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Rational design of 1D/2D heterostructured photocatalyst for energy and environmental applications

机译:1D / 2D异质结构光催化剂的理性设计能量和环境应用

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摘要

Photocatalysis is a proficient and sustainable technology to relieve or resolve the energy crisis and environmental-pollution issues. The emerging 1D/2D heterojunction materials with appropriate band alignment and multidimensional features have been attracting ever-growing research attention in photocatalysis field. In this review article, we are focusing on the recent progress in studying the general synthetic strategy of 1D/2D heterojunction materials, and highlighting their significant applications in advanced photocatalysts, including photocatalytic hydrogen production, photoelectrochemical water splitting, removal of pollutants and CO2 reduction. Moreover, this review also discusses some key challenges and future prospects of 1D/2D hetero-structures. It is anticipated that the present review will provide enriched information on the rational exploration of 1D/2D heterostructures for achieving more efficient photocatalysis activity.
机译:光催化是一种熟练和可持续的技术,可以缓解或解决能源危机和环境污染问题。 具有适当的带对准和多维特征的新兴的1D / 2D异质结材料在光催化区域中一直吸引了越来越越来越越来越多的研究。 在本综述文章中,我们专注于研究1D / 2D异质结材料的一般合成策略的最新进展,并突出其在先进的光催化剂中的重要应用,包括光催化氢气产生,光电化学水分解,去除污染物和二氧化碳减少。 此外,该评论还讨论了1D / 2D异结构的一些关键挑战和未来前景。 预计本综述将提供有关1D / 2D异质结构的合理探索的丰富信息,以实现更有效的光催化活性。

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