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通过硫代卟啉与锡(IV)卟啉的轴向配位构建新型环状四联体。

Construction of Novel Cyclic Tetrads by Axial Coordination of Thiaporphyrins to Tin(IV) Porphyrin.

作者信息

Alka A, Pareek Yogita, Shetti Vijayendra S, Rajeswara Rao M, Theophall Gregory G, Lee Way-Zen, Lakshmi K V, Ravikanth M

机构信息

Department of Chemistry, Indian Institute of Technology Bombay , Powai, Mumbai 400 076, India.

Department of Chemistry and Chemical Biology and The Baruch '60 Center for Biochemical Solar Energy Research, Rensselaer Polytechnic Institute , Troy, New York 12180, United States.

出版信息

Inorg Chem. 2017 Nov 20;56(22):13913-13929. doi: 10.1021/acs.inorgchem.7b01966. Epub 2017 Oct 31.

Abstract

We report the formation of new cyclic porphyrin tetrads 1 and 2, which were obtained from the reaction between dihydroxytin(IV) porphyrin and cis-dihydroxy-21-thiaporphyrin/21,23-dithiaporphyrin. The unique oxophilicity of tin(IV) porphyrin was the driving force for the formation of these tetrads. Moreover, these novel tetrads represent the first examples of cyclic porphyrins containing tin(IV) that are constructed exclusively on the basis of the "Sn-O" interaction without any other complementary, noncompetitive mode of interactions. The molecular structures of the cyclic tetrads have been investigated by matrix-assisted laser desorption ionization time-of-flight mass spectrometry, NMR spectroscopy, quantum-mechanical calculations, and, in one case, single-crystal X-ray crystallography. The X-ray structure revealed that the two cis-dihydroxy-NS porphyrins were coordinated at the axial positions of two tin(IV) porphyrins, leading to the symmetric cyclic tetrad structure. The optical properties of tetrads were studied, and these compounds were stable under redox conditions. Preliminary photophysical studies carried out on the tetrads indicated efficient energy transfer from tin(IV) porphyrin to the thiaporphyrin unit, which highlights their potential applications in energy and electron transfer in the future.

摘要

我们报道了新型环状卟啉四联体1和2的形成,它们是由二羟基锡(IV)卟啉与顺式二羟基-21-硫代卟啉/21,23-二硫代卟啉反应得到的。锡(IV)卟啉独特的亲氧性是这些四联体形成的驱动力。此外,这些新型四联体代表了仅基于“Sn-O”相互作用构建的含锡(IV)环状卟啉的首个实例,不存在任何其他互补的、非竞争性的相互作用模式。通过基质辅助激光解吸电离飞行时间质谱、核磁共振光谱、量子力学计算以及在一个实例中通过单晶X射线晶体学对环状四联体的分子结构进行了研究。X射线结构表明,两个顺式二羟基-NS卟啉在两个锡(IV)卟啉的轴向位置配位,形成对称的环状四联体结构。对四联体的光学性质进行了研究,这些化合物在氧化还原条件下稳定。对四联体进行的初步光物理研究表明,能量从锡(IV)卟啉有效地转移到硫代卟啉单元,这突出了它们在未来能量和电子转移方面的潜在应用。

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