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苝二酰亚胺衍生物中溶剂介电限定的硝基-亚硝酸根光重排

Solvent dielectric delimited nitro-nitrito photorearrangement in a perylenediimide derivative.

作者信息

Mazumder Aniruddha, Sebastian Ebin, Hariharan Mahesh

机构信息

School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram Maruthamala P.O., Vithura Thiruvananthapuram Kerala India 695551

出版信息

Chem Sci. 2022 Jul 4;13(30):8860-8870. doi: 10.1039/d2sc02979k. eCollection 2022 Aug 4.

Abstract

The discovery of vibrant excited-state dynamics and distinctive photochemistry has established nitrated polycyclic aromatic hydrocarbons as an exhilarating class of organic compounds. Herein, we report the atypical photorearrangement of nitro-perylenediimide (NO-PDI) to nitrito-perylenediimide (ONO-PDI), triggered by visible-light excitation and giving rise to linkage isomers in the polar aprotic solvent acetonitrile. ONO-PDI has been isolated and unambiguously characterized using standard spectroscopic, spectrometric, and elemental composition techniques. Although nitritoaromatic compounds are conventionally considered to be crucial intermediates in the photodissociation of nitroaromatics, experimental evidence for this has not been observed heretofore. Ultrafast transient absorption spectroscopy combined with computational investigations revealed the prominence of a conformationally relaxed singlet excited-state (S ) of NO-PDI in the photoisomerization pathway. Theoretical transition state (TS) analysis indicated the presence of a six-membered cyclic TS, which is pivotal in connecting the S state to the photoproduct state. This article addresses prevailing knowledge gaps in the field of organic linkage isomers and provides a comprehensive understanding of the unprecedented photoisomerization mechanism operating in the case of NO-PDI.

摘要

充满活力的激发态动力学和独特光化学性质的发现,使硝化多环芳烃成为一类令人振奋的有机化合物。在此,我们报道了硝基苝二亚胺(NO-PDI)在可见光激发下发生的非典型光重排反应,生成亚硝酸根苝二亚胺(ONO-PDI),且在极性非质子溶剂乙腈中产生了键合异构体。ONO-PDI已被分离出来,并使用标准光谱、光谱测定和元素组成技术进行了明确表征。尽管亚硝酸根芳香族化合物通常被认为是硝基芳香族化合物光解离的关键中间体,但迄今为止尚未观察到相关实验证据。超快瞬态吸收光谱结合计算研究表明,在光异构化途径中,NO-PDI的构象弛豫单重激发态(S)起主要作用。理论过渡态(TS)分析表明存在一个六元环状TS,它在将S态与光产物态连接起来方面起着关键作用。本文填补了有机键合异构体领域普遍存在的知识空白,并全面理解了NO-PDI中前所未有的光异构化机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a30/9350666/fedb6d1b906f/d2sc02979k-f1.jpg

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