轮烷
亚胺
动态共价化学
化学
超分子化学
冠醚
二胺
分子
共价键
组合化学
高分子化学
离子
有机化学
催化作用
作者
Fabio Aricò,Tsuen Chang,Stuart Cantrill,Saeed I. Khan,J. Fraser Stoddart
标识
DOI:10.1002/chem.200500148
摘要
Abstract The template‐directed construction of crown‐ether‐like macrocycles around secondary dialkylammonium ions (R 2 NH 2 + ) has been utilized for the expedient (one‐pot) and high‐yielding synthesis of a diverse range of mechanically interlocked molecules. The clipping together of appropriately designed dialdehyde and diamine compounds around R 2 NH 2 + ‐containing dumbbell‐shaped components proceeds through the formation, under thermodynamic control, of imine bonds. The reversible nature of this particular reaction confers the benefits of “error‐checking” and “proof‐reading”, which one usually associates with supramolecular chemistry and strict self‐assembly processes, upon these wholly molecular systems. Furthermore, these dynamic covalent syntheses exploit the efficient templating effects that the R 2 NH 2 + ions exert on the macrocyclization of the matched dialdehyde and diamine fragments, resulting not only in rapid rates of reaction, but also affording near‐quantitative conversion of starting materials into the desired interlocked products. Once assembled, these “dynamic” interlocked compounds can be “fixed” upon reduction of the reversible imine bonds (by using BH 3 ⋅THF) to give kinetically stable species, a procedure that can be performed in the same reaction vessel as the inital thermodynamically controlled assembly. Isolation and purification of the mechanically interlocked products formed by using this protocol is relatively facile, as no column chromatography is required. Herein, we present the synthesis and characterization of 1) a [2]rotaxane, 2) a [3]rotaxane, 3) a branched [4]rotaxane, 4) a bis [2]rotaxane, and 5) a novel cyclic [4]rotaxane, demonstrating, in incrementally more complex systems, the efficacy of this one‐pot strategy for the construction of interlocked molecules.
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