Gerardo M. Ojeda-Carralero, Leonardo G. Ceballos, Julieta Coro*, Daniel G. Rivera*
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引用次数: 10
摘要
n -异ocyaniminotriphenylphospane (NIITP)是一种功能化的异腈,近二十年来在各种有机反应中得到了广泛的应用。本文综述了这种多功能反应物在有机合成中的重要应用,重点介绍了其产生分子多样性的机理和方法。NIITP结合了异腈和磷烷的反应性,使化合物文库的化学转化成为可能。在这里,我们从NIITP在Nef异氰化物反应中的最初应用到进一步衍生出各种杂环支架。在这种单一化合物中,异腈部分的存在使得亲核试剂和亲电试剂的双重加成成为可能,随后分子间(分子内)的aza-Wittig型转化使几个多组分和串联过程成为可能。特别地,我们强调NIITP在恶二唑化学中的影响,从早期的双组分转化到最近在合适的亲电试剂存在下发生的多组分反应的例子。此外,我们简要地描述了NIITP化学在产生环肽的骨架和构象多样性中的作用。对NIITP与炔的反应进行了彻底的修订,特别强调了近年来发展起来的银催化过程。还介绍了一些反应产物在生物医学上的应用,并对该反应物的应用前景进行了展望。
One Reacts as Two: Applications of N-Isocyaniminotriphenylphosphorane in Diversity-Oriented Synthesis
N-Isocyaniminotriphenylphosphorane (NIITP) is a functionalized isonitrile that has been extensively applied in a variety of organic reactions during the last two decades. This Review summarizes the most important applications in organic synthesis of this versatile reactant, with the focus posed on mechanistic and methodological aspects allowing the generation of molecular diversity. NIITP combines the reactivity of isonitriles with that of phosphoranes to enable chemical transformations employed in the construction of compound libraries. Here, we cover from the initial applications of NIITP in the Nef isocyanide reaction to further derivations that render a variety of heterocyclic scaffolds. The presence of the isonitrile moiety in this singular compound makes possible the double addition of nucleophiles and electrophiles, which followed by inter(intra)molecular aza-Wittig type transformations enable several multicomponent and tandem processes. In particular, we stress the impact of NIITP in oxadiazole chemistry, from the early two-component transformations to recent examples of multicomponent reactions that take place in the presence of suitable electrophiles. In addition, we briefly describe the role of NIITP chemistry in generating skeletal and conformational diversity in cyclic peptides. The reaction of NIITP with alkynes is thoroughly revised, with particular emphasis on silver-catalyzed processes that have been developed in the last years. Biomedicinal applications of some reaction products are also mentioned along with a perspective of future applications of this reactant.