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固载硼中心杂蝎型配体:杂环复分解反应和配位化学。

Immobilized boron-centered heteroscorpionates: heterocycle metathesis and coordination chemistry.

机构信息

Department of Chemistry, University of Central Arkansas, Conway, Arkansas 72035, USA.

出版信息

Inorg Chem. 2011 Mar 7;50(5):1931-41. doi: 10.1021/ic102392x. Epub 2010 Dec 28.

Abstract

The preparation of a resin-supported boron-scorpionate ligand and its nickel(II) coordination complexes are reported. The supported ligand is prepared as its potassium salt, making it a general reagent suitable for chelation of any transition metal ion. Resin-immobilized benzotriazole (Bead-btz) reacted cleanly with KTp* (Tp* = hydrotris(3,5-dimethylpyrazolyl)borate) by heterocycle metathesis in warm dimethylformamide (DMF) to yield bead-Tp'K, {resin-btz(H)B(pz*)(2)}K. Significantly, bead-Tp'K readily bound nickel(II) from simple salts with minimal leaching of the nickel ion. Bead-Tp'NiNO(3) reacts further with cysteine thiolate (ethyl ester), imparting the deep green color to the beads characteristic of a Tp(R)NiCysEt coordination sphere. Bead-Tp'NiCysEt exhibited an oxygen sensitivity similar to TpNiCysEt in solution (Inorg. Chem. 1999, p 5690) and also independently verified for a selenocystamine analogue, TpNiSeCysAm. Addition of fresh cysteine thiolate ethyl ester to oxidized bead-Tp'NiCysEt reproduced the original green color. Heterocycle metathesis was also used to prepare KTp' as a white solid. Reaction with nickel(II) gave (Tp')(2)Ni, separable into two different isomers. The air-sensitive molybdenum(0) complex, [PPh(4)][Tp'Mo(CO)(3)], was also prepared and the C(s) complex symmetry demonstrated by infrared and (13)C NMR spectroscopies. Immobilized TpmMo(CO)(3) was prepared from the previously reported resin-supported tris(pyrazolyl)methane. In contrast to its weak coordination of nickel(II) (Inorg. Chem. 2009, p 3535), bead-Tpm proved a strong chelate toward this second row metal. The supported scorpionates described here should find use in studies of selective metal-protein binding, metalloprotein modeling, and heterogeneous catalysis, and render such scorpionate applications amenable to combinatorial methods.

摘要

报道了一种树脂负载的硼-冠醚配体及其镍(II)配合物的制备方法。负载的配体被制备成其钾盐,使其成为一种适合螯合任何过渡金属离子的通用试剂。树脂固载的苯并三唑(Bead-btz)在温暖的二甲基甲酰胺(DMF)中通过杂环交换反应与 KTp*(Tp*=三(3,5-二甲基吡唑基)硼酸盐)反应,生成 Bead-Tp'K,{resin-btz(H)B(pz*)(2)}K。值得注意的是,Bead-Tp'K 可以从简单盐中轻松地结合镍(II),而几乎没有镍离子的浸出。Bead-Tp'NiNO(3)进一步与半胱氨酸硫醇(乙酯)反应,使珠子呈现出深绿色,这是 Tp(R)NiCysEt 配位球的特征。Bead-Tp'NiCysEt 在溶液中表现出与 TpNiCysEt 相似的氧敏感性(Inorg.Chem.1999,p5690),并通过对硒代半胱氨酸类似物 TpNiSeCysAm 进行了独立验证。向氧化的 Bead-Tp'NiCysEt 中加入新鲜的半胱氨酸硫醇乙酯,可恢复原始的绿色。杂环交换反应也用于制备白色固体 KTp'。与镍(II)反应得到(Tp')(2)Ni,可以分离成两种不同的异构体。空气敏感的钼(0)配合物[PPh(4)][Tp'Mo(CO)(3)]也被制备出来,并通过红外和(13)C NMR 光谱证明了 C(s)配合物的对称性。从之前报道的树脂负载的三(吡唑基)甲烷制备了固载的 TpmMo(CO)(3)。与它对镍(II)的弱配位(Inorg.Chem.2009,p3535)形成鲜明对比的是,Bead-Tpm 对这种第二行金属表现出强烈的螯合作用。这里描述的固载的冠醚配体有望用于选择性金属-蛋白质结合、金属蛋白模型和多相催化的研究,并使这些冠醚应用能够适应组合方法。

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