N2 hydrogenation promoted by a side-on bound hafnocene dinitrogen complex

被引:63
作者
Bernskoetter, WH [1 ]
Olmos, AV [1 ]
Lobkovsky, E [1 ]
Chirik, PJ [1 ]
机构
[1] Cornell Univ, Baker Lab, Dept Chem & Chem Biol, Ithaca, NY 14853 USA
关键词
D O I
10.1021/om0509037
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Reduction of the hafnocene diiodide (eta(5)-C5Me4H)(2)HfI2 with excess sodium amalgam under 1 atm of dinitrogen yielded the hafnocene dinitrogen complex [(eta(5)-C5Me4H)(2)Hf](2)(mu(2),eta(2):eta(2)-N-2). X-ray diffraction has established a strongly activated, side-on bound, bridging N-2 ligand with an N-N bond length of 1.423(11) angstrom. Exposure of the dinitrogen compound to 1 atm of dihydrogen at 23 degrees C resulted in rapid hydrogenation of the N-2 ligand, affording the hydrido hafnocene diazenido complex [(eta(5)-C5Me4H)(2)HfH](2)(mu(2),eta(2):eta(2)-N2H2). Confirmation of N-2 hydrogenation has been provided by NMR and IR spectroscopic studies and X-ray diffraction. Pseudo-first-order observed rate constants for H-2 addition have been measured by monitoring the disappearance of a principally LMCT band centered at 886 nm [(eta(5)-C5Me4H)(2)Hf](2)(mu(2),eta(2):eta(2)-N-2) as a function of time. The hafnocene complex hydrogenates dinitrogen approximately 4 times faster than the corresponding zirconocene compound. Divergent chemistry from zirconium is observed upon thermolysis of [(eta(5)-C5Me4H)(2)HfH](2)(mu(2),eta(2):eta(2)-N2H2), which results in cyclopentadienyl methyl group cyclometalation rather than N-N bond scission.
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页码:1021 / 1027
页数:7
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