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三氨硼烷桥联双膦配合物中配体中心的硼仑反应性。

Ligand-Centered Borenium Reactivity in Triaminoborane-Bridged Diphosphine Complexes.

机构信息

Department of Chemistry , The University of Iowa , E331 Chemistry Building , Iowa City , Iowa 52242 , United States.

Churchill-Haines Laboratories, Department of Chemistry , The University of South Dakota , Vermillion , South Dakota 57069 , United States.

出版信息

Inorg Chem. 2018 Nov 5;57(21):13188-13200. doi: 10.1021/acs.inorgchem.8b01601. Epub 2018 Oct 12.

Abstract

Borenium ions (i.e., three-coordinate boron cations) are known to promote a wide variety of stoichiometric and catalytic reactions because of their high Lewis acidity. As demonstrated by the growing number of chemically reactive borane ligands, there is considerable interest in developing ligands with highly electrophilic boron sites that promote multisite reactivity in metal complexes. However, there are currently few examples of ligand-centered borenium ions, especially with ligands that form coordination complexes with a wide range of metals. Here we report borenium-like reactivity on a highly versatile diphosphine ligand. Treating (TBDPhos)NiCl (1) with strong Bronsted acids such as HBF·EtO, HOTf, or HNTf resulted in fluoride or chloride abstraction from BF or NiCl, respectively, to form trans N-H and B-X bonds on the ligand backbone. HCl addition to the bridgehead N-B bond is reversible, and the reactivity depends on the identity of the supporting counteranions, as observed when treating [(TBDPhos)NiCl]X, where X = NTf (3), OTf (4), or BAr (5), with HCl. The reaction of 4 with HNTf instead of HCl yielded NMR evidence of the latent borenium cation in solution and showed how poor nucleophiles such as triflate bind to the borenium ion in the solid state. Remarkably, replacing the chloride ligands in 1 with chelating and less-labile thiolates or catecholates, or changing the phosphorus substituents (phenyl to isopropyl), attenuates the reactivity on the ligand backbone. Density functional theory was used to quantify the reaction free energies, and the theoretical results corroborate the experimental observations. Given the broad utility of diphosphines in homogeneous catalysis and the known benefits of strong Lewis acid promotors in many catalytic reactions, we anticipate that the results will provide new opportunities for dual-site reactivity involving boron ligands and metals.

摘要

硼仑离子(即三配位的硼阳离子)由于其高路易斯酸度而被广泛用于促进各种化学计量和催化反应。正如越来越多的化学活性硼烷配体所证明的那样,人们对开发具有高亲电性硼位点的配体以促进金属配合物中的多位点反应非常感兴趣。然而,目前仅有少数配体中心硼仑离子的例子,特别是与能形成与各种金属配位配合物的配体。在这里,我们报告了一种高多功能膦配体的类似硼仑离子的反应性。用强布朗斯特酸(如 HBF·EtO、HOTf 或 HNTf)处理(TBDPhos)NiCl(1),分别从 BF 或 NiCl 中抽去氟化物或氯化物,在配体骨架上形成反式 N-H 和 B-X 键。桥接 N-B 键上的 HCl 加成是可逆的,反应性取决于支撑抗衡阴离子的身份,当用 HCl 处理 [(TBDPhos)NiCl]X(其中 X = NTf(3)、OTf(4)或 BAr(5))时观察到这一点。用 HNTf 代替 HCl 处理 4 得到了溶液中潜在的硼仑阳离子的 NMR 证据,并展示了像三氟甲磺酸根这样的差亲核试剂在固态下如何与硼仑离子结合。值得注意的是,用螯合且更不稳定的硫醇盐或儿茶酚盐代替 1 中的氯化物配体,或改变磷取代基(苯基变为异丙基),会减弱配体骨架上的反应性。密度泛函理论被用来量化反应的自由能,理论结果与实验观察相符。鉴于二膦在均相催化中的广泛应用以及许多催化反应中强路易斯酸促进剂的已知益处,我们预计这些结果将为涉及硼配体和金属的双位点反应提供新的机会。

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