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Delimiting the boron influence on the adsorptive properties of water and circle OH radicals on H-terminated Boron Doped Diamond catalysts: A Density Functional Theory analysis

机译:界定硼对氢封端的硼掺杂金刚石催化剂上水和环羟基自由基吸附性能的影响:密度泛函理论分析

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Motivated for the success of Boron Doped Diamond (BDD) in electrocatalysis, where water and hydroxyl radical interactions play an overriding role on surface reactivity, this study presents a Density Functional Theory (DFT) analysis intended to correlate its structure and reactivity. H-terminated periodic surfaces (supercells 5 x 5) with atomic composition of one boron per 150 C atoms are used for these purposes, and where B position was varied in different layers. Analyses of total density of states (TDOS), localization of occupied and unoccupied states near the Fermi level and adsorption energies show that the effect of B doping on surface reactivity decreases as a function of its vertical distance from the BDD surface, and it is restricted to the first three surface layers. The adsorption free energy calculated for a water molecule corroborates the hydrophobic nature of these surfaces, becoming more repulsive as B is located within the first three surface layers. In contrast, the free energy computed for hydroxyl radical is always exergonic. Hydrogen abstraction by hydroxyl radical is an energy enabled process for all surface hydrogens, regardless if they are bonded to C or B atoms, becoming more energetic when hydrogemis directly bonded to B or its nearest neighbor carbon, while other abstractions present very similar adsorption energies than in the absence of boron. (C) 2016 Elsevier B.V. All rights reserved.
机译:出于对硼掺杂金刚石(BDD)在电催化中的成功的推动,其中水和羟基自由基相互作用在表面反应性中起着至关重要的作用,本研究提出了一种旨在将其结构与反应性相关的密度泛函理论(DFT)分析。 H末端的周期表面(超级电池5 x 5)具有每150 C原子一个硼的原子组成,用于这些目的,并且B位置在不同层中不同。对总态密度(TDOS),费米能级附近的占据和未占据态的局域化以及吸附能的分析表明,B掺杂对表面反应性的影响随其与BDD表面的垂直距离而变,并且受到限制。到前三个表面层。为水分子计算的吸附自由能证实了这些表面的疏水性,随着B位于前三个表面层之内,其排斥力变得更大。相比之下,为羟基自由基计算的自由能总是能动的。羟基自由基对所有表面氢的吸收是一个能量使能的过程,无论它们是否与C或B原子键合,当氢基团直接与B或其最邻近的碳原子键合时,其能量都更高,而其他氢键的吸收能量与在没有硼的情况下。 (C)2016 Elsevier B.V.保留所有权利。

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