Lu Zhengliang, Ladrak Tim, Roubeau Olivier, van der Toorn John, Teat Simon J, Massera Chiara, Gamez Patrick, Reedijk Jan
Leiden Institute of Chemistry, Leiden University, 2300 RA Leiden, The Netherlands.
Dalton Trans. 2009 May 14(18):3559-70. doi: 10.1039/b820554j. Epub 2009 Mar 24.
Three novel, bifunctional triazine-based ligands, namely , and , containing both a TEMPO and a bipyridine moiety have been synthesized. These bpy/TEMPO-based molecules have been used as catalyst precursors for the copper-catalyzed aerobic oxidation of alcohols to aldehydes and ketones, in the presence of tert-BuOK as co-catalyst. The complexes obtained in situ from ligands and with copper(II) bromide in a 2:1 acetonitrile/water mixture, selectively catalyze the aerobic oxidation of primary benzylic, allylic and aliphatic alcohols and secondary benzylic alcohols. The rate of oxidation achieved using compound is slightly lower than that of compound . Surprisingly, the [copper/] system is not an efficient catalyst. The distinct catalytic behaviour of the three complexes is most likely due to the different position of the anchoring point of the bipyridine moiety on the triazine core, thereby inducing dissimilar steric effects. The effect of the substitution position of the bipyridine unit is reflected by the Vis-NIR spectra of the corresponding copper(II) complexes, which show similar LMCT and d-d transitions for and , while these absorption bands are significantly red-shifted in the case of the [Cu(II)/] complex. These differences are indicative of different coordination environments around the Cu(II) centres in those compounds.Single-crystal X-ray diffraction studies reveal that Cu(2)(4-bpyT)(2)Br(4)(7) () and Cu(2)(5-bpyT)(2)Br(4)(2) () are comparable dinuclear compounds with pentacoordinated copper ions, in a distorted square-pyramidal geometry in and in a distorted trigonal-bipyramidal geometry in . These two coordination geometries are also reflected by their slightly different Vis-NIR results. Cu(6-bpyT)Br(2) () is mononuclear, with the Cu(II) ion in a distorted tetrahedral geometry, suggesting a relationship with its catalytic inactivity.
已经合成了三种新型的、基于双功能三嗪的配体,即 、 和 ,它们同时含有一个TEMPO和一个联吡啶部分。这些基于bpy/TEMPO的分子已被用作铜催化醇有氧氧化为醛和酮的催化剂前体,叔丁醇钾作为助催化剂。在乙腈/水混合比例为2:1的体系中,配体与溴化铜(II)原位生成的配合物,能选择性地催化伯苄醇、烯丙醇、脂肪醇以及仲苄醇的有氧氧化反应。使用化合物 实现的氧化速率略低于化合物 的氧化速率。令人惊讶的是,[铜/]体系不是一种有效的催化剂。这三种配合物不同的催化行为很可能是由于联吡啶部分在三嗪核上的锚定位置不同,从而产生了不同的空间效应。联吡啶单元取代位置的影响通过相应铜(II)配合物的可见-近红外光谱得以体现,其中 和 的光谱显示出相似的配体到金属电荷转移(LMCT)和d-d跃迁,而在[Cu(II)/]配合物的情况下,这些吸收带明显红移。这些差异表明这些化合物中Cu(II)中心周围的配位环境不同。单晶X射线衍射研究表明,Cu(2)(4-bpyT)(2)Br(4)(7) ( )和Cu(2)(5-bpyT)(2)Br(4)(2) ( )是具有五配位铜离子的类似双核化合物, 中为扭曲的四方锥几何构型, 中为扭曲的三角双锥几何构型。这两种配位几何构型也反映在它们略有不同的可见-近红外结果中。Cu(6-bpyT)Br(2) ( )是单核的,Cu(II)离子处于扭曲的四面体几何构型,这表明了其与催化无活性之间的关系。