The photo-isomerization of the cyclononatetraenyl ligand and related rare earth complexes

IF 7.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Lucie Pedussaut, Nolwenn Mahieu, Camille Chartier, Thayalan Rajeshkumar, Maxime Tricoire, Iskander Douair, Nicolas Casaretto, Laurent Maron, Grégory Danoun, Grégory Nocton
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Abstract

The cyclononatetraenyl (Cnt) ligand is a large monoanionic ligand. It is easily synthesized by ring expansion after cyclopropanation of the cyclooctatetraenyl (Cot) ligand. The Cnt ligand can be reported as the cis-cis-cis-cis (cis) isomer, where the aromatic ring is flat, and all carbon atoms form a homogenous ring, and as the cis-cis-cis-trans (trans) isomer, where one carbon places itself inside the ring. The isomerization from the trans to the cis form has been reported numerous times in previous articles, but no quantitative analysis has been proposed due to contradictory data. This article proposes a detailed analysis involving light to rationalize this intrigue concerning isomerization. A careful synthesis at low temperatures and with light protection yields the ligand in its trans form (Cnt-trans). The controlled photo-isomerization of the Cnt-trans ligand is reported herein. A series of divalent or trivalent rare earth complexes, (Cnt)2Sm, and (Cot)(Cnt)Ln (Ln= Y, La, Ce, Pr, Nd, Sm, Gd, Tb, Er, Ho), which synthesis, solid-state X-ray diffraction and solution 1H NMR and UV-Visible measurements, have been revised according to the synthesis using the Cnt-trans ligand. The photo-isomerization of the (Cnt-trans)2Sm evolves to the intermediate (Cnt-cis)(Cnt-trans)Sm and the (Cnt-cis)2Sm complex as the thermodynamical product. The photoisomerization of the trivalent (Cot)(Cnt)Ln complexes highlights the formation of a photostationary state (PSS) after several minutes of irradiation, in which both Cnt-trans and Cnt-cis ligands are present. The ratio of these two forms varies according to metal and irradiation wavelength: low-energy wavelengths favor the cis isomer, and high-energy wavelengths favor the trans isomer. DFT and TD-DFT were performed to provide a tentative orbital explanation.
环四烯配体及相关稀土配合物的光异构化作用
环辛四烯配体(Cnt)是一种大型单阴离子配体。环辛四烯配体(Cot)经环丙烷化后,通过扩环很容易合成。Cnt 配体可分为顺式-顺式-顺式-顺式(顺式)异构体和顺式-顺式-顺式-反式(反式)异构体,前者的芳香环是扁平的,所有碳原子形成一个同质环;后者的一个碳原子位于环内。从反式到顺式的异构化在以前的文章中已有多次报道,但由于数据相互矛盾,一直没有提出定量分析方法。本文提出了一种涉及光的详细分析方法,以合理解释有关异构化的这一谜团。在低温和光保护条件下进行仔细合成,可以得到反式配体(Cnt-trans)。本文报告了 Cnt-trans 配体的受控光异构化。根据使用 Cnt-trans 配体的合成方法,对一系列二价或三价稀土配合物 (Cnt)2Sm 和 (Cot)(Cnt)Ln (Ln= Y、La、Ce、Pr、Nd、Sm、Gd、Tb、Er、Ho)的合成、固态 X 射线衍射以及溶液 1H NMR 和紫外可见光测量进行了修订。(Cnt-反式)2Sm的光异构化演变为中间产物(Cnt-顺式)(Cnt-反式)Sm和热力学产物(Cnt-顺式)2Sm复合物。三价(Cot)(Cnt)Ln 复合物的光异构化凸显了在数分钟的照射后形成的光静止态(PSS),其中同时存在 Cnt-反式和 Cnt-顺式配体。这两种形式的比例随金属和辐照波长的不同而变化:低能量波长有利于顺式异构体,而高能量波长有利于反式异构体。通过 DFT 和 TD-DFT 分析,我们得到了一个初步的轨道解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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