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在硝酮醇反应体系中聚合、刺激诱导解聚和沉淀引发的大环化反应。

Polymerization, Stimuli-induced Depolymerization, and Precipitation-driven Macrocyclization in a Nitroaldol Reaction System.

机构信息

Department of Chemistry, University of Massachusetts Lowell, One University Ave., Lowell, MA 01854, USA.

Department of Chemistry and Biomedical Sciences, Linnaeus University, SE-39182, Kalmar, Sweden.

出版信息

Chemistry. 2022 Nov 16;28(64):e202201863. doi: 10.1002/chem.202201863. Epub 2022 Sep 19.

Abstract

Dynamic covalent polymers of different topology have been synthesized from an aromatic dialdehyde and α,ω-dinitroalkanes via the nitroaldol reaction. All dinitroalkanes yielded dynamers with the dialdehyde, where the length of the dinitroalkane chain played a vital role in determining the structure of the final products. For longer dinitroalkanes, linear dynamers were produced, where the degree of polymerization reached a plateau at higher feed concentrations. In the reactions involving 1,4-dinitrobutane and 1,5-dinitropentane, specific macrocycles were formed through depolymerization of the linear chains, further driven by precipitation. At lower temperature, the same systemic self-sorting effect was also observed for the 1,6-dinitrohexane-based dynamers. Moreover, the dynamers showed a clear adaptive behavior, displaying depolymerization and rearrangement of the dynamer chains in response to alternative building blocks as external stimuli.

摘要

不同拓扑结构的动态共价聚合物已通过芳香族二醛和α,ω-二硝基烷烃之间的硝酮醇缩合反应合成。所有的二硝基烷烃都与二醛生成了动态聚合物,其中二硝基烷烃链的长度在决定最终产物的结构方面起着至关重要的作用。对于较长的二硝基烷烃,生成了线性动态聚合物,在较高的进料浓度下,聚合度达到了一个平台。在涉及 1,4-二硝基丁烷和 1,5-二硝基戊烷的反应中,通过线性链的解聚形成了特定的大环,进一步受到沉淀的推动。在较低的温度下,基于 1,6-二硝基己烷的动态聚合物也观察到了相同的系统自分类效应。此外,这些动态聚合物表现出明显的自适应行为,在作为外部刺激的替代构建块的作用下,动态聚合物链发生解聚和重排。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2814/9826525/895d3b464d53/CHEM-28-0-g005.jpg

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