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Microsolvation effects on the optical properties of crystal violet

机译:微溶剂对结晶紫光学特性的影响

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摘要

We present a joint experimental and theoretical study of the photoabsorption and photodissociation behavior of crystal violet, that is, the tris[p-(dimethylamino)phenyl]methylcation. The photodissociation spectra of isolated and microsolvated crystal violet have been measured. A single band is observed for the bare cation. This is in good agreement with calculated vibronic absorption spectrum based on time-dependent density functional theory calculations. The interaction of crystal violet with a single water molecule shifts and broadens the photodissociation spectrum, so that is approaches the spectrum obtained in solution. theoretical calculations of the structure of the complex suggest that the shift in the absorption spectrum originates from a water molecule bonding with the central carbon atom of crystal violet.
机译:我们提出了结晶紫,即三[对-((二甲基氨基)苯基]甲基阳离子的光吸收和光解离行为的联合实验和理论研究。已经测量了分离的和微溶剂化的结晶紫的光解离光谱。裸阳离子观察到一条带。这与基于时间相关的密度泛函理论计算得出的振动吸收光谱非常吻合。结晶紫与单个水分子的相互作用移动并加宽了光解离光谱,因此接近溶液中获得的光谱。配合物结构的理论计算表明,吸收光谱的移动源自与结晶紫的中心碳原子键合的水分子。

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