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定向外部电场控制机械力化学传感器中的破裂力。

Oriented External Electric Field Controls the Rupture Forces in Mechanophores.

作者信息

Das Ankita, Datta Ayan

机构信息

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

出版信息

J Phys Chem B. 2024 Jul 18;128(28):6951-6956. doi: 10.1021/acs.jpcb.4c02337. Epub 2024 Jul 7.

Abstract

Controlling the reactivity of molecules under a mechanical pull has generated significant interest in organic and polymer chemistry. Inducing mechano-lability for otherwise rigid molecules has been possible through structural alterations like adjusting the pulling group, ring strain, and electron density of the scissile bond. In this article, we report that an oriented external electric field (OEEF) can significantly assist in mechanochemical transformations. Using a structurally diverse set of ring-opening reactions, -, we show that the critical force required for bond-cleavage, , gets appreciably reduced when the OEEF acts with the bond-polarity direction. The primary condition for utilizing OEEF along with mechanochemistry is the requirement of structural asymmetry along the target bond. Effectively therefore, any polar ring-opening reaction might be manipulated by OEEF. The versatility of the strategy of using OEEF and mechanical force together can also be appreciated by the enhanced rupture force when the direction of the OEEF is flipped. We show that mechanical pulling and electric field can act as toward mechano-lability.

摘要

控制分子在机械拉力下的反应活性已引起有机化学和高分子化学领域的广泛关注。通过诸如调整拉电子基团、环张力和可裂解键的电子密度等结构改变,使原本刚性的分子具有机械敏感性成为可能。在本文中,我们报道了定向外部电场(OEEF)能够显著促进机械化学转化。通过一系列结构多样的开环反应,我们表明,当OEEF与键的极性方向一致时,键断裂所需的临界力会显著降低。将OEEF与机械化学结合使用的主要条件是目标键沿结构不对称。因此,实际上任何极性开环反应都可能受到OEEF的调控。当OEEF的方向翻转时,断裂力增强,这也体现了将OEEF与机械力结合使用策略的通用性。我们表明,机械拉力和电场可作为促进机械敏感性的因素。

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