Towards Understanding the Reactivity and Optical Properties of Organosilicon Sulfide Clusters

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Abstract

We report the extension of the class of organotetrel sulfide clusters with further examples of the still rare silicon-based species, synthesized from RSiCl3 with R=phenyl (Ph, I), naphthyl (Np, II), and styryl (Sty, III) with Na2S. Besides known [(PhSi)4S6] (IV), new compounds [(NpSi)4S6] (1) and [(StySi)4S6] (2) were obtained, the first two of which underwent reactions with [AuCl(PPh3)] to form ternary complexes. DFT studies of cluster dimers helped us understand the differences between the habit of {Si4S6}- and {Sn4S6}-based compounds. Crystalline 1 showed a pronounced nonlinear optical response, while for intrinsically amorphous 2, the chemical damage threshold seems to inhibit a corresponding observation. Calculations within the independent particle approximation served to rationalize and compare electronic and optical excitations of [(RSi)4S6] clusters (R=Ph, Np). The calculations reproduced the measured data and allowed for the interpretation of the main spectroscopic features.

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Hanau, K., Schwan, S., Schäfer, M. R., Müller, M. J., Dues, C., Rinn, N., … Dehnen, S. (2021). Towards Understanding the Reactivity and Optical Properties of Organosilicon Sulfide Clusters. Angewandte Chemie - International Edition, 60(3), 1176–1186. https://doi.org/10.1002/anie.202011370

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