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自组装π共轭发色团:一维和二维纳米结构的制备及其在光催化中的应用。

Self-assembled π-conjugated chromophores: preparation of one- and two-dimensional nanostructures and their use in photocatalysis.

作者信息

Cappelletti David, Barbieri Marianna, Aliprandi Alessandro, Maggini Michele, Đorđević Luka

机构信息

Department of Chemical Sciences, University of Padova, via Marzolo 1, 35131, Padova, Italy.

出版信息

Nanoscale. 2024 May 16;16(19):9153-9168. doi: 10.1039/d4nr00383g.

Abstract

Photocatalytic systems have attracted research interest as a clean approach to generate energy from abundant sunlight. In this context, developing efficient and robust photocatalytic structures is crucial. Recently, self-assembled organic chromophores have entered the stage as alternatives to both molecular systems and (in)organic semiconductors. Nanostructures made of self-assembled π-conjugated dyes offer, on the one hand, molecular customizability to tune their optoelectronic properties and activities and on the other hand, provide benefits from heterogeneous catalysis that include ease of separation, recyclability and improved photophysical properties. In this contribution, we present recent achievements in constructing supramolecular photocatalytic systems made of chromophores for applications in water splitting, HO evolution, CO reduction, or environmental remediation. We discuss strategies that can be used to prepare ordered photocatalytic systems with an emphasis on the effect of packing between the dyes and the resulting photocatalytic activity. We further showcase supramolecular strategies that allow interfacing the organic nanostructures with co-catalysts, molecules, polymers, and (in)organic materials. The principles discussed here are the foundation for the utilization of these self-assembled materials in photocatalysis.

摘要

光催化系统作为一种利用丰富阳光产生能量的清洁方法,已引起了研究兴趣。在此背景下,开发高效且稳定的光催化结构至关重要。最近,自组装有机发色团作为分子系统和(无机)半导体的替代物登上了舞台。由自组装π共轭染料制成的纳米结构,一方面提供了分子可定制性以调节其光电性质和活性,另一方面受益于多相催化,包括易于分离、可回收性以及改善的光物理性质。在本论文中,我们展示了在构建由发色团组成的超分子光催化系统方面的最新成果,这些系统应用于水分解、析氢、二氧化碳还原或环境修复。我们讨论了可用于制备有序光催化系统的策略,重点关注染料之间的堆积效应及其产生的光催化活性。我们还展示了超分子策略,这些策略可使有机纳米结构与助催化剂、分子、聚合物和(无机)材料相连接。这里讨论的原理是这些自组装材料用于光催化的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c53e/11097008/6207c3407b14/d4nr00383g-f1.jpg

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