Cheng Xueli
School of Chemistry and Chemical Engineering, Taishan University, Tai'an, 271000, China.
J Mol Model. 2016 Nov;22(11):282. doi: 10.1007/s00894-016-3151-5. Epub 2016 Oct 29.
The absorption and emission spectra of dichlorvos and the dichlorvos-MAA complex in methanol, water, and chloroform in the molecularly imprinted recognition were investigated systematically. The M06-2X results revealed that: 1) the hydroxyl groups in polar solvents such as methanol and water may markedly influence the weak interactions, and then alter the adsorption and emission spectra; 2) the electronic excitation in absorption spectra of dichlorvos is dominated by the configuration HOMO → LUMO, but in the most stable dichlorvos-MAA it becomes the ππ* excitation of HOMO → LUMO + 1; 3) Mulliken charges reveal that dichlorvos almost dissociates to Cl and a cation in its S excitation state; 4) the phosphorescence spectra of dichlorvos-MAA are relatively weak. Graphical Abstract The absorption and emission spectra of dichlorvos and the dichlorvos-MAA complex in the molecularly imprinted recognition of dichlorvos were investigated systematically in methanol, water, and chloroform as solvents.
系统研究了敌敌畏以及敌敌畏 - MAA配合物在甲醇、水和氯仿中分子印迹识别过程中的吸收光谱和发射光谱。M06 - 2X计算结果表明:1)甲醇和水等极性溶剂中的羟基可能显著影响弱相互作用,进而改变吸附光谱和发射光谱;2)敌敌畏吸收光谱中的电子激发以组态HOMO → LUMO为主,但在最稳定的敌敌畏 - MAA配合物中变为HOMO → LUMO + 1的ππ*激发;3)Mulliken电荷表明,敌敌畏在其S激发态几乎解离为Cl和一个阳离子;4)敌敌畏 - MAA的磷光光谱相对较弱。图形摘要 以甲醇、水和氯仿为溶剂,系统研究了敌敌畏以及敌敌畏 - MAA配合物在敌敌畏分子印迹识别过程中的吸收光谱和发射光谱。