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Single molecule methods for the study of catalysis: from enzymes to heterogeneous catalysts

机译:用于催化研究的单分子方法:从酶到多相催化剂

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摘要

Structural and temporal inhomogeneities can have a marked influence on the performance of inorganic and biocatalytic systems alike. While these subtle variations are hardly ever accessible through bulk or ensemble averaged activity screening, insights into the molecular mechanisms underlying these diverse phenomena are absolutely critical for the development of optimized or novel catalytic systems and processes. Fortunately, state-of-the-art fluorescence microscopy methods have allowed experimental access to this intriguing world at the nanoscale. In this tutorial review we will first provide a broad overview of key concepts and developments in the application of single molecule fluorescence spectroscopy to (bio)catalysis research. In the second part topics specific to both bio and heterogeneous catalysis will be reviewed in more detail.
机译:结构和时间上的不均匀性会对无机和生物催化系统的性能产生显着影响。尽管通过细微或整体平均活性筛选几乎无法获得这些细微的变化,但是洞悉这些不同现象背后的分子机制对于开发优化的或新颖的催化体系和工艺绝对至关重要。幸运的是,最先进的荧光显微镜方法已使实验可以进入纳米级这个有趣的世界。在本教程审查中,我们将首先提供单分子荧光光谱技术在(生物)催化研究中应用的关键概念和发展的广泛概述。在第二部分中,将更详细地讨论特定于生物催化和非均相催化的主题。

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