Ruthenium complexes of pyridine oxime and azoimine ligands: Syntheses, crystallography, electrochemical and catalytic properties
作者:Mousa Al-Noaimi、Firas F. Awwadi、Ayman Hammoudeh、Sally Abu-Hmaid、Raja Bader
DOI:10.1016/j.ica.2018.08.025
日期:2018.11
Abstract Five mononuclear ruthenium complexes of the type trans -[RuCl 2 (Azo)(Py-C(R)N = OH)] ( C1–C5 ) Azo = C 6 H 5 N = NC(COCH 3 ) = NC 6 H 4 X, R = CH 3 , X = H ( C1 ), Br ( C 2 ), CH 3 ( C3 ), F ( C4 ); R = H, X = CH 3 ( C5 )} have been synthesised and characterized by spectroscopic (IR, UV-Vis, and NMR) and electrochemical (cyclic voltammetry) techniques. In addition, C2 complex has been further characterized
摘要反式-[RuCl 2(Azo)(Py-C(R)N = OH)](C1-C5)类型的五种单核钌配合物Azo = C 6 H 5 N = NC(COCH 3)= NC 6 H 4 X,R = CH 3,X = H(C1),Br(C 2),CH 3(C3),F(C4);R = H,X = CH 3(C5)}已经合成并通过光谱学(IR,UV-Vis和NMR)和电化学(循环伏安)技术表征。另外,C 2配合物还通过单晶X射线衍射表征。还测试了配合物(C1-C3)在苯乙酮的液相加氢中的催化活性。乙腈中C2的电子吸收光谱已通过时变密度泛函理论进行了建模。