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外部电场控制:驱动无金属叠氮化物-炔烃点击反应的反应活性

External electric field control: driving the reactivity of metal-free azide-alkyne click reactions.

作者信息

Bhattacharyya Kalishankar, Karmakar Sharmistha, Datta Ayan

机构信息

Department of Spectroscopy, Indian Association for the Cultivation of Science, 2A and 2B Raja S. C. Mullick Road, Jadavpur - 700032, Kolkata, West Bengal, India.

出版信息

Phys Chem Chem Phys. 2017 Aug 23;19(33):22482-22486. doi: 10.1039/c7cp04202g.

Abstract

Recent reports have suggested that an external electric field (EEF) can assist and even control product selectivity. In this work, we have shown that the barrier for the Huisgen reaction between alkyl (aryl) azide and cyclooctyne(biflurocyclooctyne) is reduced by ∼3-4 kcal mol when an oriented EEF is applied along the reaction axis. As a consequence of their inherently polar transition-states (TSs), a parallel orientation of the EEF results in enhancement of the charge transfer (CT) between the fragments and concomitant increase in the dipole moment along the reaction axes. This leads to an increase in the reaction rate for moderate EEFs in the range of 0.3-0.5 V Å. Since highly polar and directional environments are omnipresent in biological environments, metal-free click reactions can be further accelerated for non-invasive imaging of live-cells. Conceptually, electric field control appears to be a novel tool (catalyst) to drive, and possibly even tune, the reactivity of organic molecules.

摘要

最近的报道表明,外部电场(EEF)可以辅助甚至控制产物选择性。在这项工作中,我们已经表明,当沿反应轴施加定向EEF时,烷基(芳基)叠氮化物与环辛炔(双氟环辛炔)之间的惠斯根反应的势垒降低了约3-4千卡/摩尔。由于它们固有的极性过渡态(TSs),EEF的平行取向导致片段之间电荷转移(CT)增强,并且沿反应轴的偶极矩随之增加。这导致在0.3-0.5 V Å范围内的中等EEF时反应速率增加。由于高极性和定向环境在生物环境中无处不在,无金属点击反应可以进一步加速用于活细胞的非侵入性成像。从概念上讲,电场控制似乎是一种驱动甚至可能调节有机分子反应性的新型工具(催化剂)。

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