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通过在芳香醇的氢键络合物中使用局部O-H伸缩探针将光酸度与氢键结构相关联。

Correlating photoacidity to hydrogen-bond structure by using the local O-H stretching probe in hydrogen-bonded complexes of aromatic alcohols.

作者信息

Psciuk Brian T, Prémont-Schwarz Mirabelle, Koeppe Benjamin, Keinan Sharon, Xiao Dequan, Nibbering Erik T J, Batista Victor S

机构信息

†Department of Chemistry, Yale University, 225 Prospect Street, New Haven, Connecticut 06520, United States.

‡Max Born Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max Born Strasse 2A, D-12489 Berlin, Germany.

出版信息

J Phys Chem A. 2015 May 21;119(20):4800-12. doi: 10.1021/acs.jpca.5b01530. Epub 2015 May 4.

Abstract

To assess the potential use of O-H stretching modes of aromatic alcohols as ultrafast local probes of transient structures and photoacidity, we analyze the response of the O-H stretching mode in the 2-naphthol-acetonitrile (2N-CH3CN) 1:1 complex after UV photoexcitation. We combine femtosecond UV-infrared pump-probe spectroscopy and a theoretical treatment of vibrational solvatochromic effects based on the Pullin perturbative approach, parametrized at the density functional theory (DFT) level. We analyze the effect of hydrogen bonding on the vibrational properties of the photoacid-base complex in the S0 state, as compared to O-H stretching vibrations in a wide range of substituted phenols and naphthols covering the 3000-3650 cm(-1) frequency range. Ground state vibrational properties of these phenols and naphthols with various substituent functional groups are analyzed in solvents of different polarity and compared to the vibrational frequency shift of 2N induced by UV photoexcitation to the (1)Lb electronic excited state. We find that the O-H stretching frequency shifts follow a linear relationship with the solvent polarity function F0 = (2ε0 - 2)/(2ε0 + 1), where ε0 is the static dielectric constant of the solvent. These changes are directly correlated with photoacidity trends determined by reported pKa values and with structural changes in the O···N and O-H hydrogen-bond distances induced by solvation or photoexcitation of the hydrogen-bonded complexes.

摘要

为了评估芳香醇的O-H伸缩模式作为瞬态结构和光酸度超快局部探针的潜在用途,我们分析了2-萘酚-乙腈(2N-CH3CN)1:1络合物在紫外光激发后O-H伸缩模式的响应。我们结合了飞秒紫外-红外泵浦-探测光谱以及基于Pullin微扰方法的振动溶剂化显色效应的理论处理,该方法在密度泛函理论(DFT)水平上进行了参数化。与覆盖3000-3650 cm(-1)频率范围的各种取代酚和萘酚中的O-H伸缩振动相比,我们分析了氢键对S0态光酸碱络合物振动性质的影响。在不同极性的溶剂中分析了这些具有各种取代官能团的酚和萘酚的基态振动性质,并与紫外光激发2N到(1)Lb电子激发态引起的振动频率位移进行了比较。我们发现,O-H伸缩频率位移与溶剂极性函数F0 = (2ε0 - 2)/(2ε0 + 1)呈线性关系,其中ε0是溶剂的静态介电常数。这些变化与由报道的pKa值确定的光酸度趋势以及由氢键络合物的溶剂化或光激发引起的O···N和O-H氢键距离的结构变化直接相关。

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