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Dye synthesis in the Pechmann reaction: catalytic behaviour of samarium oxide nanoparticles studied using single molecule fluorescence microscopy

机译:Pechmann反应中的染料合成:使用单分子荧光显微镜研究sa氧化物纳米颗粒的催化行为

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Photochemically prepared samarium oxide nanoparticles (Sm2O3NP) efficiently catalyze the formation of coumarin 153 via the Pechmann trans-esterification and condensation process. The formation of the fluorescent coumarin allowed the catalytic process to be monitored in real time at the single molecule level using Total Internal Reflection Fluorescence Microscopy (TIRFM). Benchtop experiments conducted in parallel demonstrated that the observed catalysis occurred in solution rather than by pure heterogeneous catalysis and is due to a mobile population of small Sm2O3NP released from a polydisperse original sample containing larger particles. TIRFM provided unique insights by demonstrating that catalysis by these smaller colloidal particles is in fact a surface process, while the larger particles are merely suppliers of the small catalytic nanostructures. We refer to this behaviour as a semi-heterogeneous catalytic system. This work showcases the opportunity that single molecule fluorescence techniques can offer in terms of understanding and ultimately improving benchtop and scaled-up synthesis. This specific example highlights the general applicability of this approach to the study of widely-utilized chemical reactions and lays the groundwork for researchers to adopt similar strategies in other systems.
机译:光化学制备的氧化mar纳米颗粒(Sm2O3NP)通过Pechmann酯交换和缩合工艺有效催化香豆素153的形成。荧光香豆素的形成允许使用全内反射荧光显微镜(TIRFM)在单分子水平上实时监测催化过程。平行进行的台式实验表明,观察到的催化作用是在溶液中发生的,而不是通过纯均相催化发生的,这归因于从含有较大颗粒的多分散原始样品中释放出的少量Sm2O3NP的流动性。 TIRFM通过证明这些较小的胶体颗粒的催化作用实际上是表面过程而提供了独特的见解,而较大的颗粒仅仅是较小的催化纳米结构的供应商。我们将此行为称为半均相催化体系。这项工作展示了单分子荧光技术在理解和最终改善台式和放大合成方面可以提供的机会。这个特定的例子突出了这种方法在广泛使用的化学反应研究中的普遍适用性,并为研究人员在其他系统中采用类似策略奠定了基础。

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