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通过同步反应和输运过程的动态辐照来提高光驱动水分解的效率。

Boosting Efficiency in Light-Driven Water Splitting by Dynamic Irradiation through Synchronizing Reaction and Transport Processes.

机构信息

Institute of Chemical Engineering, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.

Institute of Inorganic Chemistry I, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.

出版信息

ChemSusChem. 2022 Jun 22;15(12):e202200708. doi: 10.1002/cssc.202200708. Epub 2022 May 16.

Abstract

This work elaborates the effect of dynamic irradiation on light-driven molecular water oxidation to counteract deactivation. It highlights the importance of overall reaction engineering to overcome limiting factors in artificial photosynthesis reactions. Systematic investigation of a homogeneous three-component ruthenium-based water oxidation system revealed significant potential to enhance the overall catalytic efficiency by synchronizing the timescales of photoreaction and mass transport in a capillary flow reactor. The overall activity could be improved by a factor of more than 10 with respect to the turnover number and a factor of 31 referring to the external energy efficiency by controlling the local availability of photons. Detailed insights into the mechanism of light driven water oxidation could be obtained using complementary methods of investigation like Raman, IR, and UV/Vis/emission spectroscopy, unraveling the importance of avoiding high concentrations of excited photosensitizers.

摘要

这项工作阐述了动态辐照对光驱动分子水氧化反应的抑制作用。它强调了整体反应工程对于克服人工光合作用反应中限制因素的重要性。通过对均相三组分钌基水氧化体系的系统研究,发现在毛细管流动反应器中同步光反应和质量传递的时间尺度可以显著提高整体催化效率。通过控制光子的局部可用性,相对于周转数,整体活性可以提高 10 倍以上,相对于外能效率可以提高 31 倍。使用拉曼、红外、紫外/可见/发射光谱等互补的研究方法可以获得光驱动水氧化反应的详细机理,揭示了避免高浓度激发态光敏剂的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3dc/9322455/125f1d4ba421/CSSC-15-0-g003.jpg

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