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Dirhodium(II) carboxamidate catalysts as Lewis acids for the hetero-Diels-Alder reaction.

机译:羧酸氨基甲酸二铱(II)催化剂作为路易斯酸用于杂Diels-Alder反应。

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摘要

The hetero-Diels-Alder reaction between an aldehyde and a diene provides access to dihydropyrans which are precursors in the chemical synthesis of biologically active natural products. Lewis acid catalysts increase reactivity by activating the carbonyl group of the aldehyde dienophile towards addition. Chiral dirhodium(II) carboxamidates are highly selective Lewis acids that have high turnover numbers in the hetero-Diels-Alder reaction. The reaction between aromatic aldehydes with Danishefsky's diene in the presence of only 0.01 mol % catalyst afforded the corresponding dihydropyran products in high enantioselectivities and yields.;Optimization of reaction conditions led to the discovery that the amount of dihydropyran formed increased at elevated temperatures while maintaining stereoselectivities as high as 98% ee for aromatic aldehydes extending from p-nitro- to p-methoxy-benzaldehyde. Aldehydes with electron-donating substituents required longer reaction times in comparison to those having electron withdrawing substituents. Reactions with aliphatic aldehydes were sluggish in comparison to aromatic aldehydes, however enantioselectivities as high as 86% were achieved.;A detailed kinetic analysis of the hetero-Diels-Alder reaction, which has not been previously reported, was performed to gain insight into the mechanistic pathway for the dirhodium(II) catalyzed hetero-Diels-Alder reaction. Both the equilibrium constants for the association between catalyst and aldehyde and the rates of reaction for various para-substituted aldehydes were determined. Kinetic investigations revealed a pronounced electronic influence on the rate of reaction giving a Hammett rho value of +1.9 (versus sigma +). The reaction rate for p-nitrobenzaldehyde is 20 times faster than p-chlorobenzaldehyde which is 36 times faster than p-anisaldehyde. Aldehydes with higher equilibrium constants for coordination with dirhodium(II) catalyst undergo slower rates of cycloaddition. Detailed kinetic studies established that inhibition of the catalyst by reactant aldehyde is apparent. In addition, reactions exhibit first order dependence on aldehyde and diene, and variable dependence on catalyst.;The dimethyl analogue of the Danishefsky's diene, 1-methoxy-2-methyl-3-trimethyIsilyolxy-1,3-pentadiene, reacted with nitro-substituted aromatic aldehydes to form exclusively the cis-dihydropyran in high selectivity and yield. The approach of the diene to the catalyst-aldehyde complex is influenced by substitution on the incoming diene. Furthermore, substitution on the diene affects the rate of reaction with p-nitrobenzaldehyde. The diastereoselectivity with aromatic aldehydes other than nitro-substituted aldehydes was optimized; however, long reaction times were necessary to obtain high conversion.
机译:醛和二烯之间的杂Diels-Alder反应提供了对二氢吡喃的访问,其是生物活性天然产物的化学合成中的前体。路易斯酸催化剂通过活化醛二烯亲和体的羰基基团来增加反应性。手性氨基甲酸二吡啶鎓(II)是高选择性的路易斯酸,在异Diels-Alder反应中具有高周转率。芳族醛与Danishefsky's二烯之间的反应仅在0.01 mol%的催化剂存在下以高对映选择性和高收率获得了相应的二氢吡喃产物。对于从对硝基硝基到对甲氧基苯甲醛的芳族醛,最高可达到98%ee。与具有吸电子取代基的醛相比,具有供电子取代基的醛需要更长的反应时间。与芳族醛相比,与脂肪族醛的反应反应迟缓,但对映选择性高达86%。;对杂Diels-Alder反应进行了详细的动力学分析(以前未曾进行过报道),以深入了解聚合物的结构。 (II)催化杂Diels-Alder反应的机理确定了催化剂与醛之间缔合的平衡常数以及各种对位取代醛的反应速率。动力学研究表明,电子反应对反应速率有明显影响,Hammett rho值为+1.9(相对于sigma +)。对硝基苯甲醛的反应速率比对氯苯甲醛快20倍,对氯苯甲醛比对茴香醛快36倍。具有较高平衡常数的醛与二(II)催化剂配位的醛,其环加成速度较慢。详细的动力学研究表明,反应醛对催化剂的抑制作用是显而易见的。另外,反应表现出对醛和二烯的一阶依赖性,以及对催化剂的可变依赖性。; Danishefsky的二烯的二甲基类似物1-甲氧基-2-甲基-3-三甲基异丁烯醇基-1,3-戊二烯与硝基-反应。取代的芳族醛以高选择性和高收率仅形成顺式二氢吡喃。二烯到达催化剂-醛络合物的方法受进入的二烯上取代的影响。此外,二烯上的取代影响与对硝基苯甲醛的反应速率。优化了与硝基取代醛以外的芳族醛的非对映选择性;但是,需要很长的反应时间才能获得高转化率。

著录项

  • 作者

    Valenzuela, Marcela V.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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