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通过 Bergman 环化反应引发主链型氮芥型聚氨酯的交联反应。

Triggered Crosslinking of Main-Chain Enediyne Polyurethanes via Bergman Cyclization.

机构信息

Macromolecular Chemistry, Institute of Chemistry, Faculty of Natural Science II, Martin Luther University Halle-Wittenberg, Von-Danckelmann-Platz 4, 06120, Halle (Saale), Germany.

出版信息

Macromol Rapid Commun. 2023 Dec;44(24):e2300440. doi: 10.1002/marc.202300440. Epub 2023 Nov 4.

Abstract

Crosslinking chemistries occupy an important position in polymer modification with a particular importance when triggered in response to external stimuli. Enediyne (EDY) moieties are used as functional entities in this work, known to undergo a pericyclic Bergman cyclization (BC) to induce a triggered crosslinking of polyurethanes (PU) via the intermediately formed diradicals. Diamino-EDYs, where the distance between the enyne-moieties is known to be critical to induce a BC, are placed repetitively as main-chain structural elements in isophorone-based PUs to induce reinforcement upon heating, compression, or stretching. A 7-day compression under room temperature results in a ≈69% activation of the BC, together with the observation of an increase in tensile strength by 62% after 25 stretching cycles. The occurrence of BC is further proven by the decreased exothermic values in differential scanning calorimetry, together with characteristic peaks of the formed benzene moieties via IR spectroscopy. Purely heat-induced crosslinking contributes to 191% of the maximum tensile strength in comparison to the virgin PU. The BC herein forms an excellent crosslinking strategy, triggered by heat or force in PU materials.

摘要

交联化学在聚合物改性中占有重要地位,特别是在响应外部刺激时触发的情况下更为重要。在这项工作中,烯二炔(EDY)部分被用作功能实体,已知它们会经历周环 Bergman 环化(BC),通过中间形成的双自由基诱导聚氨酯(PU)的触发交联。二氨基-EDY 中,烯炔部分之间的距离被认为对于诱导 BC 至关重要,它们被重复放置在异佛尔酮基 PU 的主链结构元件中,以在加热、压缩或拉伸时引起增强。在室温下进行 7 天的压缩导致 BC 约 69%的活化,并且在 25 次拉伸循环后拉伸强度增加 62%。通过差示扫描量热法观察到放热值降低以及通过红外光谱观察到形成的苯环部分的特征峰,进一步证明了 BC 的发生。与原始 PU 相比,纯热诱导交联对最大拉伸强度的贡献为 191%。此处的 BC 形成了一种出色的交联策略,可在 PU 材料中通过热或力触发。

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