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通过单分子力谱理解梯型环丁烷机械发色团的机械化学

Understanding the Mechanochemistry of Ladder-Type Cyclobutane Mechanophores by Single Molecule Force Spectroscopy.

作者信息

Horst Maggie, Yang Jinghui, Meisner Jan, Kouznetsova Tatiana B, Martínez Todd J, Craig Stephen L, Xia Yan

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305, United States.

Department of Chemistry, Duke University, Durham, North Carolina 27708, United States.

出版信息

J Am Chem Soc. 2021 Aug 11;143(31):12328-12334. doi: 10.1021/jacs.1c05857. Epub 2021 Jul 26.

Abstract

We have recently reported a series of ladder-type cyclobutane mechanophores, polymers of which can transform from nonconjugated structures to conjugated structures and change many properties at once. These multicyclic mechanophores, namely, -ladderane/ene, -benzoladderene, and -bicyclohexene--naphthalene, have different ring structures fused to the first cyclobutane, significantly different free energy changes for ring-opening, and different stereochemistry. To better understand their mechanochemistry, we used single molecule force spectroscopy (SMFS) to characterize their force-extension behavior and measure the threshold forces. The threshold forces correlate with the activation energy of the first bond, but not with the strain of the fused rings distal to the polymer main chain, suggesting that the activation of these ladder-type mechanophores occurs with similar early transition states, which is supported by force-modified potential energy surface calculations. We further determined the stereochemistry of the mechanically generated dienes and observed significant and variable contour length elongation for these mechanophores both experimentally and computationally. The fundamental understanding of ladder-type mechanophores will facilitate future design of multicyclic mechanophores with amplified force-response and their applications as mechanically responsive materials.

摘要

我们最近报道了一系列梯型环丁烷机械力发色团,其聚合物能够从非共轭结构转变为共轭结构,并同时改变多种性质。这些多环机械力发色团,即 -梯烷/烯、-苯并梯烯和 -双环己烯-萘,与第一个环丁烷稠合的环结构不同,开环的自由能变化显著不同,立体化学也不同。为了更好地理解它们的机械化学性质,我们使用单分子力谱(SMFS)来表征它们的力-伸长行为并测量阈值力。阈值力与第一个键的活化能相关,但与聚合物主链远端稠合环的应变无关,这表明这些梯型机械力发色团的活化以相似的早期过渡态发生,力修正势能面计算支持了这一点。我们进一步确定了机械生成的二烯的立体化学,并通过实验和计算观察到这些机械力发色团的轮廓长度有显著且可变的伸长。对梯型机械力发色团的基本理解将有助于未来设计具有增强力响应的多环机械力发色团及其作为机械响应材料的应用。

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