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通过扩展X射线吸收精细结构(EXAFS)、X射线吸收近边结构(XANES)和红外光谱对ZSM - 5沸石内部负载的[Cu(I)(CO)₂]⁺加合物的局部结构进行探测。

Local structure of [Cu(I)(CO)2]+ adducts hosted inside ZSM-5 zeolite probed by EXAFS, XANES and IR spectroscopies.

作者信息

Prestipino C, Capello L, D'Acapito F, Lamberti C

机构信息

Department of Inorganic, Physical and Materials Chemistry and NIS Centre of Excellence, University of Turin, Via P. Giuria 7, 10125 Torino, Italy.

出版信息

Phys Chem Chem Phys. 2005 Apr 21;7(8):1743-6. doi: 10.1039/b500780a.

Abstract

EXAFS spectroscopy, analysed in the frame of the multiple scattering theory, has been able to determine the local structure of [Cu(CO)2]+ complexes hosted inside ZSM-5 channels upon contacting the activated zeolite with CO from the gas phase at room temperature. We found that the number of coordinated CO molecules (1.8 +/- 0.3) is in good agreement with the [Cu(CO)2]+ stoichiometry suggested by IR. The Cu-C distance obtained for the [Cu(CO)2]+ complex is 1.88 +/- 0.02 A, with a C-O distance (1.12 +/- 0.03 A). This work complements a previous one [C. Lamberti, G. Turnes Palomino, S. Bordiga, G. Berlier, F. D'Acapito and A. Zecchina, Angew. Chem. Int. Ed., 2000, 39, 2138], performed at liquid nitrogen temperature, where the structure of [Cu(CO)3]+ complexes was identified by combined EXAFS/XANES/IR spectroscopies. An increase of the Cu-C distance of 0.05 A by moving from [Cu(CO)2]+ to [Cu(CO)3]+ complexes has been observed, which is the local rearrangement needed to accommodate a third CO ligand in the first coordination shell of copper. EXAFS determined that the Cu-C-O bond angle is linear within the error bars (170 +/- 10 degrees), while IR and XANES indicate that intrazeolitic [Cu(CO)2]+ complexes have C2v symmetry. The experimentally obtained moieties are in good agreement with the values obtained with advanced quantum mechanical methods.

摘要

在多重散射理论框架下进行分析的扩展X射线吸收精细结构(EXAFS)光谱,能够在室温下使活化的ZSM - 5沸石与气相中的CO接触后,确定ZSM - 5通道内负载的[Cu(CO)₂]⁺配合物的局部结构。我们发现配位的CO分子数量(1.8 ± 0.3)与红外光谱所表明的[Cu(CO)₂]⁺化学计量比吻合良好。[Cu(CO)₂]⁺配合物的Cu - C距离为1.88 ± 0.02 Å,C - O距离为(1.12 ± 0.03 Å)。这项工作补充了之前在液氮温度下开展的一项研究[C. 兰贝蒂、G. 图尔内斯·帕洛米诺、S. 博尔迪加、G. 贝利耶、F. D'阿西皮托和A. 泽奇纳,《德国应用化学》,2000年,39卷,2138页],在该研究中通过EXAFS/XANES/红外光谱联用鉴定了[Cu(CO)₃]⁺配合物的结构。已观察到从[Cu(CO)₂]⁺配合物转变为[Cu(CO)₃]⁺配合物时,Cu - C距离增加了0.05 Å,这是在铜的第一配位层中容纳第三个CO配体所需的局部重排。EXAFS确定Cu - C - O键角在误差范围内呈线性(170 ± 10°),而红外光谱和XANES表明沸石内的[Cu(CO)₂]⁺配合物具有C₂v对称性。实验得到的部分与用先进量子力学方法获得的值吻合良好。

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