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用于对映选择性分子内氢胺化/环化反应的C2对称双(恶唑啉)镧系催化剂。

C2-symmetric bis(oxazolinato)lanthanide catalysts for enantioselective intramolecular hydroamination/cyclization.

作者信息

Hong Sukwon, Tian Shun, Metz Matthew V, Marks Tobin J

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208-3113, USA.

出版信息

J Am Chem Soc. 2003 Dec 3;125(48):14768-83. doi: 10.1021/ja0364672.

Abstract

C(2)-symmetric bis(oxazolinato)lanthanide complexes of the type [(4R,5S)-Ph(2)Box]LaN(TMS)(2), [(4S,5R)-Ar(2)Box]LaN(TMS)(2), and [(4S)-Ph-5,5-Me(2)Box]LaN(TMS)(2) (Box = 2,2'-bis(2-oxazoline)methylenyl; Ar = 4-tert-butylphenyl, 1-naphthyl; TMS = SiMe(3)) serve as precatalysts for the efficient enantioselective intramolecular hydroamination/cyclization of aminoalkenes and aminodienes. These new catalyst systems are conveniently generated in situ from the known metal precursors LnN(TMS)(2) or LnCH(TMS)(2) (Ln = La, Nd, Sm, Y, Lu) and 1.2 equiv of commercially available or readily prepared bis(oxazoline) ligands such as (4R,5S)-Ph(2)BoxH, (4S,5R)-Ar(2)BoxH, and (4S)-Ph-5,5-Me(2)BoxH. The X-ray crystal structure of [(4S)-(t)BuBox]LuCH(TMS)(2) provides insight into the structure of the in situ generated precatalyst species. Lanthanides having the largest ionic radii exhibit the highest turnover frequencies as well as enantioselectivities. Reaction rates maximize near 1:1 BoxH:Ln ratio (ligand acceleration); however, increasing the ratio to 2:1 BoxH:Ln decreases the reaction rate, while affording enantiomeric excesses similar to the 1:1 BoxH:Ln case. A screening study of bis(oxazoline) ligands reveals that aryl stereodirecting groups at the oxazoline ring 4 position and additional substitution (geminal dimethyl or aryl) at the 5 position are crucial for high turnover frequencies and good enantioselectivities. The optimized precatalyst, in situ generated [(4R,5S)-Ph(2)Box]LaN(TMS)(2), exhibits good rates and enantioselectivities, comparable to or greater than those achieved with chiral C(1)-symmetric organolanthanocene catalysts, even for poorly responsive substrates (up to 67% ee at 23 degrees C). Kinetic studies reveal that hydroamination rates are zero order in [amine substrate] and first order in [catalyst], implicating the same general mechanism for organolanthanide-catalyzed hydroamination/cyclizations (intramolecular turnover-limiting olefin insertion followed by the rapid protonolysis of an Ln-C bond by amine substrate) and implying that the active catalytic species is monomeric.

摘要

[(4R,5S)-Ph₂Box]La[N(TMS)₂]₂、[(4S,5R)-Ar₂Box]La[N(TMS)₂]₂和[(4S)-Ph-5,5-Me₂Box]La[N(TMS)₂]₂(Box = 2,2'-双(2-恶唑啉)亚甲基;Ar = 4-叔丁基苯基、1-萘基;TMS = SiMe₃)这类C(2)-对称双(恶唑啉基)镧系配合物可作为高效对映选择性分子内氢胺化/环化氨基烯烃和氨基二烯的预催化剂。这些新的催化剂体系可方便地由已知的金属前体Ln[N(TMS)₂]₃或Ln[CH(TMS)₂]₃(Ln = La、Nd、Sm、Y、Lu)与1.2当量市售或易于制备的双(恶唑啉)配体如(4R,5S)-Ph₂BoxH、(4S,5R)-Ar₂BoxH和(4S)-Ph-5,5-Me₂BoxH原位生成。[(4S)-(t)BuBox]Lu[CH(TMS)₂]₂的X射线晶体结构有助于深入了解原位生成的预催化剂物种的结构。具有最大离子半径的镧系元素表现出最高的周转频率和对映选择性。反应速率在BoxH:Ln比例接近1:1时达到最大值(配体加速);然而,将比例增加到2:1 BoxH:Ln会降低反应速率,同时提供与1:1 BoxH:Ln情况相似的对映体过量。双(恶唑啉)配体的筛选研究表明,恶唑啉环4位的芳基立体定向基团和5位的额外取代(偕二甲基或芳基)对于高周转频率和良好的对映选择性至关重要。优化后的预催化剂,原位生成的[(4R,5S)-Ph₂Box]La[N(TMS)₂]₂,表现出良好的速率和对映选择性,与手性C(1)-对称有机镧系催化剂相当或更高,即使对于响应性较差的底物(23℃时高达67% ee)。动力学研究表明,氢胺化速率对[胺底物]为零级,对[催化剂]为一级,这意味着有机镧系催化的氢胺化/环化反应具有相同的一般机理(分子内周转限制的烯烃插入,随后胺底物对Ln-C键进行快速质子解),并暗示活性催化物种是单体。

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