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首页> 外文期刊>Journal of photochemistry and photobiology, C. Photochemistry reviews >2D inorganic nanosheet-based hybrid photocatalysts: Design, applications, and perspectives
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2D inorganic nanosheet-based hybrid photocatalysts: Design, applications, and perspectives

机译:2D无机纳米液相同的混合光催化剂:设计,应用和观点

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摘要

Highly anisotropic 2D nanosheets of inorganic solids with nanometer-level thickness attract a great deal of research activity because of their unique merits in exploring novel high performance photocatalysts applicable for environmental purification and production of renewable clean energy. The 2D inorganic nanosheets possess many valuable properties such as tailorable band structures and chemical compositions, large surface areas, well-defined defect-free surface structure, and tunable electrical conductivities. Due to these unique advantages of 2D inorganic nanosheets, these materials can be used as promising building blocks for hybrid-type photocatalysts with optimized band structures, expanded surface areas, improved charge separation behaviors, and enhanced reaction kinetics. Of prime importance is that unusually strong electronic coupling can occur between very thin 2D inorganic nanosheets and hybridized nanospecies, leading to the synergistic optimization of electronic and optical properties, and thus the remarkable enhancement of photocatalytic activity. Depending on the type of component nanosheets, diverse examples of inorganic nanosheet-based photocatalysts are presented along with the in-depth discussion about critical roles of inorganic nanosheet in these hybrid photocatalysts. Future perspectives in the researches for 2D inorganic nanosheet-based photocatalysts are discussed to offer useful directions for designing and synthesizing novel high performance photocatalysts applicable for renewable energy production and environmental purification. (C) 2018 Elsevier B.V. All rights reserved.
机译:具有纳米级厚度的无机固体的高度各向异性2D纳米片吸引了大量的研究活动,因为它们在探索新型高性能光催化剂时,适用于环境净化和可再生清洁能源的生产。 2D无机纳米片具有许多有价值的性质,如可批定系列的带结构和化学成分,大表面积,无常定的无缺陷表面结构以及可调谐电导率。由于2D无机纳米片的这些独特的优点,这些材料可用作具有优化带结构,膨胀表面积,改进的电荷分离行为和增强的反应动力学的杂化型光催化剂的承诺构建块。主要重要性的是,在非常薄的2D无机纳米片和杂交的纳米型之间可能发生异常强大的电子耦合,从而产生电子和光学性质的协同优化,从而显着提高光催化活性。取决于组分纳米片的类型,随着关于无机纳米片在这些混合光催化剂中的临界作用的深入讨论,提出了无机纳米片的光催化剂的不同实例。讨论了2D无机纳米片的光催化剂的研究中的未来观点,为设计和合成了一种适用于可再生能源生产和环境净化的新型高性能光催化剂的有用方向。 (c)2018 Elsevier B.v.保留所有权利。

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