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通过构象缠结中的氢键作用调控单聚合物生长

Tuning Single-Polymer Growth via Hydrogen Bonding in Conformational Entanglements.

作者信息

Baral Susil, Liu Chunming, Mao Xianwen, Coates Geoffrey W, Chen Peng

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, United States.

Departments of Polymer Science and Chemistry, The University of Akron, Akron, Ohio 44325-3909, United States.

出版信息

ACS Cent Sci. 2022 Aug 24;8(8):1116-1124. doi: 10.1021/acscentsci.2c00415. Epub 2022 Jun 15.

Abstract

Synthetic polymers have widespread applications in daily life and advanced materials applications. Making polymers efficiently and controllably is highly desired, for which modulating intramolecular and intermolecular interactions have been an effective approach. Recent real-time single-polymer growth studies uncovered nonequilibrium conformational entanglements that form stochastically under living polymerization conditions and which appear to plausibly play key roles in controlling the polymerization kinetics and dispersion. Here, using magnetic tweezers measurements, we study the real-time polymerization dynamics of single polynorbornene-based polymers in which we systematically tune the hydrogen-bonding interactions by titrating the OH content in the monomers and the formed polymers during ring opening metathesis polymerization. Using norbornenes with and without a hydroxyl group and a nonreactive monomer analogue, we show that intrachain and intermolecular hydrogen bonding compete, and both alter the microscopic properties of the nonequilibrium entanglements, leading to surprising multiphasic dependences of polymerization dynamics on the polymer's OH content. We further formulate a simple model to rationalize quantitatively the observed multiphasic behaviors by considering the different scaling relations of intrachain and intermolecular hydrogen bonding on the OH content. These results provide insights into the interconnected roles of intra-/intermolecular interactions, polymer chain conformations, and free monomers in solution in affecting polymerization kinetics and dispersion, and point to new opportunities in manipulating polymerization reactions.

摘要

合成聚合物在日常生活和先进材料应用中有着广泛的应用。高效且可控地制备聚合物是人们所高度期望的,为此调节分子内和分子间相互作用一直是一种有效的方法。最近的实时单聚合物生长研究发现了非平衡构象缠结,这些缠结在活性聚合条件下随机形成,并且似乎在控制聚合动力学和分散方面起着关键作用。在这里,我们使用磁镊测量法研究了基于聚降冰片烯的单聚合物的实时聚合动力学,在开环易位聚合过程中,我们通过滴定单体和形成的聚合物中的OH含量来系统地调节氢键相互作用。使用带有和不带有羟基的降冰片烯以及一种非反应性单体类似物,我们表明链内和分子间氢键相互竞争,并且两者都会改变非平衡缠结的微观性质,导致聚合动力学对聚合物OH含量呈现出令人惊讶的多相依赖性。我们进一步构建了一个简单模型,通过考虑链内和分子间氢键对OH含量的不同标度关系,定量地解释所观察到的多相行为。这些结果为分子内/分子间相互作用、聚合物链构象以及溶液中的游离单体在影响聚合动力学和分散方面的相互关联作用提供了见解,并指出了操纵聚合反应的新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/535d/9413429/9622d91d15a7/oc2c00415_0001.jpg

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