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On the macrocyclization selectivity of meta-substituted diamines and dialdehydes: towards macrocycles with tunable functional peripheries

机译:在荟萃取代二胺和二醛的大环化选择性上:朝向可调谐功能外周的宏蜂鸣

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摘要

The efficient preparation of functional rigid and soluble macrocycles remains a challenge for synthetic chemists. Here, we exploit the thermodynamic control of dynamic covalent chemistry to investigate the influence of the monomer structure on the macrocyclization selectivity. A series of rigid cyclic hexamer has been synthesized by imine condensation of benzene building blocks, i.e. meta-substituted diamines and dialdehydes, templated by calcium(II) chloride. The monomers were designed to feature various additional functional groups either available for further post-cyclization modifications or acting as solubilizing groups. The cyclization selectivity was systematically investigated and optimized depending on the length of the applied solubilizing group and on the nature of the additional functional group. A selectivity up to 92% was reached for the macrocyclization exhibiting trifluoromethyl and bromine groups at the outer periphery and hydroxyl groups in the cavity.
机译:功能性刚性和可溶性宏型的有效制剂仍然是合成化学家的挑战。 这里,我们利用动态共价化学的热力学控制来研究单体结构对宏核选择性的影响。 通过亚己基结构块的亚胺缩合合成了一系列刚性环状六烷烃,即荟萃取代的二胺和二醛,通过钙(II)氯化物模拟。 设计单体以具有可用于进一步的环状化修饰或作为溶解基团的可用的各种官能团。 根据所施加的增溶组和附加官能团的性质,系统地研究并优化了环化选择性并优化。 达到在外周和腔内的外周和羟基处的三氟甲基和溴基团的宏环化达到高达92%的选择性。

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