Higashida Kosuke, Brüning Fabian, Tsujimoto Nagataka, Higashihara Kenya, Nagae Haruki, Togni Antonio, Mashima Kazushi
Department of Chemistry, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka, 560-8531, Japan.
Department of Chemistry and Applied Biosciences, Swiss Federal Institute of Technology, Vladimir-Prelog-Weg 2, 8093, Zürich, Switzerland.
Chemistry. 2020 Jul 17;26(40):8749-8759. doi: 10.1002/chem.202000542. Epub 2020 Jun 25.
We report full details of the synthesis and characterization of monohydride-dichloro rhodium(III) complexes bearing chiral diphosphine ligands, such as (S)-BINAP, (S)-DM-SEGPHOS, and (S)-DTBM-SEGPHOS, producing cationic triply chloride bridged dinuclear rhodium(III) complexes (1 a: (S)-BINAP; 1 b: (S)-DM-SEGPHOS) and a neutral mononuclear monohydride-dichloro rhodium(III) complex (1 c: (S)-DTBM-SEGPHOS) in high yield and high purity. Their solid state structure and solution behavior were determined by crystallographic studies as well as full spectral data, including DOSY NMR spectroscopy. Among these three complexes, 1 c has a rigid pocket surrounded by two chloride atoms bound to the rhodium atom together with one tBu group of (S)-DTBM-SEGPHOS for fitting to simple olefins without any coordinating functional groups. Complex 1 c exhibited superior catalytic activity and enantioselectivity for asymmetric hydrogenation of exo-olefins and olefinic substrates. The catalytic activity of 1 c was compared with that of well-demonstrated dihydride species derived in situ from rhodium(I) precursors such as [Rh(cod)Cl] and [Rh(cod) ] [BF ] upon mixing with (S)-DTBM-SEGPHOS under dihydrogen.
我们报道了带有手性二膦配体(如(S)-联萘二苯膦、(S)-DM-SEGPHOS和(S)-DTBM-SEGPHOS)的一氢二氯铑(III)配合物的合成及表征的详细信息,高产率、高纯度地制备出阳离子三氯化物桥连的双核铑(III)配合物(1 a:(S)-联萘二苯膦;1 b:(S)-DM-SEGPHOS)和中性单核一氢二氯铑(III)配合物(1 c:(S)-DTBM-SEGPHOS)。通过晶体学研究以及包括扩散排序核磁共振光谱在内的完整光谱数据确定了它们的固态结构和溶液行为。在这三种配合物中,1 c有一个刚性口袋,由与铑原子相连的两个氯原子以及(S)-DTBM-SEGPHOS的一个叔丁基基团包围,用于适配没有任何配位官能团的简单烯烃。配合物1 c对外消旋烯烃和烯烃底物的不对称氢化表现出优异的催化活性和对映选择性。将1 c的催化活性与在氢气存在下与(S)-DTBM-SEGPHOS混合时由铑(I)前体如[Rh(环辛二烯)Cl]和[Rh(环辛二烯)] [BF]原位衍生的已充分证明的二氢物种的催化活性进行了比较。