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溶剂对酚蓝中键长交替和电荷分布的依赖性:一项基于卡-帕里尼罗分子动力学的研究。

Solvent dependence on bond length alternation and charge distribution in phenol blue: a Car-Parrinello molecular dynamics investigation.

作者信息

Murugan N Arul, Rinkevicius Zilvinas, Agren Hans

出版信息

J Phys Chem A. 2009 Apr 30;113(17):4833-9. doi: 10.1021/jp900190b.

Abstract

Car-Parrinello mixed quantum mechanics/classical mechanics (CP-QM/MM) calculations are performed for phenol blue (PB) in chloroform and water solvents along with Car-Parrinello molecular dynamics (CPMD) calculations on PB in the gas phase. The solvent effect on molecular geometry, particularly of bond length alternation (BLA), has been studied. As reported for similar donor-acceptor polyenic systems, a remarkable solvent effect is seen on the BLA. The calculated BLA parameter suggests that PB is in the neutral form in the gas phase and in chloroform solvent, while in water, it is cyanine-like, which is a mixture of neutral and zwitterionic resonant forms, something that clarifies the controversial reports on the structure of PB in chloroform. We have also verified that the structures obtained from CPMD and CP-QM/MM calculations are correct by calculating absorption spectra for PB in the gas phase and in chloroform solvent and compared with experimental results. To understand the structure for PB in the gas phase and in water solvent, we have carried out Mayer bond order analysis, supporting that the structure of PB in water is cyanine-like. Moreover, PB in water is found to be much more polarized than that in chloroform solvent. Overall, the present work demonstrates that CP-QM/MM calculations can be used to understand the solvent effects on polyenic and merocyanine-like systems, which are usually difficult to model.

摘要

对氯仿和水溶剂中的酚蓝(PB)进行了Car-Parrinello混合量子力学/经典力学(CP-QM/MM)计算,并对气相中的PB进行了Car-Parrinello分子动力学(CPMD)计算。研究了溶剂对分子几何结构的影响,特别是对键长交替(BLA)的影响。正如对类似的供体-受体多烯体系所报道的那样,在BLA上观察到了显著的溶剂效应。计算得到的BLA参数表明,PB在气相和氯仿溶剂中呈中性形式,而在水中,它呈花青样,是中性和两性离子共振形式的混合物,这澄清了关于氯仿中PB结构的有争议的报道。我们还通过计算气相和氯仿溶剂中PB的吸收光谱并与实验结果进行比较,验证了从CPMD和CP-QM/MM计算得到的结构是正确的。为了理解PB在气相和水溶剂中的结构,我们进行了迈耶键级分析,支持了PB在水中的结构呈花青样。此外,发现水中的PB比氯仿溶剂中的PB极化程度高得多。总的来说,目前的工作表明,CP-QM/MM计算可用于理解对多烯和类部花青体系的溶剂效应,而这些体系通常难以建模。

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