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四苯基卟啉锌的J-聚集体:通往优异电化学发光发射体的新途径。

J-Aggregates of zinc tetraphenylporphyrin: a new pathway to excellent electrochemiluminescence emitters.

作者信息

Yang Zhaofan, Pu Guiqiang, Ning Xingming, Wu Yali, Zhang Zhen, Shan Duoliang, Lu Xiaoquan

机构信息

Key Laboratory of Bioelectrochemistry and Environmental Analysis of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, P. R. China.

Tianjin Key Laboratory of Molecular Optoelectronic, Department of Chemistry, Tianjin University, Tianjin 300072, P. R. China.

出版信息

Phys Chem Chem Phys. 2019 May 28;21(20):10614-10620. doi: 10.1039/c9cp01278h. Epub 2019 May 13.

Abstract

Low-potential electrochemiluminescence (ECL) luminophores with excellent ECL behavior have attracted considerable interest in biological analysis. Herein, we explored the ECL behavior of ZnTPP with different aggregates for the first time. In this work, we used the mixed solvent method to prepare the H- and J-aggregates of zinc tetraphenylporphyrin (ZnTPP). This resulted in a completely disparate morphology, such as nanoparticles and rod-aggregates, which were observed by recording atomic force microscopy (AFM) images. Characteristic changes in the optical properties and electrochemical properties of ZnTPP appeared when it underwent H- and J-aggregation. Significantly, the measured ECL behavior varied for the same ZnTPP molecules when they were in the form of H- and J-aggregates; and the ECL intensity of the J-aggregates was more than ten times that of the H-aggregates due to a narrower band gap and the formation advantages in J-aggregates. The narrower band gap of J-aggregates not only facilitates the electron-hole pair recombination, but also facilitates the electron injection into the J-aggregates. The formation advantage of the J-aggregates is likely to contribute to the strong ECL intensity of the J-aggregates. Maybe the big number of ZnTPP molecules in a J-aggregate unit increases the opportunity of generating excited states and light from excited state radiation. The ECL property could be regulated with the different aggregation of ZnTPP, which led to a decline of ECL cathode potential in the J-aggregates (191 mV) compared with the H-aggregates. This work provides an effective and novel strategy for developing ECL emitters with low potential and high ECL emission intensity via adjusting aggregation motifs.

摘要

具有优异电化学发光(ECL)行为的低电位ECL发光体在生物分析中引起了广泛关注。在此,我们首次探索了不同聚集体形式的四苯基卟啉锌(ZnTPP)的ECL行为。在本工作中,我们采用混合溶剂法制备了四苯基卟啉锌(ZnTPP)的H-聚集体和J-聚集体。这导致了完全不同的形态,如纳米颗粒和棒状聚集体,通过记录原子力显微镜(AFM)图像观察到了这些形态。当ZnTPP发生H-聚集和J-聚集时,其光学性质和电化学性质出现了特征性变化。值得注意的是,相同的ZnTPP分子以H-聚集体和J-聚集体形式存在时,测得的ECL行为有所不同;由于J-聚集体的带隙较窄以及形成优势,J-聚集体的ECL强度是H-聚集体的十多倍。J-聚集体较窄的带隙不仅有利于电子-空穴对的复合,还有利于电子注入到J-聚集体中。J-聚集体的形成优势可能有助于其较强的ECL强度。也许J-聚集体单元中大量的ZnTPP分子增加了产生激发态以及从激发态辐射发光的机会。通过ZnTPP的不同聚集可以调节其ECL性质,这导致J-聚集体的ECL阴极电位(191 mV)相对于H-聚集体有所下降。这项工作为通过调节聚集基序开发具有低电位和高ECL发射强度的ECL发光体提供了一种有效且新颖的策略。

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