Elucidation of structure and nature of the PdO-Pd transformation using in situ PDF and XAS techniques

被引:49
作者
Keating, Jonathan [1 ]
Sankar, Gopinathan [1 ]
Hyde, Timothy I. [2 ]
Kohara, Shinji [3 ]
Ohara, Koji [3 ]
机构
[1] UCL, Dept Chem, London WC1H 0AJ, England
[2] Johnson Matthey Technol Ctr, Reading RG4 9NH, Berks, England
[3] Japan Synchrotron Radiat Res Inst JASRI, Res & Utilizat Div, SPring 8, Sayo, Hyogo 6795198, Japan
基金
英国工程与自然科学研究理事会;
关键词
PAIR DISTRIBUTION FUNCTION; X-RAY-DIFFRACTION; METHANE OXIDATION; SUPPORTED PALLADIUM; ABSORPTION SPECTROSCOPY; COMBUSTION; KINETICS; NANOPARTICLES; ARCHITECTURE; REACTIVITY;
D O I
10.1039/c3cp50600b
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The PdO-Pd phase transformation in a 4 wt% Pd/Al2O3 catalyst has been investigated using in situ X-ray absorption spectroscopy (XAS) and in situ X-ray total scattering (also known as high-energy X-ray diffraction) techniques. Both the partial and total pair distribution functions (PDF) from these respective techniques have been analysed in depth. New information from PDF analysis of total scattering data has been garnered using the differential PDF (d-PDF) approach where only correlations orginating from PdO and metallic Pd are extracted. This method circumvents problems encountered in characerising the catalytically active components due to the diffuse scattering from the disordered gamma-Al2O3 support phase. Quantitative analysis of the palladium components within the catalyst allowed for the phase composition to be established at various temperatures. Above 850 degrees C it was found that PdO had converted to metallic Pd, however, the extent of reduction was of the order ca. 70% Pd metal and 30% PdO. Complementary in situ XANES and EXAFS were performed, with heating to high temperature and subsequent cooling in air, and the results of the analyses support the observations, that residual PdO is detected at elevated temperatures. Hysteresis in the transformation upon cooling is confirmed from XAS studies where reoxidation occurs below 680 degrees C.
引用
收藏
页码:8555 / 8565
页数:11
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