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In Situ Structure-Function Studies of Oxide Supported Rhodium Catalysts by Combined Energy Dispersive XAFS and DRIFTS Spectroscopies

机译:通过组合能量分散XAFs和漂移光谱,氧化氧化铑催化剂的原位结构 - 函数研究

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The techniques of energy dispersive EXAFS (EDE), diffuse reflectance Fourier transform infrared spectroscopy (DRIFTS) and mass spectrometry (MS) have been combined to study the structure and function of an oxide supported metal catalyst, namely 5 wt% Rh/Al2O3. Using a FreLoN camera as the EDE detector and a rapid-scanning IR spectrometer, experiments could be performed with a repetition rate of 50 ms. The results show that the nature of the rhodium centers is a function of the partial pressures of the reacting gases (CO and NO) and also temperature. This combination of gases oxidizes metallic rhodium particles to Rh(CO)2 at room temperature. The proportion of the rhodium adopting this site increases as the temperature is raised (up to 450 K). Above that temperature the dicarbonyl decomposes and the metal reclusters. Once this condition is met, catalysis ensues. Gas switching techniques show that at 573 K with NO in excess, the clusters can be oxidized rapidly to afford a linear nitrosyl complex; re-exposure to CO also promotes reclustering and the CO adopts terminal (atop) and bridging (2-fold) sites.
机译:已经组合了能量分散exafs(EDE),漫反射率傅里叶变换红外光谱(漂移)和质谱(MS)以研究氧化物负载金属催化剂的结构和功能,即5wt%RH / Al 2 O 3。使用Felon相机作为EDE检测器和快速扫描IR光谱仪,可以使用50ms的重复率进行实验。结果表明,铑中心的性质是反应气体(CO和NO)和温度的部分压力的函数。这种气体的组合在室温下将金属铑颗粒氧化成Rh(CO)2。采用该部位的铑的比例随着温度升高而增加(高达450 k)。在该温度之上,二羰基分解和金属闭合剂。一旦满足这种情况,催化就会发生催化。气体切换技术表明,在573 k下,没有过量,簇可以迅速氧化,得到线性亚硝基复合物;再暴露于CO也促进了倾斜和CO采用终端(ATOP)和桥接(2倍)位点。

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