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环境和共振效应对氨基苯甲酸衍生物质子化位点的影响。

The impact of environment and resonance effects on the site of protonation of aminobenzoic acid derivatives.

作者信息

Seo Jongcheol, Warnke Stephan, Gewinner Sandy, Schöllkopf Wieland, Bowers Michael T, Pagel Kevin, von Helden Gert

机构信息

Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.

Department of Chemistry and Biochemistry, University of California Santa Barbara, Santa Barbara, California 93106, USA.

出版信息

Phys Chem Chem Phys. 2016 Sep 14;18(36):25474-25482. doi: 10.1039/c6cp04941a.

Abstract

The charge distribution in a molecule is crucial in determining its physical and chemical properties. Aminobenzoic acid derivatives are biologically active small molecules, which have two possible protonation sites: the amine (N-protonation) and the carbonyl oxygen (O-protonation). Here, we employ gas-phase infrared spectroscopy in combination with ion mobility-mass spectrometry and density functional theory calculations to unambiguously determine the preferred protonation sites of p-, m-, and o-isomers of aminobenzoic acids as well as their ethyl esters. The results show that the site of protonation does not only depend on the intrinsic molecular properties such as resonance effects, but also critically on the environment of the molecules. In an aqueous environment, N-protonation is expected to be lowest in energy for all species investigated here. In the gas phase, O-protonation can be preferred, and in those cases, both N- and O-protonated species are observed. To shed light on a possible proton migration pathway, the protonated molecule-solvent complex as well as proton-bound dimers are investigated.

摘要

分子中的电荷分布对于确定其物理和化学性质至关重要。氨基苯甲酸衍生物是具有生物活性的小分子,有两个可能的质子化位点:胺基(N-质子化)和羰基氧(O-质子化)。在此,我们采用气相红外光谱结合离子淌度-质谱和密度泛函理论计算,以明确确定氨基苯甲酸及其乙酯的对、间和邻位异构体的优先质子化位点。结果表明,质子化位点不仅取决于诸如共振效应等内在分子性质,还关键取决于分子的环境。在水性环境中,对于此处研究的所有物种,N-质子化预计能量最低。在气相中,O-质子化可能更受青睐,在这些情况下,会观察到N-质子化和O-质子化的物种。为了阐明可能的质子迁移途径,对质子化分子-溶剂复合物以及质子键合二聚体进行了研究。

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