Autrey Tom, Brown Aaron K, Camaioni Donald M, Dupuis Michel, Foster Nancy S, Getty April
Pacific Northwest National Laboratory, 908 Battelle Boulevard, Richland, Washington 99352, USA.
J Am Chem Soc. 2004 Mar 31;126(12):3680-1. doi: 10.1021/ja039827u.
Photoacoustic signals from dilute ( approximately 30 mM) solutions of H2O2 were measured over the temperature range from 10 to 45 degrees C to obtain the reaction enthalpy and volume change for H2O2(aq) --> 2 OH(aq) from which we ultimately determined DeltafG degrees , DeltafH degrees and partial molal volume, v degrees , of OH (aq). We find DeltarH = 46.8 +/- 1.4 kcal/mol, which is 4 kcal/mol smaller than the gas-phase bond energy, and DeltaVr = 6.5 +/- 0.4 mL/mol. The v degrees for OH in water is 14.4 +/- 0.4 mL/ml: smaller than the v degrees of water. Using ab intio continuum theory, the hydration free energy is calculated to be -3.9 +/- 0.3 kcal/mol (for standard states in number density concentration units) by a novel approach devised to capture in the definition of the solute cavity the strength and specific interactions of the solute with a water solvent molecule. The shape of the cavity is defined by "rolling" a three-dimensional electron density isocontour of water on the ab initio water-OH minimum interaction surface. The value of the contour is selected to reproduce the volume of OH in water. We obtain for OH(aq): DeltafH degrees = -0.2 +/- 1.4 and DeltafG degrees = 5.8 +/- 0.4 kcal/mol that are in agreement with literature values. The results provide confidence in the pulsed PAC technique for measuring aqueous thermochemistry of radicals and open the way to obtaining thermochemistry for most radicals that can be formed by reaction of OH with aqueous substrates while advancing the field of continuum solvation theory toward ab initio-defined solute cavities.
在10至45摄氏度的温度范围内,测量了过氧化氢稀溶液(约30 mM)的光声信号,以获得H2O2(aq) --> 2 OH(aq)反应的焓变和体积变化,最终由此确定了OH (aq)的标准生成自由能(ΔfG°)、标准生成焓(ΔfH°)和偏摩尔体积(v°)。我们发现反应焓变(ΔrH)为46.8±1.4 kcal/mol,比气相键能小4 kcal/mol,反应体积变化(ΔVr)为6.5±0.4 mL/mol。水中OH的v°为14.4±0.4 mL/mol,比水的v°小。采用从头算连续介质理论,通过一种新方法计算出水合自由能为-3.9±0.3 kcal/mol(对于以数密度浓度单位表示的标准状态),该方法在溶质空穴的定义中考虑了溶质与水溶剂分子的强度和特定相互作用。空穴的形状是通过将水的三维电子密度等值线在从头算水 - OH最小相互作用表面上“滚动”来定义的。选择等值线的值以再现水中OH的体积。我们得到OH(aq)的标准生成焓(ΔfH°)为-0.2±1.4 kcal/mol,标准生成自由能(ΔfG°)为5.8±0.4 kcal/mol,与文献值一致。这些结果为脉冲光声光谱技术测量自由基的水溶液热化学提供了信心,并为获得大多数由OH与水性底物反应形成的自由基的热化学开辟了道路,同时推动连续介质溶剂化理论向从头算定义的溶质空穴方向发展。