Department of Chemical Sciences, University of Padova, Via Marzolo 1, 35131 Padova, Italy.
J Phys Chem B. 2010 Jun 17;114(23):7894-9. doi: 10.1021/jp100402x.
The absolute potential of the standard hydrogen electrode, SHE, was calculated on the basis of a thermodynamic cycle involving H(2(g)) atomization, ionization of H((g))* to H((g))(+), and hydration of H(+). The most up-to-date literature values on the free energies of these reactions have been selected and, when necessary, adjusted to the electron convention Fermi-Dirac statistics since both e(-) and H(+) are fermions. As a reference state for the electron, we have chosen the electron at 0 K, which is the one used in computational chemistry. Unlike almost all previous estimations of SHE, DeltaG(aq)(theta)(H(+)) was used instead of the real potential, alpha(aq)(H(+)). This choice was made to obtain a SHE value based on the chemical potential, which is the appropriate reference to be used in theoretical computations of standard reduction potentials. The result of this new estimation is a value of 4.281 V for the absolute potential of SHE. The problem of conversion of standard reduction potentials (SRPs) measured or estimated in water to the corresponding values in nonaqueous solvents has also been addressed. In fact, thermochemical cycles are often used to calculate SRPs in water versus SHE, and it is extremely important to have conversion factors enabling estimation of SRPs in nonaqueous solvents. A general equation relating E(theta) of a generic redox couple in water versus the SHE to the value of E(theta) in an organic solvent versus the aqueous saturated calomel electrode is reported.
标准氢电极(SHE)的绝对电位是基于一个热力学循环计算得出的,该循环涉及 H(2(g))的原子化、H((g))*的电离为 H((g))(+)以及 H(+)的水合。选择了最新的关于这些反应自由能的文献值,并在必要时根据电子费米-狄拉克统计进行了调整,因为 e(-)和 H(+)都是费米子。作为电子的参考状态,我们选择了 0 K 下的电子,这是计算化学中使用的电子。与 SHE 的几乎所有先前估计不同,我们使用了 DeltaG(aq)(theta)(H(+))而不是实际电位 alpha(aq)(H(+))。这样做是为了获得基于化学势的 SHE 值,这是用于标准还原电位理论计算的适当参考。这种新估计的结果是 SHE 的绝对电位为 4.281 V。还解决了将在水中测量或估计的标准还原电位(SRP)转换为非水溶剂中相应值的问题。实际上,通常使用热化学循环来计算水中相对于 SHE 的 SRP,并且具有能够估计非水溶剂中 SRP 的转换因子非常重要。报告了一个通用方程,该方程将水相对于 SHE 的通用氧化还原对的 E(theta)值与在有机溶剂中相对于水饱和甘汞电极的 E(theta)值相关联。