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首页> 外文期刊>Journal of Cleaner Production >g-C_3N_4/carbon dot-based nanocomposites serve as efficacious photocatalysts for environmental purification and energy generation: A review
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g-C_3N_4/carbon dot-based nanocomposites serve as efficacious photocatalysts for environmental purification and energy generation: A review

机译:基于G-C_3N_4 /碳点纳米复合材料用作环境净化和能量产生的有效光催化剂:综述

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Most recently, graphitic carbon nitride (g-C3N4) has emerged as one of the desirable stable organic polymers, owing to its diverse applications as a semiconducting photocatalyst in photoreduction of CO2, water splitting, and elimination of various contaminants. In these regards, a series of modifications have been made in this semiconductor using carbon dots (CDs) to increase its efficiency in these photocatalytic processes, because of its fast recombination of the photoinduced charges, low specific surface area, and poor harvesting of visible light. This review highlights the applied protocols to ameliorate the photoactivity of g-C3N4/CDs-based nanocomposites through combining with various materials. This work shows that in addition to the charge effects, textural and morphological changes in g-C3N4 are also observed by coupling with CDs to change the bulk characteristics and extend its applications. This review can provide beneficial information about profundity realizing the versatile role of CDs in boosting photocatalytic ability of g-C3N4-based systems. The ultimate goal of this review can be both a tutorial to fundamental photocatalysis and a critical comment on the most recent progress in utilization of g-C3N4/CDs-based photocatalysts in different areas. (c) 2020 Elsevier Ltd. All rights reserved.
机译:最近,由于其在CO 2,水分裂和消除各种污染物的光催化剂中,石墨碳氮化物(G-C3N4)作为一种理想的稳定有机聚合物之一。在这些方面,使用碳点(CDS)在该半导体中已经在该半导体中进行了一系列修改,以提高其在这些光催化过程中的效率,因为其快速重组光诱导的电荷,低比表面积,并且可见光收获差。本综述突出了应用方案来改善基于G-C3N4 / CDS的纳米复合材料的光度分解,通过与各种材料组合。该工作表明,除了与CD耦合以改变散装特性并扩展其应用,还观察到G-C3N4中的造影和形态变化。该审查可以提供关于CDS在促进G-C3N4的系统的光催化能力方面实现CD的多功能作用的有益信息。本次审查的最终目标可以是对基础光催化的教程,以及关于在不同区域中使用G-C3N4 / CDS的光催化剂的最新进展的关键评论。 (c)2020 elestvier有限公司保留所有权利。

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