Kletnieks Philip W, Liang Ann J, Craciun Raluca, Ehresmann Justin O, Marcus David M, Bhirud Vinesh A, Klaric Meghan M, Hayman Miranda J, Guenther Darryl R, Bagatchenko Olesya P, Dixon David A, Gates Bruce C, Haw James F
Department of Chemistry, University of Southern California, Los Angeles, CA 90089, USA.
Chemistry. 2007;13(26):7294-304. doi: 10.1002/chem.200700721.
By anchoring metal complexes to supports, researchers have attempted to combine the high activity and selectivity of molecular homogeneous catalysis with the ease of separation and lack of corrosion of heterogeneous catalysis. However, the intrinsic nonuniformity of supports has limited attempts to make supported catalysts truly uniform. We report the synthesis and performance of such a catalyst, made from [Rh(C(2)H(4))(2)(CH(3)COCHCOCH(3))] and a crystalline support, dealuminated Y zeolite, giving {Rh(C(2)H(4))(2)} groups anchored by bonds to two zeolite oxygen ions, with the structure determined by extended X-ray absorption fine structure (EXAFS) spectroscopy and the uniformity of the supported complex demonstrated by (13)C NMR spectroscopy. When the ethylene ligands are replaced by acetylene, catalytic cyclotrimerization to benzene ensues. Characterizing the working catalyst, we observed evidence of intermediates in the catalytic cycle by NMR spectroscopy. Calculations at the level of density functional theory confirmed the structure of the as-synthesized supported metal complex determined by EXAFS spectroscopy. With this structure as an anchor, we used the computational results to elucidate the catalytic cycle (including transition states), finding results in agreement with the NMR spectra.
通过将金属配合物锚定在载体上,研究人员试图将分子均相催化的高活性和选择性与多相催化的易于分离和无腐蚀性结合起来。然而,载体固有的不均匀性限制了制备真正均匀的负载型催化剂的尝试。我们报道了一种由[Rh(C₂H₄)₂(CH₃COCHCOCH₃)]和结晶载体脱铝Y沸石制成的催化剂的合成及性能,其中{Rh(C₂H₄)₂}基团通过化学键锚定在两个沸石氧离子上,其结构由扩展X射线吸收精细结构(EXAFS)光谱确定,负载型配合物的均匀性由¹³C NMR光谱证明。当乙烯配体被乙炔取代时,会发生催化环三聚反应生成苯。在表征工作催化剂时,我们通过NMR光谱观察到了催化循环中中间体的证据。密度泛函理论水平的计算证实了由EXAFS光谱确定的合成负载型金属配合物的结构。以这种结构为基础,我们利用计算结果阐明了催化循环(包括过渡态),发现结果与NMR光谱一致。