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利用稳定的三价铀烷基配合物对二氧化碳和二硫化碳进行功能化。

Functionalization of carbon dioxide and carbon disulfide using a stable uranium(III) alkyl complex.

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Am Chem Soc. 2011 Apr 6;133(13):4948-54. doi: 10.1021/ja110158s. Epub 2011 Mar 8.

Abstract

A rare uranium(III) alkyl complex, Tp*(2)U(CH(2)Ph) (2) (Tp* = hydrotris(3,5-dimethylpyrazolyl)borate), was synthesized by salt metathesis from Tp*(2)UI (1) and KCH(2)Ph and fully characterized using (1)H NMR, infrared, and electronic absorption spectroscopies as well as X-ray crystallography. This complex has a uranium-carbon distance of 2.57(2) Å, which is comparable to other uranium alkyls reported. Treating this compound with either carbon dioxide or carbon disulfide results in insertion into the uranium-carbon bond to generate Tp*(2)U(κ(2)-O(2)CCH(2)Ph) (3) and Tp*(2)U(SC(S)CH(2)Ph) (4), respectively. These species, characterized spectroscopically and by X-ray crystallography, feature new carboxylate and dithiocarboxylate ligands. Analysis by electronic absorption spectroscopy supports the trivalent oxidation state of the uranium center in both of these derivatives. Addition of trimethylsilylhalides (Me(3)SiX; X = Cl, I) to 3 results in the release of the free silyl ester, Me(3)SiOC(O)CH(2)Ph, forming the initial uranium monohalide species, Tp*(2)UX, which can then be used over multiple cycles for the functionalization of carbon dioxide.

摘要

一种罕见的铀(III)烷基配合物,Tp*(2)U(CH(2)Ph) (2)(Tp*=氢三(3,5-二甲基吡唑基)硼酸盐),通过盐交换反应从 Tp*(2)UI(1)和 KCH(2)Ph 合成,并通过(1)H NMR、红外和电子吸收光谱以及 X 射线晶体学进行了充分表征。该配合物具有 2.57(2)Å 的铀-碳距离,与其他报道的铀烷基相当。用二氧化碳或二硫化碳处理该化合物,导致其插入铀-碳键中,分别生成 Tp*(2)U(κ(2)-O(2)CCH(2)Ph)(3)和 Tp*(2)U(SC(S)CH(2)Ph)(4)。这些通过光谱和 X 射线晶体学表征的物种具有新的羧酸盐和二硫代羧酸盐配体。电子吸收光谱分析支持这两种衍生物中铀中心的三价氧化态。向 3 中加入三甲基卤化物(Me(3)SiX;X=Cl,I)会释放出游离的硅酯 Me(3)SiOC(O)CH(2)Ph,形成最初的铀单卤化物物种 Tp*(2)UX,然后可以在多个循环中用于二氧化碳的功能化。

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