Department of Chemistry, Chemical Theory Center, and Minnesota Supercomputing Institute, University of Minnesota , Minneapolis, Minnesota 55455-0431, United States.
Department of Chemical Engineering, University of California , Davis, California 95616, United States.
ACS Appl Mater Interfaces. 2017 Oct 4;9(39):33511-33520. doi: 10.1021/acsami.7b03858. Epub 2017 May 24.
Metal-organic frameworks (MOFs) with nodes consisting of zirconium oxide clusters (Zr) offer new opportunities as supports for catalysts with well-defined, essentially molecular, structures. We used the precursor Rh(CH)(acac) (acac is acetylacetonate) to anchor Rh(I) complexes to the nodes of the MOF UiO-67 and, for comparison, to the zeolite dealuminated HY (DAY). These were characterized experimentally by measurement of catalytic activities and selectivities for ethylene hydrogenation and dimerization in a once-through flow reactor at 298 K and 1 bar. The catalyst performance data are complemented with structural information determined by infrared and extended X-ray absorption fine structure spectroscopies and by calculations at the level of density functional theory, the latter carried out also to extend the investigation to a related MOF, NU-1000. The agreement between the experimental and calculated structural metrics is good, and the calculations have led to predictions of reaction mechanisms and associated energetics. The data demonstrate a correlation between the catalytic activity and selectivity and the electron-donor tendency of the supported rhodium (as measured by the frequencies of CO ligands bonded as probes to the Rh(I) centers), which is itself a measure of the electron-donor tendency of the support.
金属-有机骨架(MOFs)的节点由氧化锆簇(Zr)组成,为具有明确定义的、本质上是分子结构的催化剂提供了新的机会。我们使用前体 Rh(CH)(acac)(acac 是乙酰丙酮根)将 Rh(I) 配合物锚定到 MOF UiO-67 的节点上,并进行比较,将 Rh(I) 配合物锚定到沸石脱铝 HY(DAY)的节点上。这些配合物在 298 K 和 1 bar 下的单程流动反应器中,通过测量乙烯加氢和二聚化的催化活性和选择性进行了实验表征。催化剂性能数据通过红外和扩展 X 射线吸收精细结构光谱以及密度泛函理论水平的计算得到了补充,后者的计算还扩展到了相关的 MOF NU-1000 的研究。实验和计算结构度量之间的一致性很好,计算还导致了反应机制和相关能量学的预测。这些数据表明,催化活性和选择性与负载的铑的供电子倾向(通过与 Rh(I) 中心结合的 CO 配体的频率来测量)之间存在相关性,而这本身就是对支撑体供电子倾向的衡量。