Polar materials for photocatalytic applications: A critical review

IF 24.5 Q1 CHEMISTRY, PHYSICAL
Xiaoqing Liu, Yu Zhang, Cong Wang, Lei Shen
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Abstract

The critical challenges of the energy crisis and environmental degradation promote innovative approaches for energy conversion. Semiconductor-based photocatalytic technology, which transforms solar energy into chemical energy, emerges as a promising solution. However, the practical application of this technology faces several challenges, such as the rapid recombination of photogenerated electrons and holes, significantly limiting photocatalytic efficiency. In this review, we provide a detailed discussion, an insightful perspective, and a critical evaluation of recent advances, challenges, and opportunities in the field of photocatalysis using polar materials. We present a comprehensive examination of the photocatalytic mechanisms, activity, and diverse applications of photocatalysts based on polar materials. We also briefly discuss the engineering design of polar photocatalysis in experiments and its scalability in the industry. This review outlines future trends and potential breakthroughs in the photocatalytic field using polar materials, projecting their transformative impact on environmental chemistry and energy engineering.

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用于光催化应用的极性材料:重要综述
能源危机和环境恶化带来的严峻挑战促进了能源转换的创新方法。基于半导体的光催化技术可将太阳能转化为化学能,是一种前景广阔的解决方案。然而,该技术的实际应用面临着一些挑战,例如光生电子和空穴的快速重组,大大限制了光催化效率。在这篇综述中,我们对利用极性材料进行光催化领域的最新进展、挑战和机遇进行了详细的讨论、深入的透视和批判性的评估。我们全面探讨了基于极性材料的光催化剂的光催化机理、活性和各种应用。我们还简要讨论了极性光催化在实验中的工程设计及其在工业中的可扩展性。本综述概述了使用极性材料的光催化领域的未来趋势和潜在突破,预测了它们对环境化学和能源工程的变革性影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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