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对含有带有定位胺基碱的二膦配体的镍配合物催化氢气氧化反应的机理见解。

Mechanistic insights into catalytic h(2) oxidation by ni complexes containing a diphosphine ligand with a positioned amine base.

作者信息

Yang Jenny Y, Bullock R Morris, Shaw Wendy J, Twamley Brendan, Fraze Kendra, DuBois M Rakowski, DuBois Daniel L

机构信息

Chemical and Materials Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Am Chem Soc. 2009 Apr 29;131(16):5935-45. doi: 10.1021/ja900483x.

Abstract

The mixed-ligand complex Ni(dppp)(P(Ph)(2)N(Bz)(2))(2), 3, (where P(Ph)(2)N(Bz)(2) is 1,5-dibenzyl-3,7-diphenyl-1,5-diaza-3,7-diphosphacyclooctane and dppp is 1,3-bis(diphenylphosphino)propane) has been synthesized. Treatment of this complex with H(2) and triethylamine results in the formation of the Ni(0) complex, Ni(dppp)(P(Ph)(2)N(Bz)(2)), 4, whose structure has been determined by a single-crystal X-ray diffraction study. Heterolytic cleavage of H(2) by 3 at room temperature forms HNi(dppp)(P(Ph)(2)N(Bz)(mu-H)N(Bz))(2), 5a, in which one proton interacts with two nitrogen atoms of the cyclic diphosphine ligand and a hydride ligand is bound to nickel. Two intermediates are observed for this reaction using low-temperature NMR spectroscopy. One species is a dihydride, (H)(2)Ni(dppp)(P(Ph)(2)N(Bz)(2))(2), 5b, and the other is Ni(dppp)(P(Ph)(2)N(Bz)(2)H(2))(2), 5c, in which both protons are bound to the N atoms in an endo geometry with respect to nickel. These two species interconvert via a rapid and reversible intramolecular proton exchange between nickel and the nitrogen atoms of the diphosphine ligand. Complex 3 is a catalyst for the electrochemical oxidation of H(2) in the presence of base, and new insights into the mechanism derived from low-temperature NMR and thermodynamic studies are presented. A comparison of the rate and thermodynamics of H(2) addition for this complex to related catalysts studied previously indicates that for Ni(II) complexes containing two diphosphine ligands, the activation of H(2) is favored by the presence of two positioned pendant bases.

摘要

已合成混合配体配合物Ni(dppp)(P(Ph)(2)N(Bz)(2))(2),即3(其中P(Ph)(2)N(Bz)(2)为1,5 - 二苄基 - 3,7 - 二苯基 - 1,5 - 二氮杂 - 3,7 - 二磷杂环辛烷,dppp为1,3 - 双(二苯基膦基)丙烷)。用H(2)和三乙胺处理该配合物会生成Ni(0)配合物Ni(dppp)(P(Ph)(2)N(Bz)(2)),即4,其结构已通过单晶X射线衍射研究确定。在室温下,3对H(2)进行异裂裂解形成HNi(dppp)(P(Ph)(2)N(Bz)(μ - H)N(Bz))(2),即5a,其中一个质子与环状二膦配体的两个氮原子相互作用,一个氢化物配体与镍相连。使用低温核磁共振光谱法观察到该反应有两种中间体。一种是二氢化物(H)(2)Ni(dppp)(P(Ph)(2)N(Bz)(2))(2),即5b,另一种是Ni(dppp)(P(Ph)(2)N(Bz)(2)H(2))(2),即5c,其中两个质子以内式构型与相对于镍的N原子相连。这两种物质通过镍与二膦配体的氮原子之间快速且可逆的分子内质子交换相互转化。配合物3是在碱存在下H(2)电化学氧化的催化剂,并给出了来自低温核磁共振和热力学研究的关于该机理的新见解。将该配合物与先前研究的相关催化剂的H(2)加成速率和热力学进行比较表明,对于含有两个二膦配体的Ni(II)配合物,两个定位的侧基有利于H(2)的活化。

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