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亚酞菁胶囊:用于富勒烯光氧化还原转化的分子反应器。

Subphthalocyanine capsules: molecular reactors for photoredox transformations of fullerenes.

作者信息

Moreno-Simoni Marta, Torres Tomás, de la Torre Gema

机构信息

Organic Chemistry Department, Universidad Autónoma de Madrid, Campus de Cantoblanco 28049-Madrid Spain.

Institute for Advanced Research in Chemical Sciences (IAdChem), Universidad Autónoma de Madrid, Campus de Cantoblanco 28049-Madrid Spain

出版信息

Chem Sci. 2022 Jul 19;13(32):9249-9255. doi: 10.1039/d2sc01931k. eCollection 2022 Aug 17.

Abstract

The internal cavity formed by a dimeric subphthalocyanine (SubPc) capsule (SubPcPd, 2), ensembled by coordination of pyridyl substituents in the monomeric SubPc 1 to Pd centers, has proved an optimal space for the complexation of C fullerene. Taking advantage of the intense absorption of green light of the SubPc component at around 550 nm, we have tested different green-light induced photoredox addition reactions over the double bonds of guest C. Both addition of amine radicals, generated by reductive quenching of the excited state of 2 by aromatic trimethylsilylamines, and addition of trifluoroethyl radicals, obtained from oxidative quenching of the photosensitizer, have successfully taken place with good yields in the 2:C host:guest complex. On the other hand, both the photoredox reactions result in much lower yields when the monomeric pyridyl-SubPc is used as a photocatalyst, demonstrating that encapsulation results in a strong acceleration of the reaction. Importantly, this is the first example of the use of a confined microenvironment to trigger photoredox chemical transformations of fullerenes.

摘要

由二聚体亚酞菁(SubPc)胶囊(SubPcPd,2)形成的内部空腔,通过单体SubPc 1中的吡啶基取代基与钯中心配位组装而成,已被证明是用于富勒烯络合的理想空间。利用SubPc组分在550 nm左右对绿光的强烈吸收,我们测试了在客体C的双键上不同的绿光诱导光氧化还原加成反应。由芳族三甲基硅烷基胺对2的激发态进行还原猝灭产生的胺基自由基的加成,以及由光敏剂的氧化猝灭获得的三氟乙基自由基的加成,在2:C主客体络合物中均成功发生,产率良好。另一方面,当使用单体吡啶基-SubPc作为光催化剂时,这两种光氧化还原反应的产率都要低得多,这表明封装会导致反应的强烈加速。重要的是,这是利用受限微环境触发富勒烯光氧化还原化学转化的首个实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10b7/9384690/34e43303410a/d2sc01931k-f1.jpg

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