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电子转移对氢键稳定性的影响。

Effects of electron transfer on the stability of hydrogen bonds.

作者信息

Porter Tyler M, Heim Gavin P, Kubiak Clifford P

机构信息

Department of Chemistry and Biochemistry , University of California San Diego , 9500 Gilman Drive , La Jolla , California 92093-0358 , USA . Email:

出版信息

Chem Sci. 2017 Nov 1;8(11):7324-7329. doi: 10.1039/c7sc03361c. Epub 2017 Aug 30.

Abstract

The measurement of the dimerization constants of hydrogen-bonded ruthenium complexes (, , ) linked by a self-complementary pair of 4-pyridylcarboxylic acid ligands in different redox states is reported. Using a combination of FTIR and UV/vis/NIR spectroscopies, the dimerization constants () of the isovalent, neutral states, , , , were found to range from 75 to 130 M (Δ = -2.56 to -2.88 kcal mol), while the dimerization constants () of the isovalent, doubly-reduced states, (), (), (), were found to range from 2000 to 2500 M (Δ = -4.5 to -4.63 kcal mol). From the aforementioned values and the comproportionation constant for the mixed-valent dimers, the dimerization constants () of the mixed-valent, hydrogen-bonded dimers, (), (), (), were found to range from 0.5 × 10 to 1.2 × 10 M (Δ = -7.78 to -8.31 kcal mol). On average, the hydrogen-bonded, mixed-valent states are stabilized by -5.27 (0.04) kcal mol relative to the isovalent, neutral, hydrogen-bonded dimers and -3.47 (0.06) kcal mol relative to the isovalent, dianionic hydrogen bonded dimers. Electron exchange in the mixed valence states imparts significant stability to hydrogen bonding. This is the first quantitative measurement of the strength of hydrogen bonds in the presence and absence of electronic exchange.

摘要

报道了通过一对自互补的4-吡啶羧酸配体连接的不同氧化还原态的氢键合钌配合物(,,)二聚常数的测量。结合傅里叶变换红外光谱(FTIR)和紫外/可见/近红外光谱,发现等价位中性态,,,,的二聚常数()范围为75至130 M(Δ = -2.56至-2.88 kcal/mol),而等价位双还原态()、()、()的二聚常数()范围为2000至2500 M(Δ = -4.5至-4.63 kcal/mol)。根据上述值和混合价二聚体的归中常数,发现混合价氢键合二聚体()、()、()的二聚常数()范围为0.5×10至1.2×10 M(Δ = -7.78至-8.31 kcal/mol)。平均而言,相对于等价位中性氢键合二聚体,混合价氢键合态的稳定性提高了-5.27(0.04)kcal/mol,相对于等价位双阴离子氢键合二聚体,稳定性提高了-3.47(0.06)kcal/mol。混合价态中的电子交换赋予氢键显著的稳定性。这是在有和没有电子交换的情况下对氢键强度的首次定量测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f3a/5672789/99069e51901f/c7sc03361c-f2.jpg

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