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光学生成与计算研究商业双偶氮染料俾斯麦棕 Y 的可逆异构化。

Optical and computational study of the ↔ reversible isomerization of the commercial bis-azo dye Bismarck Brown Y.

机构信息

Department of Chemistry, McGill University, Montreal, QC, Canada.

Department of Physics and Astronomy, York University, Toronto, ON, Canada.

出版信息

Phys Chem Chem Phys. 2023 Feb 15;25(7):5673-5684. doi: 10.1039/d2cp05010b.

Abstract

The -- isomerization behaviour of Bismarck Brown Y (BBY) during and after irradiation with visible light, was characterized in detail for the first time by means of optical pump-probe experiments, to study the geometric inter-conversion of bis-azobenzene both in solution and embedded in multi-layered polymeric thin films. The rate constants observed for the thermal - back isomerization permit a determination of how the thermal isomerization is influenced by its local environment. In both solution and when incorporated into multi-layered thin films, the thermal relaxation observed for the commercial azo dye BBY showed a highly unusual biexponential decay, which clearly demonstrates two distinct isomerization processes. The decay showed an anomalous fast isomerization process on the timescale of milliseconds, followed by a slower isomerization process with a lifetime on the order of seconds. It was further observed that the faster isomerization process was influenced more by its local environment than was the slower process. The faster isomerization process also displayed a higher rate constant in aprotic solvents such as THF and DMF compared to that observed in protic solvents such as ethanol and water. Additionally, a higher rate constant was observed in solution compared to the multi-layered thin films where motion of the azo molecules was likely more restricted. Following recrystallization of the BBY azo dye, the more expected monoexponential decay was observed for the isomer in solution, with a single lifetime calculated on the timescale of seconds. This timescale corresponded well to values predicted by density functional theory calculations.

摘要

双-偶氮苯(BBY)在可见光照射下的异构化行为,首次通过光泵浦探测实验进行了详细的表征,以研究双偶氮苯在溶液中和嵌入多层聚合物薄膜中的几何互变。观察到的热-后异构化速率常数允许确定热异构化如何受到其局部环境的影响。在溶液中和掺入多层薄膜中时,商用偶氮染料 BBY 的热弛豫表现出高度异常的双指数衰减,这清楚地表明了两个不同的异构化过程。衰减显示出毫秒级的异常快速异构化过程,随后是较慢的异构化过程,其寿命约为秒。进一步观察到,较快的异构化过程比较慢的过程更受其局部环境的影响。较快的异构化过程在 THF 和 DMF 等无质子溶剂中的速率常数也高于在乙醇和水等质子溶剂中观察到的速率常数。此外,在溶液中观察到的速率常数比多层薄膜中的速率常数高,在多层薄膜中,偶氮分子的运动可能受到更多限制。BBY 偶氮染料重结晶后,在溶液中观察到更预期的单指数衰减,在秒级的时间尺度上计算出单个半衰期。该时间尺度与密度泛函理论计算预测的值非常吻合。

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