Mersmann Klaus, Hauser Andreas, Lehnert Nicolai, Tuczek Felix
Institut für Anorganische Chemie, Christian Albrechts Universität, D-24098 Kiel, Germany.
Inorg Chem. 2006 Jun 26;45(13):5044-56. doi: 10.1021/ic060141n.
A series of molybdenum and tungsten nitrido, [M(N)(X)(diphos)2], and imido complexes, [M(NH)(X)(diphos)2)]Y, (M = Mo, W) with diphosphine coligands (diphos = dppe/depe), various trans ligands (X = N3-, Cl-, NCCH3) and different counterions (Y-= Cl-, BPh4-) is investigated. These compounds are studied by infrared and Raman spectroscopies; they are also studied with isotope-substitution and optical-absorption, as well as emission, spectroscopies. In the nitrido complexes with trans-azido and -chloro coligands, the metal-N stretch is found at about 980 cm(-1); upon protonation, it is lowered to about 920 cm(-1). The 1A1 --> 1E (n --> pi) electronic transition is observed for [Mo(N)(N3)(depe)2] at 398 nm and shows a progression in the metal-N stretch of 810 cm(-1). The corresponding 3E --> 1A (pi --> n) emission band is observed at 542 nm, exhibiting a progression in the metal-N stretch of 980 cm(-1). In the imido system [Mo(NH)(N3)(depe)2]BPh4, the n --> pi transition is shifted to lower energy (518 nm) and markedly decreases in intensity. In the trans-nitrile complex [Mo(N)(NCCH3)(dppe)2]BPh4, the metal-N(nitrido) stretching frequency increases to 1016 cm(-1). The n --> pi transition now is found at 450 nm, shifting to 525 nm upon protonation. Most importantly, the reduction of this nitrido trans-nitrile complex is drastically facilitated compared to its counterparts with anionic trans-ligands (Epred = -1.5 V vs Fc+/Fc). On the other hand, the basicity of the nitrido group is decreased (pKa{Mo(NH)(NCCH3)(dppe)22} = 5). The implications of these findings with respect to the Chatt cycle are discussed.
研究了一系列含有双膦配体(双膦=dppe/depe)、各种反式配体(X = N3-、Cl-、NCCH3)和不同抗衡离子(Y- = Cl-、BPh4-)的钼和钨的氮化物[M(N)(X)(diphos)2]以及亚胺配合物[M(NH)(X)(diphos)2]Y(M = Mo、W)。通过红外光谱和拉曼光谱对这些化合物进行了研究;还采用了同位素取代、光吸收以及发射光谱对它们进行研究。在含有反式叠氮基和氯配体的氮化物配合物中,金属 - N伸缩振动出现在约980 cm(-1)处;质子化后,该振动频率降低至约920 cm(-1)。对于[Mo(N)(N3)(depe)2],在398 nm处观察到1A1→1E(n→π)电子跃迁,并且在金属 - N伸缩振动处显示出810 cm(-1)的振动进展。在542 nm处观察到相应的3E→1A(π→n)发射带,在金属 - N伸缩振动处表现出980 cm(-1)的振动进展。在亚胺体系[Mo(NH)(N3)(depe)2]BPh4中,n→π跃迁移向较低能量(518 nm)且强度显著降低。在反式腈配合物[Mo(N)(NCCH3)(dppe)2]BPh4中,金属 - N(氮化物)伸缩频率增加到1016 cm(-1)。n→π跃迁现在出现在450 nm处,质子化后移至525 nm。最重要的是,与具有阴离子反式配体的类似物相比,这种氮化物反式腈配合物的还原反应得到了极大的促进(相对于Fc+/Fc,Epred = -1.5 V)。另一方面,氮化物基团的碱性降低(pKa{Mo(NH)(NCCH3)(dppe)22} = 5)。讨论了这些发现对查特循环的影响。