Nell Bryan P, Swor Charles D, Henle E Adrian, Zakharov Lev N, Rinehart N Ian, Nathan Aditya, Tyler David R
Department of Chemistry and Biochemistry, University of Oregon, Eugene, OR 97403, USA.
Dalton Trans. 2016 May 10;45(19):8253-64. doi: 10.1039/c6dt00758a.
The synthesis of phosphine macrocycles is a relatively underdeveloped area and no standard synthetic routes have emerged. Accordingly, two general synthetic routes to tetradentate phosphine macrocycles were investigated. Both routes use Cu(i) ions as template ions because, unlike other metals such as Pd(ii) and Pt(ii), the Cu(i) ions can be removed from the macrocyclic complex without degrading the macrocycle ligand. The first route involves the coupling of two bidentate secondary phosphines bonded to Cu(i) using 1,3-dibromopropane or 1,4-dibromobutane. Using this route, tetradentate phosphine macrocycles with either -(CH2)3OCH3 or Ph groups bonded to the P atoms were synthesized. Macrocycle phosphines containing the -(CH2)3OCH3 groups were investigated for their potential water-solubility, but experiments showed these phosphines were not water soluble. The second synthetic route involved the alkylation of an open-chain, mixed tertiary-secondary, tetradentate phosphine coordinated to Cu(i). Following formation of the macrocyclic ligand, the Cu(i) template was removed by reaction with aqueous KCN to yield the free macrocyclic phosphine. This route was demonstrated for the preparation of the macrocyclic phosphine ligand 1,5,9,13-tetraphenyl-1,5,9,13-tetraphosphacycloheptadecane. Following demetallation, this macrocyclic ligand was coordinated to Fe(ii) and Co(ii) to form the corresponding macrocyclic phosphine complexes.
膦大环化合物的合成是一个相对欠发达的领域,尚未出现标准的合成路线。因此,研究了两种合成四齿膦大环化合物的通用路线。这两种路线都使用Cu(i)离子作为模板离子,因为与Pd(ii)和Pt(ii)等其他金属不同,Cu(i)离子可以从大环配合物中除去而不降解大环配体。第一条路线涉及使用1,3 - 二溴丙烷或1,4 - 二溴丁烷将两个与Cu(i)键合的双齿仲膦进行偶联。使用这条路线,合成了P原子上连接有-(CH2)3OCH3或Ph基团的四齿膦大环化合物。研究了含有-(CH2)3OCH3基团的大环膦的潜在水溶性,但实验表明这些膦不溶于水。第二条合成路线涉及对与Cu(i)配位的开链、叔 - 仲混合四齿膦进行烷基化。形成大环配体后,通过与KCN水溶液反应除去Cu(i)模板,得到游离的大环膦。这条路线被用于制备大环膦配体1,5,9,13 - 四苯基 - 1,5,9,13 - 四磷杂环十七烷。脱金属后,该大环配体与Fe(ii)和Co(ii)配位形成相应的大环膦配合物。