Triptycene-Based Chiral and<i>meso</i>-N-Heterocyclic Carbene Ligands and Metal Complexes
作者:Roman Savka、Marvin Bergmann、Yuki Kanai、Sabine Foro、Herbert Plenio
DOI:10.1002/chem.201601474
日期:2016.7.4
metal complexes [(NHC)MX] (M=Cu, Ag, Au; X=Cl, Br) and [(NHC)MCl(cod)] (M=Rh, Ir; cod=1,5‐cyclooctadiene) in good yields. The new azolium salts and metal complexes suffer from limited solubility in common organic solvents. Consequently, the introduction of solubilizing groups (such as 2‐ethylhexyl or 1‐hexyl by O‐alkylation) is essential to render the complexes soluble. The triptycene unit infers special
基于1-氨基-4-羟基三茂碳烯,从乙二醛衍生的二亚胺合成了新的饱和和不饱和的三茂碳NHC(N杂环卡宾)配体。将各自的羧化物转化为金属络合物[(NHC)MX](M = Cu,Ag,Au; X = Cl,Br)和[(NHC)MCl(cod)](M = Rh,Ir; cod = 1, 5-环辛二烯)的收率很高。新的偶氮盐和金属络合物在普通有机溶剂中的溶解度有限。因此,引入增溶基团(例如通过O-烷基化作用的2-乙基己基或1-己基)对于使复合物可溶至关重要。三并茂单元可对金属络合物产生特殊的空间位阻特性,从而可以对靠近金属中心的选定区域进行空间位阻。接下来,手性和介观制备了基于三茂基的N杂环卡宾配体。合成手性配体的关键步骤是用(1 S,2 S)-1,2-二苯基-1,2-二氨基乙烷将1-溴-4-丁氧基三茂烯进行布赫瓦尔德-哈特维格胺的胺化反应,然后环化与HC(OEt)3形成的唑啉鎓盐。与内消旋-1,2-二苯基-1