Yu Wen-Yueh, Zhang Liang, Mullen Gregory M, Evans Edward J, Henkelman Graeme, Mullins C Buddie
McKetta Department of Chemical Engineering, University of Texas at Austin, Austin, Texas 78712, USA.
Phys Chem Chem Phys. 2015 Aug 28;17(32):20588-96. doi: 10.1039/c5cp03515e. Epub 2015 Jul 22.
It has been reported that Pd-Au bimetallic catalysts display improved catalytic performance after adequate calcination. In this study, a model catalyst study was conducted to investigate the effects of annealing in oxygen on the surface structures of Pd-Au alloys by comparing the physicochemical properties of Pd/Au(111) surfaces that were annealed in ultrahigh vacuum (UHV) versus in an oxygen ambient. Auger electron spectroscopy (AES) and Basin hopping simulations reveal that the presence of oxygen can inhibit the diffusion of surface Pd atoms into the subsurface of the Au(111) sample. Reflection-absorption infrared spectroscopy using CO as a probe molecule (CO-RAIRS) and King-Wells measurements of O2 uptake suggest that surfaces annealed in an oxygen ambient possess more contiguous Pd sites than surfaces annealed under UHV conditions. The oxygen-annealed Pd/Au(111) surface exhibited a higher activity for CO oxidation in reactive molecular beam scattering (RMBS) experiments. This enhanced activity likely results from the higher oxygen uptake and relatively facile dissociation of oxygen admolecules due to stronger adsorbate-surface interactions as suggested by temperature-programmed desorption (TPD) measurements. These observations provide fundamental insights into the surface phenomena of Pd-Au alloys, which may prove beneficial in the design of future Pd-Au catalysts.
据报道,钯金双金属催化剂在充分煅烧后表现出改善的催化性能。在本研究中,通过比较在超高真空(UHV)和氧气环境中退火的Pd/Au(111)表面的物理化学性质,进行了一项模型催化剂研究,以研究在氧气中退火对钯金合金表面结构的影响。俄歇电子能谱(AES)和盆地跳跃模拟表明,氧气的存在可以抑制表面钯原子扩散到Au(111)样品的次表面。使用CO作为探针分子的反射吸收红外光谱(CO-RAIRS)和O2吸收的金-韦尔斯测量表明,在氧气环境中退火的表面比在UHV条件下退火的表面具有更多连续的钯位点。在反应分子束散射(RMBS)实验中,氧气退火的Pd/Au(111)表面对CO氧化表现出更高的活性。如程序升温脱附(TPD)测量所示,这种增强的活性可能是由于更高的氧气吸收以及由于更强的吸附质-表面相互作用导致氧气吸附分子相对容易解离所致。这些观察结果为钯金合金的表面现象提供了基本见解,这可能对未来钯金催化剂的设计有益。