Ramirez Bianca L, Sharma Prachi, Eisenhart Reed J, Gagliardi Laura, Lu Connie C
Department of Chemistry , University of Minnesota , Minneapolis , Minnesota 55455-0431 , USA . Email:
Minnesota Supercomputing Institute , Chemical Theory Center , University of Minnesota , Minneapolis , Minnesota 55455-0431 , USA.
Chem Sci. 2019 Feb 4;10(11):3375-3384. doi: 10.1039/c8sc04712j. eCollection 2019 Mar 21.
We present three heterobimetallic complexes containing an isostructural nickel center and a lutetium ion in varying coordination environments. The bidentate and nonadentate ligands were used to prepare the Lu metalloligands, Lu(PrPCHNPh) () and Lu{(PrPCHNAr)tacn} (), respectively. Reaction of Ni(COD) (where COD is 1,5-cyclooctadiene) and afforded NiLu(PrPCHNPh) (), with a Lu coordination number (CN) of 4 and a Ni-Lu distance, (Ni-Lu), of 2.4644(2) Å. Complex can further bind THF to form , increasing both the Lu CN to 5 and (Ni-Lu) to 2.5989(4) Å. On the other hand, incorporation of Ni(0) into provides NiLu{(PrPCHNAr)tacn} (), in which the Lu coordination environment is more saturated (CN = 6), and the (Ni-Lu) is substantially elongated at 2.9771(5) Å. Cyclic voltammetry of the three Ni-Lu complexes shows an overall ∼410 mV shift in the Ni(0/I) redox couple, suggesting tunability of the Ni electronics across the series. Computational studies reveal polarized bonding interactions between the Ni 3d (major) and the Lu 5d (minor) orbitals, where the percentage of Lu character increases in the order: (6.0% Lu 5d ) < (8.5%) < (9.3%). All three Ni-Lu complexes bind H at low temperatures (-30 to -80 °C) and are competent catalysts for styrene hydrogenation. Complex outperforms with a four-fold faster rate. Additionally, adding increasing THF equivalents to , which would favor build-up of , decreases the rate. We propose that altering the coordination sphere of the Lu support can influence the resulting properties and catalytic activity of the active Ni(0) metal center.
我们展示了三种异双金属配合物,它们含有一个同结构的镍中心和处于不同配位环境中的镥离子。分别使用双齿和九齿配体来制备镥金属配体,即Lu(PrPCHNPh) () 和Lu{(PrPCHNAr)tacn} ()。Ni(COD)(其中COD是1,5 - 环辛二烯)与 反应得到NiLu(PrPCHNPh) (),其镥配位数(CN)为4,镍 - 镥距离(Ni - Lu)为2.4644(2) Å。配合物 可以进一步结合四氢呋喃形成 ,使镥的配位数增加到5,镍 - 镥距离增加到2.5989(4) Å。另一方面,将Ni(0)引入 得到NiLu{(PrPCHNAr)tacn} (),其中镥的配位环境更饱和(CN = 6),镍 - 镥距离显著拉长至2.9771(5) Å。这三种镍 - 镥配合物的循环伏安法显示,镍(0/I)氧化还原对整体有~410 mV的位移,表明该系列中镍的电子性质具有可调性。计算研究揭示了镍的3d (主要)和镥的5d (次要)轨道之间的极化键相互作用,其中镥特征的百分比按以下顺序增加: (6.0% 镥5d )< (8.5%)< (9.3%)。所有三种镍 - 镥配合物在低温(-30至-80 °C)下都能结合氢气,并且是苯乙烯氢化反应的有效催化剂。配合物 的表现优于 ,反应速率快四倍。此外,向 中加入越来越多的四氢呋喃当量,这有利于 的形成,但会降低反应速率。我们提出,改变镥载体的配位球可以影响活性镍(0)金属中心的最终性质和催化活性。