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使用具有定位质子中继体的镍基分子催化剂进行氢氧化和氢生产。

Hydrogen oxidation and production using nickel-based molecular catalysts with positioned proton relays.

作者信息

Wilson Aaron D, Newell Rachel H, McNevin Michael J, Muckerman James T, Rakowski DuBois M, DuBois Daniel L

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO 80309, USA.

出版信息

J Am Chem Soc. 2006 Jan 11;128(1):358-66. doi: 10.1021/ja056442y.

Abstract

Highly efficient electrocatalysts for both hydrogen evolution and hydrogen oxidation have been designed, synthesized, and characterized. The catalysts in their resting states are air-stable, mononuclear nickel(II) complexes containing cyclic diphosphine ligands with nitrogen bases incorporated into the ligand backbone. X-ray diffraction studies have established that the cation of Ni(P(Ph)(2)N(Ph)(2))(2)(CH(3)CN)(2), 6a, (where P(Ph)(2)N(Ph)(2) is 1,3,5,7-tetraphenyl-1,5-diaza-3,7-diphosphacyclooctane) is a trigonal bipyramid with bonds to four phosphorus atoms of the two bidentate diphosphine ligands and the nitrogen atom of an acetonitrile molecule. Two of the six-membered rings formed by the diphosphine ligands and Ni have boat conformations with an average Ni- - -N distance to the two pendant bases of 3.4 A. The cation of Ni(P(Cy)(2)N(Bz)(2))(2)(2), 6b, (where Cy = cyclohexyl and Bz = benzyl) is a distorted square planar complex. For 6b, all four six-membered rings formed upon coordination of the diphosphine ligands to the metal are in the boat form. In this case, the average Ni- - -N distance to the pendant base is 3.3 A. Complex 6a is an electrocatalyst for hydrogen production in acidic acetonitrile solutions, and compound 6b is an electrocatalyst for hydrogen oxidation in basic acetonitrile solutions. It is demonstrated that the high catalytic rates observed with these complexes are a result of the positioning of the nitrogen base so that it plays an important role in the formation and cleavage of the H-H bond.

摘要

已设计、合成并表征了用于析氢和氢氧化的高效电催化剂。处于静止状态的催化剂在空气中稳定,是单核镍(II)配合物,含有环状二膦配体,且氮碱并入配体主链中。X射线衍射研究表明,Ni(P(Ph)(2)N(Ph)(2))(2)(CH(3)CN)(2)(6a)(其中P(Ph)(2)N(Ph)(2)是1,3,5,7-四苯基-1,5-二氮杂-3,7-二磷杂环辛烷)的阳离子是一个三角双锥体,与两个双齿二膦配体的四个磷原子以及乙腈分子的氮原子相连。由二膦配体和镍形成的六个六元环中的两个具有船式构象,与两个侧基的平均Ni---N距离为3.4 Å。Ni(P(Cy)(2)N(Bz)(2))(2)(2)(6b)(其中Cy = 环己基,Bz = 苄基)的阳离子是一个扭曲的平面正方形配合物。对于6b,二膦配体与金属配位形成的所有四个六元环均为船式。在这种情况下,与侧基的平均Ni---N距离为3.3 Å。配合物6a是酸性乙腈溶液中制氢的电催化剂,化合物6b是碱性乙腈溶液中氢氧化的电催化剂。结果表明,这些配合物观察到的高催化速率是氮碱定位的结果,因此它在H-H键的形成和断裂中起重要作用。

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