Supramolecular Chiral Aggregation of Porphyrin Induced by Photo-Generated Triphenylamines Radical Cations.

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Small Methods Pub Date : 2024-07-10 DOI:10.1002/smtd.202400538
Bojia Zhang, Cong Du, Xin Wen, Li Zhang, Ran Duan, Minghua Liu
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Abstract

Here, it is shown that photoirradiation triggered chiral J-aggregates formation of an achiral anionic porphyrin, TPPS (tetrakis(4-sulfonatophenyl) porphyrin), in the presence of chiral triphenylamine (TPA) derivatives. A series of chiral triarylamines linked with aromatic rings is designed through urea or amide bonds. UV-irradiation of self-assembled urea-linked triphenylamine derivatives causes the formation of persistent radical cations in the chlorinated solvents, which subsequently induces the aggregation of TPPS. Transferring chirality of TPA derivatives to achiral TPPS J-aggregates leads to the chiral assemblies with remarkable chiroptical signals. The experimental results demonstrate that, TPA derivatives linked by the urea bond can effectively promote the aggregation of TPPS rather than those with the amide bond although the photo-generated radical cations are both produced. It is suggested that the urea-linked TPA derivatives are more favorable to stable radical cations and thus cause the formation of TPPS chiral J-aggregation. This work may open up an avenue for designing photo-modulated chiral supramolecular assemblies.

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光生三苯胺自由基阳离子诱导的卟啉超分子手性聚合。
这里的研究表明,在手性三苯胺(TPA)衍生物存在的情况下,光辐照会引发非手性阴离子卟啉 TPPS(四(4-磺酸苯基)卟啉)形成手性 J-聚集体。通过脲键或酰胺键,设计出一系列与芳香环相连的手性三芳基胺。紫外线照射自组装的脲键三苯胺衍生物会在氯化溶剂中形成持久的自由基阳离子,进而诱导 TPPS 聚合。将 TPA 衍生物的手性转移到非手性 TPPS J-聚集体上,可得到具有显著手性信号的手性组装体。实验结果表明,通过脲键连接的 TPA 衍生物比通过酰胺键连接的 TPA 衍生物更能有效地促进 TPPS 的聚集,尽管光生成的自由基阳离子都会产生。这表明脲键连接的 TPA 衍生物更有利于形成稳定的自由基阳离子,从而导致 TPPS 手性 J-聚集的形成。这项工作可能为设计光调节手性超分子组装物开辟了一条途径。
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来源期刊
Small Methods
Small Methods Materials Science-General Materials Science
CiteScore
17.40
自引率
1.60%
发文量
347
期刊介绍: Small Methods is a multidisciplinary journal that publishes groundbreaking research on methods relevant to nano- and microscale research. It welcomes contributions from the fields of materials science, biomedical science, chemistry, and physics, showcasing the latest advancements in experimental techniques. With a notable 2022 Impact Factor of 12.4 (Journal Citation Reports, Clarivate Analytics, 2023), Small Methods is recognized for its significant impact on the scientific community. The online ISSN for Small Methods is 2366-9608.
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