Suppr超能文献

光驱动 CO 还原为太阳能燃料的研究进展:基于 ZnO 的光催化剂的主流设计途径。

Boosting light-driven CO reduction into solar fuels: Mainstream avenues for engineering ZnO-based photocatalysts.

机构信息

School of Advanced Chemical Sciences, Faculty of Basic Sciences, Shoolini University, Solan (HP), 173229, India.

School of Advanced Chemical Sciences, Faculty of Basic Sciences, Shoolini University, Solan (HP), 173229, India.

出版信息

Environ Res. 2021 Jun;197:111134. doi: 10.1016/j.envres.2021.111134. Epub 2021 Apr 6.

Abstract

The realization of artificial photosynthesis in the photocatalytic CO transformation into valuable chemicals or solar fuels, such as CO, CH, HCOOH, and CHOH, by solar-light harvesting is a promising solution to both global-warming and energy-supply issues. Recently, zinc oxide (ZnO) has emerged as an excellent oxidative photocatalyst among non-titanium metal oxides due to its availability, outstanding semiconducting and optical properties, non-toxicity, affordability, and ease of synthesis. However, ZnO wide bandgap and inability to absorb in the visible region has demanded particular modification for its practical use as a sustainable photocatalyst. This review provides a panorama of the latest advancement on ZnO photocatalysis for CO reduction with an overview of fundamental aspects. Various modification strategies such as transition metal and non-metal doping, loading of plasmonic metals, and surface vacancy engineering for tunning the properties and improving the performance of ZnO are elaborated. Composites or hetero-structuralization-based Z-scheme formation is also presented along with a detailed photocatalytic reduction mechanism. Moreover, a new novel Step-scheme (S-scheme) heterostructure modification with a charge transfer pathway mechanism is also highlighted. Finally, the key challenges and new directions in this field are proposed to provide a new vision for further improvement for ZnO-based photocatalytic CO conversion.

摘要

在光催化 CO 转化为有价值的化学品或太阳能燃料(如 CO、CH、HCOOH 和 CHOH)的过程中,实现人工光合作用,通过太阳能收集来解决全球变暖和能源供应问题,是一种很有前途的方法。最近,氧化锌(ZnO)作为一种非钛金属氧化物,由于其可用性、出色的半导体和光学特性、无毒、价格合理以及易于合成,已成为一种优秀的氧化光催化剂。然而,ZnO 的宽带隙和不能吸收可见光的特性,要求对其进行特殊的改性,才能将其实际用作可持续的光催化剂。本综述提供了 ZnO 光催化 CO 还原的最新进展全景图,概述了基本方面。详细阐述了各种改性策略,如过渡金属和非金属掺杂、等离子体金属负载以及表面空位工程,以调整 ZnO 的性能并提高其性能。还介绍了基于复合材料或异质结构化的 Z 方案形成,以及详细的光催化还原机制。此外,还强调了一种新的新型阶梯方案(S-scheme)异质结构改性及其电荷转移途径机制。最后,提出了该领域的关键挑战和新方向,为进一步提高基于 ZnO 的光催化 CO 转化提供了新的视角。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验