Chen Yufen, Soler Lluís, Cazorla Claudio, Oliveras Jana, Bastús Neus G, Puntes Víctor F, Llorca Jordi
Department of Chemical Engineering, Universitat Politècnica de Catalunya, Eduard Maristany 16, EEBE, Barcelona, 08019, Spain.
Institute of Energy Technologies and Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya, Eduard Maristany 16, EEBE, Barcelona, 08019, Spain.
Nat Commun. 2023 Oct 3;14(1):6165. doi: 10.1038/s41467-023-41976-2.
Metal clusters supported on TiO are widely used in many photocatalytic applications, including pollution control and production of solar fuels. Besides high photoactivity, stability during the photoreaction is another essential quality of high-performance photocatalysts, however systematic studies on this attribute are absent for metal clusters supported on TiO. Here we have studied, both experimentally and with first-principles simulation methods, the stability of Pt, Pd and Au clusters prepared by ball milling on nanoshaped anatase nanoparticles preferentially exposing {001} (plates) and {101} (bipyramids) facets during the photogeneration of hydrogen. It is found that Pt/TiO exhibits superior stability than Pd/TiO and Au/TiO, and that {001} facet-based photocatalysts always are more stable than their {101} analogous regardless of the considered metal species. The loss of stability associated with cluster sintering, which is facilitated by the transfer of photoexcited carriers from the metal species to the neighbouring Ti and O atoms, most significantly and detrimentally affects the H-evolution photoactivity.
负载在TiO上的金属簇广泛应用于许多光催化领域,包括污染控制和太阳能燃料生产。除了高光活性外,光反应过程中的稳定性是高性能光催化剂的另一个重要特性,然而对于负载在TiO上的金属簇,尚未有关于这一特性的系统研究。在此,我们通过实验和第一性原理模拟方法,研究了在光催化产氢过程中,通过球磨制备的Pt、Pd和Au簇在优先暴露{001}(平板)和{101}(双锥体)晶面的纳米锐钛矿型纳米颗粒上的稳定性。研究发现,Pt/TiO比Pd/TiO和Au/TiO表现出更高的稳定性,并且无论所考虑的金属种类如何,基于{001}晶面的光催化剂总是比其{101}晶面类似物更稳定。与簇烧结相关的稳定性损失,是由光激发载流子从金属物种转移到相邻的Ti和O原子所促进的,这对析氢光活性有最显著和不利的影响。