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担载 Pt 颗粒对 CeO2(111) 还原性的影响。

Effects of deposited Pt particles on the reducibility of CeO2(111).

机构信息

Departament de Química Física & Institut de Química Teòrica i Computacional (IQTCUB), Universitat de Barcelona, Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2011 Jun 21;13(23):11384-92. doi: 10.1039/c1cp20950g. Epub 2011 May 17.

Abstract

The interaction of Pt particles with the regular CeO(2)(111) surface has been studied using Pt(8) clusters as representative examples. The atomic and electronic structure of the resulting model systems have been obtained through periodic spin-polarized density functional calculations using the PW91 exchange-correlation potential corrected with the inclusion of a Hubbard U parameter. The focus is on the effect of the metal-support interaction on the surface reducibility of ceria. Several initial geometries and orientations of Pt(8) with respect to the ceria substrate have been explored. It has been found that deposition of Pt(8) over the ceria surface results in spontaneous oxidation of the supported particle with a concomitant reduction of up to two Ce(4+) cations to Ce(3+). Oxygen vacancy formation on the CeO(2)(111) surface and oxygen spillover to the adsorbed particle have also been considered. The presence of the supported Pt(8) particles has a rather small effect (∼0.2 eV) on the O vacancy formation energy. However, it is predicted that the spillover of atomic oxygen from the substrate to the metal particle greatly facilitates the formation of oxygen vacancies: the calculated energy required to transfer an oxygen atom from the CeO(2)(111) surface to the supported Pt(8) particle is only 1.00 eV, i.e. considerably smaller than 2.25 eV necessary to form an oxygen vacancy on the bare regular ceria surface. This strongly suggests that the propensity of ceria systems to store and release oxygen is directly affected by the presence of supported Pt particles.

摘要

采用 Pt(8) 团簇作为代表性例子,研究了 Pt 颗粒与规则 CeO(2)(111) 表面的相互作用。利用 PW91 交换关联势,并通过包含 Hubbard U 参数的修正,通过周期性自旋极化密度泛函计算得到了所得模型体系的原子和电子结构。重点关注金属-载体相互作用对氧化铈表面还原性能的影响。探索了 Pt(8)相对于 CeO 衬底的几种初始几何形状和取向。研究发现,Pt(8)在氧化铈表面上的沉积导致负载粒子的自发氧化,同时将多达两个 Ce(4+)阳离子还原为 Ce(3+)。还考虑了 CeO(2)(111)表面上氧空位的形成和氧溢出到吸附粒子。负载的 Pt(8)颗粒对 O 空位形成能的影响相当小(∼0.2 eV)。然而,据预测,从衬底到金属颗粒的原子氧的溢出极大地促进了氧空位的形成:从 CeO(2)(111)表面转移氧原子到负载的 Pt(8)颗粒所需的计算能量仅为 1.00 eV,即比在裸露的规则氧化铈表面上形成氧空位所需的 2.25 eV 小得多。这强烈表明,CeO 体系储存和释放氧的倾向直接受到负载 Pt 颗粒的影响。

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