Peng Luming, Huo Hua, Liu Yun, Grey Clare P
Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400, USA.
J Am Chem Soc. 2007 Jan 17;129(2):335-46. doi: 10.1021/ja064922z.
High-resolution 17O/1H double resonance NMR spectra were obtained for two zeolites, one with a low Si/Al ratio (zeolite HY) and one with a high Si/Al ratio (HZSM-5), to investigate their local structure and Brønsted acidity. Two different oxygen signals, corresponding to Brønsted acid sites in supercages and sodalite cages of zeolite HY were readily resolved in the two-dimensional (2-D) 1H-17O heteronuclear correlation (HETCOR) NMR spectra allowing the 17O isotropic chemical shift (deltaCS) and quadrupolar coupling parameters (quadrupolar coupling constant, QCC, and asymmetry parameter, eta) for the two oxygen atoms to be extracted. Similar experiments for HZSM-5 showed that the sites in this system are associated with a much larger distribution in NMR parameters than found in HY. 17O-1H rotational echo double resonance (REDOR) NMR was applied to probe the O-H distances in zeolites HY and HZSM-5. Weaker 17O-1H dephasing was observed for zeolite HZSM-5 in comparison to that of HY, consistent with longer O-H bonds and/or increased proton mobility.
获得了两种沸石的高分辨率17O/1H双共振核磁共振谱,一种是低硅铝比的沸石(HY沸石),另一种是高硅铝比的沸石(HZSM-5),以研究它们的局部结构和布朗斯特酸度。在二维(2-D)1H-17O异核相关(HETCOR)核磁共振谱中,很容易分辨出对应于HY沸石超笼和方钠石笼中布朗斯特酸位点的两种不同的氧信号,从而可以提取出两个氧原子的17O各向同性化学位移(δCS)和四极耦合参数(四极耦合常数,QCC,以及不对称参数,η)。对HZSM-5进行的类似实验表明,该体系中的位点与核磁共振参数的分布范围比HY沸石中的大得多。采用17O-1H旋转回波双共振(REDOR)核磁共振技术探测HY沸石和HZSM-5中的O-H距离。与HY沸石相比,HZSM-5沸石观察到较弱的17O-1H去相,这与更长的O-H键和/或增加的质子迁移率一致。