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Opportunities and challenges in single-molecule and single-particle fluorescence microscopy for mechanistic studies of chemical reactions

机译:单分子和单颗粒荧光显微镜在化学反应机理研究中的机遇与挑战

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In recent years, single-molecule and single-particle fluorescence microscopy has emerged as a tool to investigate chemical systems. After an initial lag of over a decade with respect to biophysical studies, this powerful imaging technique is now revealing mechanisms of 'classical' organic reactions, spatial distribution of chemical reactivity on surfaces and the phase of active catalysts. The recent advance into commercial imaging systems obviates the need for home-built laser systems and thus opens this technique to traditionally trained synthetic chemists. We discuss the requisite photophysical and chemical properties of fluorescent reporters and highlight the main challenges in applying single-molecule techniques to chemical questions. The goal of this Perspective is to provide a snapshot of an emerging multidisciplinary field and to encourage broader use of this young experimental approach that aids the observation of chemical reactions as depicted in many textbooks: molecule by molecule.
机译:近年来,单分子和单颗粒荧光显微镜已成为研究化学系统的工具。在生物物理研究方面最初滞后了十多年之后,这项功能强大的成像技术现在揭示了“经典”有机反应的机理,表面化学反应的空间分布以及活性催化剂的相。商业成像系统的最新进展消除了对家用激光系统的需求,从而使该技术向受过传统训练的合成化学家开放。我们讨论了荧光报告分子的必要光物理和化学特性,并强调了将单分子技术应用于化学问题的主要挑战。此观点的目的是提供一个新兴的多学科领域的快照,并鼓励更广泛地使用这种年轻的实验方法,该方法有助于观察许多教科书中描述的化学反应:逐个分子。

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