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在微滴中解耦反应速率的加速。

Disentangling reaction rate acceleration in microdroplets.

机构信息

Laboratoire de Physique et Chimie Théoriques, UMR CNRS 7019, University of Lorraine, CNRS, BP 70239, 54506, Vandoeuvre-lès-Nancy, France.

出版信息

Phys Chem Chem Phys. 2022 Dec 14;24(48):29700-29704. doi: 10.1039/d2cp04998h.

Abstract

We have investigated the origin of the unexpected, recently discovered phenomenon of reaction rate acceleration in water microdroplets relative to bulk water. Acceleration factors for reactions of atmospheric and synthetic relevance can be dissected into elementary contributions thanks to the original and versatile kinetic model. The microdroplet is partitioned in two sub-volumes, the surface and the interior, operating as interconnected chemical reactors in the fast diffusion regime. Reaction rate acceleration and its dependence on reaction molecularity and microdroplet dimensions are explained by applying transition-state-theory at thermodynamic equilibrium. We also show that our model, in combination with experimental measurements of rate acceleration factors, can be used to obtain chemical kinetics data at the air-water interface, which has been a long-standing challenge for chemists.

摘要

我们研究了在水微滴中相对于体相水出现的反应速率意外加速这一最近发现现象的起源。由于原始且多功能的动力学模型,可以将与大气和合成相关的反应的加速因子分解为基本贡献。通过将微滴分成两个子体积,即表面和内部,在快速扩散条件下,它们作为相互连接的化学反应器进行操作。通过在热力学平衡时应用过渡态理论,解释了反应速率的加速及其对反应分子数和微滴尺寸的依赖性。我们还表明,我们的模型结合实验测量的加速因子,可用于获得气-液界面的化学动力学数据,这一直是化学家面临的挑战。

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