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Quantum Control Electronics System Integration

Spectroscopic and thermal properties of stannadithiane compounds bearing endocyclic ether and lactone groups.

PubMed
Authors: Delgado Espinosa ZY, Lick ID, Saeed A, Della Védova CO, Erben MF

Year

2019

Paper ID

1685

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

134

Citations

7

Abstract

Four related stannadithiane compounds containing different endocyclic functional groups -including ether (1), diether (2), lactone (3), and spirolactone (4)- were prepared. The conformational landscape has been fully determined for the 8-membered representative (compound 1) resulting in a distorted crown form with the butyl chains adopting an extended conformation. The infrared and Raman spectra of stannadithiane species have been measured and interpreted, aided by quantum chemical calculations and potential energy surface analysis. Special attention has been devoted to the analysis of the vibrational features of the heterocyclic moieties. The characteristic ν(SnS) and ν(SnS) stretching modes of the SnSendo-cyclic group were clearly observed in the Raman spectra at around 340 and 315 cm, respectively. The exo-cyclic ν(SnC) stretching modes were found near 590 and 565 cm for the antisymmetric and symmetric motions, respectively. Thermal behavior for compounds 2-4 has been determined by thermogravimetric methods.

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  • This paper contributes to the Quantum Control Electronics & System Integration research area in the Quantum Articles archive.
  • It adds a 2019 reference point for readers tracking recent quantum research.
  • Four related stannadithiane compounds containing different endocyclic functional groups -including ether (1), diether (2), lactone (3), and spirolactone (4)- were prepared.

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