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香豆素光化学反应中冰表面的作用。

Role of an Ice Surface in the Photoreaction of Coumarins.

机构信息

Key Laboratory for Green Printing, Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China.

College of Physics and Electronic Engineering, Heze University, Heze 274015, P. R. China.

出版信息

Langmuir. 2022 Sep 20;38(37):11346-11353. doi: 10.1021/acs.langmuir.2c01637. Epub 2022 Sep 6.

Abstract

Ice affects many chemical reactions in nature, which greatly influences the atmosphere, climate, and life. However, the exact mechanism of ice in these chemical reactions remains elusive. For example, it is still an open question as to whether ice can act as a catalyst to greatly enhance the reactivity and selectivity, which is essential for the production of some natural compounds in our planet. Here, we discover that ice can lead to high efficiency and stereoselectivity of the [2 + 2] photodimerization of coumarin and its derivatives. The conversion of the [2 + 2] photodimerization of coumarins enhanced by ice is dozens of times higher than that in the unfrozen saturated solution, and the reaction displays a high syn-head-head stereoselectivity (>95%) in comparison with those in the absence of the ice. Note that almost no reaction occurs in the crystal powder and melt of the coumarins, indicating that the role of ice in the photodimerization reaction is not simply due to the usual mechanisms found in the freezing concentration. We further reveal that the reaction rate is found to be proportional to the total area of the ice surface and follows Michaelis-Menten-like kinetics, indicating that the ice surface catalyzes the reaction. Molecular dynamics simulations demonstrate that ice surfaces can induce reactants to form a two-dimensional liquid-crystal-ordered layer with a suitable intermolecular distance and unique side-by-side packing, facilitating stereoselective photodimerization for syn-head-head dimers. These findings give evidence that ice-surface-induced molecular assembly may play an important role in atmospheric heterogeneous photoreaction processes.

摘要

冰影响着自然界中的许多化学反应,极大地影响着大气、气候和生命。然而,冰在这些化学反应中的确切机制仍然难以捉摸。例如,冰是否可以作为催化剂极大地提高反应活性和选择性,这对于我们星球上某些天然化合物的生产至关重要,这仍然是一个悬而未决的问题。在这里,我们发现冰可以导致香豆素及其衍生物的[2+2]光二聚化的高效率和立体选择性。与未冻结的饱和溶液相比,冰增强的香豆素[2+2]光二聚化的转化率要高出数十倍,并且与没有冰的情况下相比,反应显示出很高的顺头对头立体选择性(>95%)。请注意,香豆素的晶体粉末和熔体中几乎没有反应发生,这表明冰在光二聚化反应中的作用不仅仅是由于在冷冻浓缩中发现的常见机制。我们进一步揭示,反应速率与冰表面的总表面积成正比,并遵循米氏动力学,表明冰表面催化了反应。分子动力学模拟表明,冰表面可以诱导反应物形成具有合适的分子间距离和独特的并排堆积的二维液晶有序层,有利于顺头对头二聚体的立体选择性光二聚化。这些发现表明,冰表面诱导的分子组装可能在大气非均相光反应过程中发挥重要作用。

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