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Transition metal promoted cyclization reactions of nitrile ligands: Stereochemically controlled synthesis and structural investigation of some chiral oxazoline platinum(II) complexes

机译:过渡金属促进腈配体的环化反应:一些手性恶唑啉铂(II)配合物的立体化学控制合成和结构研究

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The reactions of the nitrile complexes cis- and trans-[PtCl2(NCR)(2)] with S(+)-2-chloro-1-propanol in the presence of 2 equiv. of n-BuLi afford the chiral oxazoline complexes cis- and trans-[PtCl2{(R)-N=C(R)OCH2CH(Me)}(2)] [cis, R = Me (1), cis, R = Ph (2); trans, R = Ph (3)]. The structures of 1 and 2 were determined by X-ray analysis which allowed to establish the R configuration of the oxazoline rings. The reactions of cis- and trans-[PtCl2NCR](2) with S(+)-2-chloro-1-phenylethanol and R(-)-2-chloro-1-phenylethanol in the presence of 2 equiv. of n-BuLi afford the oxazoline complexes cis- and trans-[PtCl2{(S)N=C(R)OCH(Ph)CH2}(2)] [cis, R=Me (4), cis, R=Ph (5); trans, R=Ph (6)] and cis- and trans-[PtCl2{(R)N=C(R)OCH(Ph)CH2}(2)] [cis, R = Me (7), trans, R = Me (8); trans, R = Ph (9)]. The structure of 6 was determined by an X-ray investigation which allowed to establish the S configuration of the oxazoline rings. The proposed mechanism for the nitrile to chiral oxazoline conversion entails nucleophilic attack of the alkoxide, generated by deprotonation reaction of the corresponding alcohol with n-BuLi, followed by intramolecular cyclization. This latter step proceeds with complete inversion of configuration at the chiral carbon atom for 1-3, while with retention of configuration for 4-9. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 25]
机译:腈配合物顺式和反式[PtCl2(NCR)(2)]与S(+)-2-氯-1-丙醇在2当量存在下的反应。 n-BuLi提供手性恶唑啉配合物顺-和反-[PtCl2 {(R)-N = C(R)OCH2CH(Me)}(2)] [顺式,R = Me(1),顺式,R = Ph(2);反式,R = Ph(3)]。通过X射线分析确定1和2的结构,其允许建立恶唑啉环的R构型。顺式和反式[PtCl2NCR](2)与S(+)-2-氯-1-苯基乙醇和R(-)-2-氯-1-苯基乙醇在2当量存在下的反应。 n-BuLi提供恶唑啉配合物顺式和反式-[PtCl2 {(S)N = C(R)OCH(Ph)CH2}(2)] [顺式,R = Me(4),顺式,R = Ph (5);反式,R = Ph(6)]和顺式和反式-[PtCl2 {(R)N = C(R)OCH(Ph)CH2}(2)] [顺式,R = Me(7),反式,R =我(8);反式,R = Ph(9)]。通过X射线研究确定6的结构,该X射线研究允许建立恶唑啉环的S构型。所提出的腈转化为手性恶唑啉的机理涉及对醇盐的亲核攻击,其是由相应的醇与正丁基锂进行质子化反应,然后进行分子内环化而产生的。后面的步骤继续进行1-3个手性碳原子上构型的完全转化,而保留4-9个构型。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:25]

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