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甘氨酸电子结构的pH依赖性

pH dependence of the electronic structure of glycine.

作者信息

Messer B M, Cappa C D, Smith J D, Wilson K R, Gilles M K, Cohen R C, Saykally R J

机构信息

Department of Chemistry, University of California, Berkeley, California 94720-1460, USA.

出版信息

J Phys Chem B. 2005 Mar 24;109(11):5375-82. doi: 10.1021/jp0457592.

Abstract

The carbon, nitrogen, and oxygen K-edge spectra were measured for aqueous solutions of glycine by total electron yield near-edge X-ray absorption fine structure (TEY NEXAFS) spectroscopy. The bulk solution pH was systematically varied while maintaining a constant amino acid concentration. Spectra were assigned through comparisons with both previous studies and ab initio computed spectra of isolated glycine molecules and hydrated glycine clusters. Nitrogen K-edge solution spectra recorded at low and moderate pH are nearly identical to those of solid glycine, whereas basic solution spectra strongly resemble those of the gas phase. The carbon 1s --> pi*(C=O) transition exhibits a 0.2 eV red shift at high pH due to the deprotonation of the amine terminus. This deprotonation also effects a 1.4 eV red shift in the nitrogen K-edge at high pH. Two sharp preedge features at 401.3 and 402.5 eV are also observed at high pH. These resonances, previously observed in the vapor-phase ISEELS spectrum of glycine, have been reassigned as transitions to sigma* bound states. The observation of these peaks indicates that the amine moiety is in an acceptor-only hydrogen bond configuration at high pH. At low pH, the oxygen 1s --> pi*(C=O) transition exhibits a 0.25-eV red shift due to the protonation of the carboxylic acid terminus. These spectral differences indicate that the variations in electronic structure observed in the NEXAFS spectra are determined by the internal charge state and hydration environment of the molecule in solution.

摘要

通过全电子产额近边X射线吸收精细结构(TEY NEXAFS)光谱法测量了甘氨酸水溶液的碳、氮和氧K边光谱。在保持氨基酸浓度恒定的同时,系统地改变了本体溶液的pH值。通过与先前的研究以及孤立甘氨酸分子和水合甘氨酸簇的从头计算光谱进行比较来指定光谱。在低pH和中等pH下记录的氮K边溶液光谱与固体甘氨酸的光谱几乎相同,而碱性溶液光谱与气相光谱非常相似。由于胺端的去质子化,碳1s→π*(C=O)跃迁在高pH下呈现0.2 eV的红移。这种去质子化在高pH下也会使氮K边产生1.4 eV的红移。在高pH下还观察到401.3和402.5 eV处的两个尖锐的前缘特征。这些共振先前在甘氨酸的气相ISEELS光谱中观察到,已重新指定为向σ束缚态的跃迁。这些峰的观察表明,在高pH下胺部分处于仅作为受体的氢键构型。在低pH下,由于羧酸端的质子化,氧1s→π(C=O)跃迁呈现0.25 eV的红移。这些光谱差异表明,在NEXAFS光谱中观察到的电子结构变化是由溶液中分子的内部电荷状态和水合环境决定的。

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