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Double-Proton-Transfer Processes in Dithiooxamide:  UV-Induced Dithione → Dithiol Reaction and Ground-State Dithiol → Dithione Tunneling

机译:二硫代草胺中的双质子转移过程:紫外诱导的二硫酮→二硫醇反应和基态二硫醇→二硫酮隧穿

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摘要

Dithiooxamide [rubeanic acid, NH2C(S)C(S)NH2)] monomers were studied by FTIR spectroscopy combined with the low-temperature matrix-isolation technique. The most stable dithione−diamino tautomer of the compound was exclusively observed in argon matrixes immediately after deposition. Upon UV (λ > 345 nm) irradiation the dithione−diamino form transformed, by a double-proton transfer, into the dithiol−diimino tautomer. Theoretically supported analysis of the infrared spectrum emerging upon UV irradiation allowed identification of one of the conformers of the dithiol−diimino tautomer as the dominating photoproduct. Smaller quantities of other conformers of the dithiol−diimino tautomer were also found to be photogenerated. For the UV-irradiated matrix kept subsequently at 10 K and in darkness, a dithiol−diimino → dithione−diamino tautomerization leading to partial recovery of the initial form of the compound was observed. The only possible mechanism of this ground-state transformation at cryogenic temperature is synchronous double-proton tunneling. The experimentally obtained time constant of this process was 18 h.
机译:通过FTIR光谱结合低温基质分离技术研究了二硫代乙酰胺[豆蔻酸,NH 2 C(S)C(S)NH 2)]单体。沉积后立即在氩气基质中仅观察到该化合物最稳定的二硫酮-二氨基互变异构体。在紫外线(λ> 345 nm)照射下,二硫酮-二氨基形式通过双质子转移转变为二硫醇-二亚氨基互变异构体。从理论上讲,对紫外线照射下出现的红外光谱的分析支持将二硫醇-二亚氨基互变异构体的构象体之一确定为主要的光产物。还发现少量其他构象的二硫醇-二亚氨基互变异构体可以光生。对于随后保持在10 K和黑暗中的紫外线照射基质,观察到二硫醇-二亚氨基→二硫酮-二氨基互变异构,导致该化合物的初始形式部分恢复。低温下这种基态转换的唯一可能机制是同步双质子隧穿。实验获得的该过程的时间常数为18 h。

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