Ingleson Michael J, Fullmer Benjamin C, Buschhorn Drew T, Fan Hongjun, Pink Maren, Huffman John C, Caulton Kenneth G
Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.
Inorg Chem. 2008 Jan 21;47(2):407-9. doi: 10.1021/ic7023764. Epub 2007 Dec 23.
Reduction of (PNP)MCl [PNP = ((t)Bu(2)PCH(2)SiMe(2))(2)N] with Mg gives three-coordinate, T-shaped (PNP)M for M = Fe(S = 3/2) and Ni. Their reactivity was tested toward CO; Ni binds one CO, but only reversibly (i.e., CO is completely lost in vacuum), and has a CO stretching frequency showing effective back-donation by NiI. The structure of (PNP)Ni(CO) is intermediate between planar and tetrahedral, in contrast to the planar d8 analogue, (PNP)Co(CO). This structural reorganization on carbonylation changes the singly occupied molecular orbital from having negligible phosphorus character [no P hyperfine structure in the electron paramagnetic resonance (EPR) spectrum of (PNP)Ni] to having enough P character to have a triplet structure in the EPR spectrum of the CO. The presence of one fewer electron in (PNP)Fe (vs the Co analogue) leads to binding of two CO, and (PNP)Fe(CO)(2) is characterized as a spin doublet with square-pyramidal structure. Density functional theory calculations strengthen the understanding of the structural and spectroscopic changes along this dn series (n = 7-9).
用镁还原(PNP)MCl [PNP = ((t)Bu(2)PCH(2)SiMe(2))(2)N],对于M = Fe(S = 3/2)和Ni可得到三配位的T形(PNP)M。测试了它们与CO的反应活性;Ni能结合一个CO,但只是可逆地结合(即CO在真空中会完全失去),并且其CO伸缩频率显示出NiI有有效的反馈π键。与平面d8类似物(PNP)Co(CO)相比,(PNP)Ni(CO)的结构介于平面和四面体之间。羰基化时的这种结构重组将单占据分子轨道从磷特征可忽略不计((PNP)Ni的电子顺磁共振(EPR)谱中没有P超精细结构)转变为具有足够的P特征,从而在CO的EPR谱中呈现三重态结构。(PNP)Fe(相对于Co类似物)少一个电子导致其能结合两个CO,并且(PNP)Fe(CO)(2)被表征为具有四方锥结构的自旋 doublet。密度泛函理论计算加深了对沿这个dn系列(n = 7 - 9)的结构和光谱变化的理解。