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萘二亚胺嵌入的供体-受体碳纳米环:光物理、光电导和电荷传输性质

Naphthalene Diimide-Embedded Donor-Acceptor Carbon Nanohoops: Photophysical, Photoconductive, and Charge Transport Properties.

作者信息

Guo Shengzhu, Liu Lin, Liu Linshan, Fan Yanqing, Yang Huiji, He Jing, Wang Ying, Bo Zhishan, Xu Xinjun, Chen Xuebo, Jiang Hua

机构信息

College of Chemistry, Beijing Normal University, Beijing 100875, China.

Department of Chemistry, Xinjiang Normal University, Urumqi 830054, China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 22;17(3):5202-5212. doi: 10.1021/acsami.4c19349. Epub 2025 Jan 9.

DOI:10.1021/acsami.4c19349
PMID:39782881
Abstract

Designing the architecture of donor-acceptor (D-A) pairs is an effective strategy to tailor the electronic structure of conjugated macrocycles for optoelectronic devices. Herein, we present the synthesis of three D-A nanohoops ( = 7, 8, 9) containing a naphthalene diimide (NDI) unit as an acceptor and []cycloparaphenylenes ([]CPPs) moieties as donors. The D-A characteristics of were substantiated through absorption and fluorescence spectroscopic studies, electrochemical investigations, and computational analysis. The device investigations demonstrated that the D-A nanohoops can serve as the photoconductive layer and demonstrate a significant generation of photocurrent with a fast response upon exposure to light. The magnitude of photocurrent shows high dependence on the size of their rings, with an increasing tendency as the ring size decreases. The generation of photocurrent in free acceptor-based CPP has rarely been reported in the previous literature. Significantly, the C complexes of exhibited a marked enhancement in photocurrent under identical conditions; in particular, the photocurrent of is ca. 3.5 times greater than that of alone. Furthermore, the potential applications of in electron- and hole-transport devices have also been explored, revealing the clear evidence of their bipolar behavior as an active charge transport layer.

摘要

设计供体-受体(D-A)对的结构是一种调整共轭大环化合物电子结构以用于光电器件的有效策略。在此,我们展示了三种D-A纳米环( = 7、8、9)的合成,其中包含一个萘二酰亚胺(NDI)单元作为受体和[]环对亚苯基([]CPPs)部分作为供体。通过吸收光谱和荧光光谱研究、电化学研究以及计算分析证实了 的D-A特性。器件研究表明,D-A纳米环 可以用作光电导层,并在光照下表现出显著的光电流产生以及快速响应。光电流的大小对其环的尺寸高度依赖,随着环尺寸减小呈现增加趋势。基于游离受体的CPP中光电流的产生在以前的文献中鲜有报道。值得注意的是, 的C配合物在相同条件下光电流显著增强;特别是, 的光电流约为单独的 的3.5倍。此外,还探索了 在电子和空穴传输器件中的潜在应用,揭示了它们作为活性电荷传输层的双极行为的明确证据。

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