IBM Almaden Research Center, 650 Harry Road, San Jose, California 95120, United States.
J Am Chem Soc. 2010 Oct 27;132(42):14724-6. doi: 10.1021/ja105332k.
An improved two-step synthetic route to functionalized cyclic carbonate monomers that features a novel cyclic carbonate intermediate with an active pentafluorophenyl ester group (MTC-OPhF(5)) has been developed. The versatile pentafluorophenyl ester intermediate can be synthesized on the gram to kilogram scale in one high-yielding step and is easy to store and handle on the benchtop. The active pentafluorophenyl ester of MTC-OPhF(5) is amenable to further substitution with suitable nucleophiles such as alcohols and amines to generate functionalized cyclic carbonates in high yields. The substitution reaction is tolerant of a wide variety of functionalities, including various hydrophobic and hydrophilic groups, reactive functionalities (via thiol-ene click chemistry or alkyl halides), and protected acids, alcohols, thiols, and amines. In view of the ever-increasing need for biodegradable and biocompatible polymers, this new methodology provides a simple and versatile platform for the synthesis of new and innovative materials.
已经开发出一种改进的两步合成路线,用于功能化环状碳酸酯单体,该路线的特点是具有新型环状碳酸酯中间体,其中含有活性五氟苯基酯基团(MTC-OPhF(5))。多功能的五氟苯基酯中间体可以在克到千克的规模上以高产率一步合成,并且在台面上易于储存和处理。MTC-OPhF(5)的活性五氟苯基酯可以与合适的亲核试剂进一步取代,例如醇和胺,以高产率生成功能化环状碳酸酯。取代反应对各种官能团具有耐受性,包括各种疏水性和亲水性基团、反应性官能团(通过硫醇-烯点击化学或烷基卤化物)以及保护的酸、醇、硫醇和胺。鉴于对可生物降解和生物相容聚合物的需求不断增加,这种新方法为新型创新材料的合成提供了一个简单而通用的平台。