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大体积 N-取代基助力尿素大环的近乎定量合成。

Near quantitative synthesis of urea macrocycles enabled by bulky N-substituent.

机构信息

Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801, USA.

Department of Nuclear, Plasma, and Radiological Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801, USA.

出版信息

Nat Commun. 2021 Mar 10;12(1):1572. doi: 10.1038/s41467-021-21678-3.

Abstract

Macrocycles are unique molecular structures extensively used in the design of catalysts, therapeutics and supramolecular assemblies. Among all reactions reported to date, systems that can produce macrocycles in high yield under high reaction concentrations are rare. Here we report the use of dynamic hindered urea bond (HUB) for the construction of urea macrocycles with very high efficiency. Mixing of equal molar diisocyanate and hindered diamine leads to formation of macrocycles with discrete structures in nearly quantitative yields under high concentration of reactants. The bulky N-tert-butyl plays key roles to facilitate the formation of macrocycles, providing not only the kinetic control due to the formation of the cyclization-promoting cis C = O/tert-butyl conformation, but also possibly the thermodynamic stabilization of macrocycles with weak association interactions. The bulky N-tert-butyl can be readily removed by acid to eliminate the dynamicity of HUB and stabilize the macrocycle structures.

摘要

大环是一类独特的分子结构,广泛应用于催化剂、治疗药物和超分子组装体的设计中。在迄今为止报道的所有反应中,能够在高反应浓度下高产率生成大环的体系很少。在此,我们报告了利用动态位阻脲键(HUB)来构建脲大环,效率非常高。等摩尔量的二异氰酸酯和位阻二胺混合,在反应物高浓度下几乎定量生成具有离散结构的大环。大位阻的叔丁基在促进大环形成中起着关键作用,不仅由于形成促进环化的顺式 C = O/叔丁基构象提供了动力学控制,而且可能通过弱相互作用对大环提供热力学稳定。通过酸处理可以很容易地去除大位阻的叔丁基,消除 HUB 的动态性并稳定大环结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6589/7947004/fac725d18b14/41467_2021_21678_Fig1_HTML.jpg

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