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共轭聚合物中分子结构对形态和光物理性质的影响:从单分子到本体。

Effects of molecular architecture on morphology and photophysics in conjugated polymers: from single molecules to bulk.

作者信息

Hu Zhongjian, Shao Beiyue, Geberth Geoffrey T, Vanden Bout David A

机构信息

Department of Chemistry , University of Texas at Austin , USA . Email:

出版信息

Chem Sci. 2018 Jan 4;9(5):1101-1111. doi: 10.1039/c7sc03465b. eCollection 2018 Feb 7.

Abstract

Conjugated polymers (CPs) possess a wide range of desirable properties, including accessible energetic bandgaps, synthetic versatility, and mechanical flexibility, which make them attractive for flexible and wearable optoelectronic devices. An accurate and comprehensive understanding about the morphology-photophysics relations in CPs lays the groundwork for their development in these applications. However, due to the complex roles of chemical structure, side-chains, backbone, and intramolecular interactions, CPs can exhibit heterogeneity in both their morphology and optoelectronic properties even at the single chain level. This molecular level heterogeneity together with complicated intermolecular interactions found in bulk CP materials severely obscures the deterministic information about the morphology and photophysics at different hierarchy levels. To counter this complexity and offer a clearer picture for the properties of CP materials, we highlight the approach of probing material systems with specific structural features single molecule/aggregate spectroscopy (SMS). This review article covers recent advances achieved through such an approach regarding the important morphological and photophysical properties of CPs. After a brief review of the typical characteristics of CPs, we present detailed discussions of structurally well-defined model systems of CPs, from manipulated backbones and side-chains, up to nano-aggregates, studied with SMS to offer deterministic relations between morphology and photophysics from single chains building up to bulk states.

摘要

共轭聚合物(CPs)具有广泛的理想特性,包括可及的能带隙、合成的多功能性和机械柔韧性,这使得它们对于柔性和可穿戴光电器件具有吸引力。对CPs中形态 - 光物理关系的准确而全面的理解为它们在这些应用中的发展奠定了基础。然而,由于化学结构、侧链、主链和分子内相互作用的复杂作用,即使在单链水平上,CPs在其形态和光电性质方面也可能表现出异质性。这种分子水平的异质性以及在块状CP材料中发现的复杂分子间相互作用严重模糊了不同层次水平上关于形态和光物理的确定性信息。为了应对这种复杂性并更清晰地呈现CP材料的性质,我们重点介绍了用具有特定结构特征的方法——单分子/聚集体光谱(SMS)来探测材料体系。这篇综述文章涵盖了通过这种方法在CPs的重要形态和光物理性质方面取得的最新进展。在简要回顾了CPs的典型特征之后,我们详细讨论了结构明确的CPs模型体系,从可控的主链和侧链,到纳米聚集体,用SMS进行研究以提供从单链到块状状态的形态与光物理之间的确定性关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e781/5887865/991ebffe15f5/c7sc03465b-s1.jpg

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