甲胺
化学
笼子
自组装
共价键
产量(工程)
组分(热力学)
甲醇
分子
结晶学
有机化学
组合数学
热力学
物理
数学
冶金
材料科学
作者
Xiaoping Zhou,Jie Liu,Shun-Ze Zhan,Jurong Yang,Dan Li,Kwan-Ming Ng,Raymond Wai-Yin Sun,Chi-Ming Che
摘要
Artificial molecular architecture from a large number of subcomponents (>50) via self-assembly remains a formidable challenge for chemists. Reaction of 38 components [14 Ni(2+) and 24 N-methyl-1-(4-imidazolyl)methanimine] under solvothermal conditions reproducibly leads to the formation of a high-symmetry coordination cage. This polyhedral cage can also be obtained in high yield by self-assembly of 62 commercially available subcomponents (24 methylamine, 24 4-formylimidazole, and 14 Ni(2+)) under mild conditions involving synchronized formation of both dynamic covalent bonds and coordination bonds. Guest molecules (e.g., water, methylamine, and methanol) are randomly imprisoned in the cage.
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