実触媒・実反応環境下の表面界面分子科学開拓への挑戦~界面水による光触媒的C-H活性化とメタン転換の促進効果~

Toshiki SUGIMOTO
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Abstract

Environmentally sustainable and selective conversion of methane to valuable chemicals under ambient conditions is pivotal for the development of next-generation photocatalytic technology. However, the lack of microscopic knowledge on its reaction mechanism prevents the development of engineering strategies for methane photocatalysis. Here we introduce key molecular-level insights into the photocatalytic green utilization of methane. Activation of the robust C–H bond of methane is hardly induced by the direct interaction with photogenerated holes trapped at the surface of photocatalyst ; instead, the C–H activation is significantly promoted by the photoactivated interfacial water species. The interfacial water hydrates and properly stabilizes hydrocarbon radical intermediates, thereby suppressing their overstabilization. Owing to these water-assisted effects, the photocatalytic conversion rates of methane under wet conditions are dramatically improved by typically more than 30 times at ambient temperatures (~300 K) and pressures (~1 atm) in comparison to those under dry conditions.
实际催化、实际反应环境下的表面界面分子科学开拓的挑战~界面水的光催化C-H活性化和甲烷转换的促进效果~
在环境条件下,环境可持续和选择性地将甲烷转化为有价值的化学物质是下一代光催化技术发展的关键。然而,由于缺乏对其反应机理的微观认识,阻碍了甲烷光催化工程策略的发展。在这里,我们介绍了关键的分子水平的见解光催化绿色利用甲烷。甲烷的C-H键很难被捕获在光催化剂表面的光生空穴直接激活;相反,C-H活化被光激活的界面水显著促进。界面水与烃基中间体水化并适当稳定,从而抑制其过稳定。由于这些水的辅助作用,在潮湿条件下,甲烷的光催化转化率在环境温度(~300 K)和压力(~1 atm)下比在干燥条件下显著提高了30倍以上。
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