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首页> 外文期刊>International journal of hydrogen energy >Determination of equilibrium isotope effect at Pd/alkaline solution (regular and heavy water) interfaces by the phase-shift method and its comparison with other Pt-group metals
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Determination of equilibrium isotope effect at Pd/alkaline solution (regular and heavy water) interfaces by the phase-shift method and its comparison with other Pt-group metals

机译:通过相移法测定Pd /碱性溶液(常规和重水)界面的平衡同位素效应及其与其他Pt族金属的比较

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The Frumkin isotherm provides information about the atomic behaviors of hydrogen (H) and deuterium (D) on the electrocatalyst surface. However, it cannot be obtained easily by the conventional electrochemical methods, owing to the similar electrochemical behaviors of the underand over-potential deposition of H and D (UPD H, OPD H, UPD D, and OPD D) and the numerous overlapping factors at the electrocatalyst interface. In this study, the Frumkin isotherms for the discharge reactions of the OPD H and OPD Din the Volmer steps, isotopic shift of these isotherms, and equilibrium isotope effect (EIE) at the interfaces of Pd/alkaline (regular and heavy water: H2O and D2O) solutions are precisely determined by the phase-shift method. The interaction parameter (g) and equilibrium constant (K) are 6.6 and 9.7 x 10(-6) exp (-6.60) mol(-1), respectively, for OPD H and 8.7 and 1.1 x 10(-6) exp (-8.70) mol(-1), respectively, for OPD D, where theta is the fractional coverage (0 = theta = 1). In the range of theta (0 = theta = 1), the standard Gibbs energy (Delta G(theta)(0)) of OPD Dis 5.4-10.6 kJ mol(-1) higher than that of OPD H. The EIE values increase from 8.8 to 72.1 with increasing theta and are extraordinarily high compared to those at other Pt-group metal interfaces. The EIE values at the interfaces of Pt-group metal/alkaline (H2O and D2O) solutions decrease in the following order: Pd Pt-Ir alloy Pt Ru Ir and Rh. We expect that the Frumkin isotherms of OPD H and OPD D and the related EIE established in this study will be a useful and effective tool for studying the isotope effects at various electrocatalyst interfaces. (c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Frumkin等温线提供有关电催化剂表面上氢(H)和氘(D)的原子行为的信息。然而,由于H和D的过度沉积的底层和D潜电沉积的相似电化学行为(UPD H,OPD H,UPD D)和众多重叠因子,因此不能容易地通过传统的电化学方法获得。电催化界面。在这项研究中,Frumpin等温线用于OPD H的放电反应和OPD DIN的Volmer步骤,这些等温线的同位素转移,以及Pd /碱性界面的平衡同位素效应(EIE)(常规和重水:H2O和H2O和H2O) D2O)溶液精确地通过相移方法确定。相互作用参数(g)和平衡常数(k)分别为6.6和9.7×10(-6)exp(-6.60)mol(-1),适用于OPD H和8.7和1.1 x 10(-6)exp( -8.70)分别用于OPD D的摩尔(-1),其中θ是分数覆盖(0 <= theta <= 1)。在θ(0 <= theta <= 1)的范围内,OPD DIS的标准GIBBS能量(DELTA G(THETA)(0))高于OPD H. eie的oie(-1)值从8.8增加到72.1增加,随着其他Pt-Group金属界面的那些,θ增加,并且与其他Pt-Group金属界面相比非常高。 Pt-Group金属/碱性(H2O和D2O)溶液嵌段的eie值以下列顺序降低:Pd Pt-Ir合金> Pt> Ru> IR和Rh。我们预计OPD H和OPD D的Frumkin等温水以及本研究中建立的相关EIE将是研究各种电催化剂界面的同位素效应的有用且有效的工具。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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