Uncovering Backbone Conformation for Rigid DPP-Based Donor–Acceptor Conjugated Polymer Using Deuterium Labeling and Neutron Scattering

IF 5.1 1区 化学 Q1 POLYMER SCIENCE Macromolecules Pub Date : 2024-10-21 DOI:10.1021/acs.macromol.4c01496
Zhiqiang Cao, Zhaofan Li, Madison Mooney, Changwoo Do, Kunlun Hong, Simon Rondeau-Gagné, Wenjie Xia, Xiaodan Gu
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Abstract

The conjugated polymer’s backbone conformation dictates the delocalization of electrons, ultimately affecting its optoelectronic properties. Most conjugated polymers can be viewed as semirigid rods with their backbone embedded among long alkyl side chains. Thus, it is challenging to experimentally quantify the conformation of a conjugated backbone. Here, we performed contrast variation neutron scattering on rigid conjugated donor–acceptor (D–A) diketopyrrolopyrrole (DPP) polymers with selectively deuterated side chains to measure the conjugated backbone conformation. We first synthesized DPP-based polymers with deuterated side chains, confirmed by NMR and FTIR. Using contrast variation neutron scattering, we found that the DPP-based conjugated polymers are much more rigid than poly(3-alkylthiophenes), with persistence length (Lp) at 16–18 nm versus 2–3 nm. More importantly, in contrast to the relatively flexible poly(3-alkylthiophenes) whose backbone is more flexible than the whole polymer, we found that the backbone of DPP-based polymers has the same Lp value compared to the whole polymer chain. This indicates that side chain interference on backbone conformation is not present for the semirigid polymer, which is further confirmed by coarse-grained molecular dynamics (CG-MD) simulations. Our work provides a novel protocol to probe polymer’s backbone conformation and paradigm-shifting understanding of the backbone conformation of semirigid conjugated polymers.

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利用氘标记和中子散射揭示基于刚性 DPP 的供体-受体共轭聚合物的骨架构象
共轭聚合物的骨架构象决定了电子的分散,并最终影响其光电特性。大多数共轭聚合物可被视为半刚性棒,其骨架嵌入长烷基侧链中。因此,通过实验量化共轭骨架的构象具有挑战性。在这里,我们对具有选择性氚化侧链的刚性共轭供体-受体(D-A)二酮吡咯并吡咯(DPP)聚合物进行了对比变化中子散射,以测量共轭骨架构象。我们首先合成了具有氚化侧链的 DPP 基聚合物,并通过核磁共振和傅立叶变换红外光谱进行了确认。通过对比变化中子散射,我们发现基于 DPP 的共轭聚合物比聚(3-烷基噻吩)更加坚硬,其持久长度(Lp)为 16-18 nm,而聚(3-烷基噻吩)为 2-3 nm。更重要的是,与骨架比整个聚合物更柔韧的柔性聚(3-烷基噻吩)相比,我们发现 DPP 基聚合物的骨架与整个聚合物链具有相同的 Lp 值。粗粒度分子动力学(CG-MD)模拟进一步证实了这一点。我们的研究为探究聚合物的骨架构象提供了一种新的方案,并改变了人们对半刚性共轭聚合物骨架构象的认识。
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来源期刊
Macromolecules
Macromolecules 工程技术-高分子科学
CiteScore
9.30
自引率
16.40%
发文量
942
审稿时长
2 months
期刊介绍: Macromolecules publishes original, fundamental, and impactful research on all aspects of polymer science. Topics of interest include synthesis (e.g., controlled polymerizations, polymerization catalysis, post polymerization modification, new monomer structures and polymer architectures, and polymerization mechanisms/kinetics analysis); phase behavior, thermodynamics, dynamic, and ordering/disordering phenomena (e.g., self-assembly, gelation, crystallization, solution/melt/solid-state characteristics); structure and properties (e.g., mechanical and rheological properties, surface/interfacial characteristics, electronic and transport properties); new state of the art characterization (e.g., spectroscopy, scattering, microscopy, rheology), simulation (e.g., Monte Carlo, molecular dynamics, multi-scale/coarse-grained modeling), and theoretical methods. Renewable/sustainable polymers, polymer networks, responsive polymers, electro-, magneto- and opto-active macromolecules, inorganic polymers, charge-transporting polymers (ion-containing, semiconducting, and conducting), nanostructured polymers, and polymer composites are also of interest. Typical papers published in Macromolecules showcase important and innovative concepts, experimental methods/observations, and theoretical/computational approaches that demonstrate a fundamental advance in the understanding of polymers.
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