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首页> 外文期刊>ACS Omega >Reduction of Hydrogenated ZrO2 Nanoparticles by Water Desorption
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Reduction of Hydrogenated ZrO2 Nanoparticles by Water Desorption

机译:水脱附还原氢化ZrO 2 纳米粒子

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Reduction of zirconia by water desorption from a hydrogenated surface is the topic of this study. The focus is on the role of nanostructuring the oxide reducibility measured by the cost of formation of oxygen vacancies by water desorption. We have performed density functional theory calculations using the Perdew–Burke–Ernzerhof + U approach and including dispersion forces on the adsorption, dissociation, diffusion of hydrogen on the ZrO_(2) (101) surface and on Zr_(16)O_(32), Zr_(40)O_(80), and Zr_(80)O_(160) nanoparticles (NPs). The process involves the formation of a precursor state via diffusion of hydrogen on the surface of zirconia. The results show that O vacancy formation via H_(2)O desorption is more convenient than via direct O_(2) desorption. The formation of an O_(s)H_(2) surface precursor state to water desorption is the rate-determining step. This step is highly unfavorable on the ZrO_(2) (101) surface both thermodynamically and kinetically. On the contrary, on zirconia NPs, characterized by the presence of low coordinated ions, water desorption becomes accessible such that even at temperatures close to 450 K the reaction becomes exergonic. The study shows the role of nanostructuring on the chemical and electronic properties of an oxide.
机译:通过从氢化表面解吸水来减少氧化锆是本研究的主题。重点是通过水脱附形成氧空位的成本来衡量纳米结构氧化物还原性的作用。我们已经使用Perdew-Burke-Ernzerhof + i方法进行了密度泛函理论计算,并包括了ZrO_(2)(101)表面和Zr_(16)O_上氢的吸附,解离,扩散的分散力(32),Zr_(40)O_(80)和Zr_(80)O_(160)纳米粒子(NPs)。该方法包括通过氢在氧化锆表面上的扩散形成前体状态。结果表明,通过H_(2)O脱附形成O空位比通过直接O_(2)脱附更方便。形成O_(s)H_(2)表面前驱体状态以进行水脱附是速率确定步骤。在热力学和动力学上,该步骤在ZrO_(2)(101)表面上都是非常不利的。相反,在以低配位离子存在为特征的氧化锆NP上,水的解吸变得容易实现,因此即使在接近450 K的温度下,反应也变得很容易进行。研究表明,纳米结构对氧化物的化学和电子性质具有重要作用。

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