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氧化铝负载双(烯丙基)铱配合物的光谱特性:位阻隔离、反应性和分解研究。

Spectroscopic characterization of alumina-supported bis(allyl)iridium complexes: site-isolation, reactivity, and decomposition studies.

机构信息

Chemistry Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Inorg Chem. 2010 Mar 1;49(5):2247-58. doi: 10.1021/ic9021036.

Abstract

The covalent attachment of tris(allyl)iridium to partially dehydroxylated gamma-alumina is found to proceed via surface hydroxyl group protonation of one allyl ligand to form an immobilized bis(allyl)iridium moiety, (=AlO)Ir(allyl)(2), as characterized by CP-MAS (13)C NMR, inductively coupled plasma-mass spectrometry, and Ir L(3) edge X-ray absorption spectroscopy. Extended X-ray absorption fine-structure (EXAFS) measurements taken on unsupported Ir(allyl)(3) and several associated tertiary phosphine addition complexes suggest that the eta(3)-allyl ligands generally account for an Ir-C coordination number of 2 rather than 3, with an average Ir-C distance of 2.16 A. Using this knowledge, combined EXAFS and X-ray absorption near-edge structure studies reveal that a small amount of Ir(0) is also formed upon reaction of Ir(allyl)(3) with the surface. It was found that the addition of either 2,6-dimethylphenyl isocyanide or carbon monoxide to the supported complex allows spectroscopic identification of the supported bis(allyl)iridium complexes, (=AlO)Ir(allyl)(2)(CNAr) [Ar = 2,6-(CH(3))(2)C(6)H(4)] and (=AlO)Ir(allyl)(2)(CO)(2), respectively. Although samples of the supported bis(allyl)iridium complex are active for the dehydrogenation of cyclohexane to benzene at temperatures between 180 and 220 degrees C, in situ temperature-programmed reaction XAFS and continuous-flow reactor studies suggest that Ir(0) nanoparticles, rather than a well-defined Ir(3+) complex, are responsible for the observed activity.

摘要

三(烯丙基)铱与部分脱羟γ-氧化铝的共价附着被发现是通过一个烯丙基配体的表面羟基质子化来进行的,形成固定的双(烯丙基)铱部分,(= AlO)Ir(allyl)(2),如 CP-MAS(13)C NMR、电感耦合等离子体质谱和 Ir L(3)边缘 X 射线吸收光谱所表征。对未负载的 Ir(allyl)(3)和几个相关的叔膦加成配合物进行的扩展 X 射线吸收精细结构(EXAFS)测量表明,η3-烯丙基配体通常占 Ir-C 配位数为 2,而不是 3,平均 Ir-C 距离为 2.16 A。利用这一知识,结合 EXAFS 和 X 射线吸收近边结构研究表明,Ir(allyl)(3)与表面反应时也会形成少量的 Ir(0)。研究发现,向负载的配合物中添加 2,6-二甲基苯基异氰化物或一氧化碳,可以分别对负载的双(烯丙基)铱配合物(= AlO)Ir(allyl)(2)(CNAr)[Ar = 2,6-(CH(3))(2)C(6)H(4)]和(= AlO)Ir(allyl)(2)(CO)(2)进行光谱鉴定。尽管负载的双(烯丙基)铱配合物在 180 到 220 摄氏度之间的环己烷脱氢为苯的温度下具有活性,但原位程序升温反应 XAFS 和连续流动反应器研究表明,Ir(0)纳米颗粒而不是明确的 Ir(3+)配合物是观察到的活性的原因。

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