Walther Dirk, Liesicke Stefan, Böttcher Lars, Fischer Reinald, Görls Helmar, Vaughan Gavin
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller-Universität Jena, D-07743 Jena, Germany.
Inorg Chem. 2003 Jan 27;42(2):625-32. doi: 10.1021/ic020534w.
2,3-Bis(diphenylphosphino)-1,4-diazadienes RN=C(PPh2)-C(PPh2)=NR (1a, R = 4-tolyl; 1b, R = 4-tert-butylphenyl; 1c, R = mesityl) were used as novel ligands for transition metals. The metal complexes [(1c)Mo(CO)4] (2a), [(1c)[Mo(CO)4]2] (2b), [(1a)Cu(Cl)(PPh3)] (3), and [(1b)[(NiBr2(THF))]2] (4) were characterized by elemental analysis, MS, and 31P[1H], 1H, and 13C NMR spectra (except the paramagnetic complex 4). Additionally, the molecular structure of the complexes in the solid state was determined by single-crystal X-ray diffraction. In 2a and 2b the chelating ligand coordinates via the N,P donor set, whereas in 3 the chelating ligand coordinates via the two P atoms. 4 contains a square-planar (P,P)NiBr2 moiety on the one side of the bridging ligand 1b. On the opposite side the 1,2-dimine unit bonds to another Ni center having octahedral geometry. The bulkier ligand 1c reacts to form the mononuclear compound 5. X-ray diffraction analysis of single crystals shows that 5 contains a quinoxaline derivative with a cyclohexa-1,3-diene ring in the peripheral position. Furthermore, it contains a bis(diphenylphosphino)-ethylene unit coordinating the NiBr2. This arrangement is the result of an intramolecular [4 + 2] cycloaddition between the 1,2-diimine unit (as diheterodiene) and the benzene ring of the 4-tolyl-N substituent (as dieneophile). The same type of ring-closing reaction followed by a tautomerization reaction to form the mononuclear compound 6 occurred by dissolution of the binuclear complex 4 in methanol. This reaction can be used as a simple method for the synthesis of novel 1,2-bis(diarylphosphanyl)ethylenes containing a quinoxaline backbone.
2,3-双(二苯基膦基)-1,4-二氮二烯RN=C(PPh₂)-C(PPh₂)=NR(1a,R = 4-甲苯基;1b,R = 4-叔丁基苯基;1c,R = 均三甲苯基)被用作过渡金属的新型配体。金属配合物[(1c)Mo(CO)₄](2a)、[(1c)[Mo(CO)₄]₂](2b)、[(1a)Cu(Cl)(PPh₃)](3)和[(1b)[(NiBr₂(THF))]₂](4)通过元素分析、质谱以及³¹P[¹H]、¹H和¹³C NMR光谱进行了表征(顺磁性配合物4除外)。此外,通过单晶X射线衍射确定了配合物在固态下的分子结构。在2a和2b中,螯合配体通过N、P供体基团配位,而在3中,螯合配体通过两个P原子配位。4在桥连配体1b的一侧含有一个平面正方形的(P,P)NiBr₂部分。在相对的一侧,1,2-二亚胺单元与另一个具有八面体几何构型的Ni中心键合。体积较大的配体1c反应形成单核化合物5。单晶的X射线衍射分析表明,5含有一种在周边位置带有环己-1,3-二烯环的喹喔啉衍生物。此外,它含有一个与NiBr₂配位的双(二苯基膦基)-乙烯单元。这种排列是1,2-二亚胺单元(作为双杂二烯)与4-甲苯基-N取代基的苯环(作为亲双烯体)之间分子内[4 + 2]环加成的结果。将双核配合物4溶解在甲醇中会发生相同类型的闭环反应,随后发生互变异构反应形成单核化合物6。该反应可作为合成含有喹喔啉主链的新型1,2-双(二芳基膦基)乙烯的简单方法。