing the different parameters. So the fabrication of those nanomaterials (coupled or doped) to form heterojunctions provides an effective way to better harvest solar energy and facilitate charge separation and transfer, thus enhancing the photocatalytic activity and stability. We expect this review to provide a guideline for readers to gain a clear picture of the fabrication and application of different types of heterostructured photocatalysts. In this review, starting from the photocatalytic reaction mechanism and the preparation of the photocatalyst, we review the classification of current photocatalysts, preparation methods, a factor that affects photocatalytic reaction, characterization of photocatalysts, and the methods for improving photocatalytic performance. This review also aims to provide basic and comprehensive information on the industrialization of photocatalysis technology.
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综述了纳米技术和金属纳米颗粒存在下的非均相光催化的发展
总的来说,纳米技术可以理解为纳米结构和纳米材料的设计、制造和应用技术,以及对纳米材料和纳米结构的物理性质和现象的基本理解。近年来,纺织、皮革、油漆、食品、塑料和化妆品等行业的发展不断扩大,这些行业与大量有机污染物的排放有关,这些污染物通过影响不同的参数对微生物、水生系统和人体健康有害。因此,制造这些纳米材料(耦合或掺杂)形成异质结提供了一种有效的方法,可以更好地收集太阳能,促进电荷的分离和转移,从而提高光催化活性和稳定性。希望本文能对不同类型异质结构光催化剂的制备和应用有一个清晰的认识。本文从光催化反应机理和光催化剂的制备入手,综述了目前光催化剂的分类、制备方法、影响光催化反应的因素、光催化剂的表征以及提高光催化性能的方法。为光催化技术的产业化提供基础和全面的信息。
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