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Studying the oxidation of water to molecular oxygen in photosynthetic and artificial systems by time-resolved membrane-inlet mass spectrometry

机译:通过时间分辨膜入口质谱研究光合作用和人工系统中水氧化为分子氧

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摘要

Monitoring isotopic compositions of gaseous products (e.g., H2, O2, and CO2) by time-resolved isotope-ratio membrane-inlet mass spectrometry (TR-IR-MIMS) is widely used for kinetic and functional analyses in photosynthesis research. In particular, in combination with isotopic labeling, TR-MIMS became an essential and powerful research tool for the study of the mechanism of photosynthetic water-oxidation to molecular oxygen catalyzed by the water-oxidizing complex of photosystem II. Moreover, recently, the TR-MIMS and 18O-labeling approach was successfully applied for testing newly developed catalysts for artificial water-splitting and provided important insight about the mechanism and pathways of O2 formation. In this mini-review we summarize these results and provide a brief introduction into key aspects of the TR-MIMS technique and its perspectives for future studies of the enigmatic water-splitting chemistry.
机译:通过时间分辨同位素比膜-入口质谱(TR-IR-MIMS)监测气态产物(例如H2,O2和CO2)的同位素组成已广泛用于光合作用的动力学和功能分析。特别是,结合同位素标记,TR-MIMS成为研究光合作用II的水氧化配合物催化光合水氧化为分子氧的机理的重要而强大的研究工具。而且,最近,TR-MIMS和 18 O标记方法已成功地用于测试新开发的用于人工水分解的催化剂,并为O2形成的机理和途径提供了重要的见识。在此小型审查中,我们总结了这些结果,并简要介绍了TR-MIMS技术的关键方面及其对未来的神秘水分解化学研究的前景。

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