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首页> 外文期刊>Journal of Hazardous Materials >Wide spectrum photocatalytic activity in lanthanide-doped upconversion nanophosphors coated with porous TiO_2 and Ag-Cu bimetallic nanoparticles
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Wide spectrum photocatalytic activity in lanthanide-doped upconversion nanophosphors coated with porous TiO_2 and Ag-Cu bimetallic nanoparticles

机译:多孔TiO_2和Ag-Cu双金属纳米粒子包覆镧系元素掺杂的上转换纳米磷光体的宽光谱光催化活性

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摘要

Approaches towards maximum utilization of solar light spectrum for photocatalysis have currently attracted great interest. The combination of profoundly different properties, such as, upconversion, semiconducting and plasmonic properties can produce a favorable path in efficient utilization of the different regions of solar light reaching to earth. In this regard, design and fabrication of microstructures consisting of upconverting lanthanide doped nanophosphors coated with porous semiconducting material, TiO2 and decorated with plasmonic Ag-Cu bimetallic nanoparticles is presented in this work. These microstructures display great stability and exceptional photocatalytic activity by absorbing wide spectrum from ultraviolet to near infrared. The photocatalytic activity could be attributed to the synergistic effects between the different components and the efficient energy transfer between them. The development of such sort of hybrid microstructures could pave way for the development of new materials for the efficient utilization of the wide spectrum of sunlight.
机译:目前,对于最大限度地利用太阳光谱进行光催化的方法引起了极大的兴趣。上转换,半导体和等离激元特性等极为不同的特性的组合可以为有效利用到达地球的太阳光的不同区域提供一条有利的途径。在这方面,这项工作提出了由上变频掺杂镧系元素的纳米磷光体组成的微结构的设计和制造,该纳米磷光体涂覆有多孔半导体材料TiO2并用等离子Ag-Cu双金属纳米粒子装饰。这些微结构通过吸收从紫外线到近红外的宽光谱显示出极大的稳定性和出色的光催化活性。光催化活性可以归因于不同组分之间的协同效应以及它们之间的有效能量转移。这种杂化微结构的发展可能为新材料的开发铺平道路,以有效利用宽广的太阳光。

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