Self‐assembly of Novel Hetero[3]rotaxane, [2]Rotaxanes and [2]Catenane
Wenxue Zhang, Cui‐Qin Fan, Bo Tu, Xin Zhao, Xi‐Kui Jiang, Zhan‐Ting Li
Abstract
Wenxue Zhang, Cui‐Qin Fan, Bo Tu, Xin Zhao, Xi‐Kui Jiang, Zhan‐Ting Li
Abstract
Abstract One linear template 13 and one cyclophane template 15, both incorporating two electron rich 1,4‐dialkoxybenzene units and one diamide unit, have been synthesized. By utilizing donor‐acceptor interaction and/or intermolecular hydrogen bonding assembling principles, one novel hetero[3]rotazane 22·4Cl, possessing one neutral and one tetracationic ring components, has been synthesized from 13, through neutral [2]rotaxane 21 as intermediate. With 15 as template, tetracationic [2]catenane 23·4PF6 was assembled by using donor‐acceptor interaction, but no neutral [2]rotaxane could be obtained under the typical conditions of hydrogen bonding assembling principle. The interlocked supramolecular compounds have been characterized and their spectral properties are investigated.
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Abstract One linear template 13 and one cyclophane template 15, both incorporating two electron rich 1,4‐dialkoxybenzene units and one diamide unit, have been synthesized. By utilizing donor‐acceptor interaction and/or intermolecular hydrogen bonding assembling principles, one novel hetero[3]rotazane 22·4Cl, possessing one neutral and one tetracationic ring components, has been synthesized from 13, through neutral [2]rotaxane 21 as intermediate. With 15 as template, tetracationic [2]catenane 23·4PF6 was assembled by using donor‐acceptor interaction, but no neutral [2]rotaxane could be obtained under the typical conditions of hydrogen bonding assembling principle. The interlocked supramolecular compounds have been characterized and their spectral properties are investigated.
Key concepts: Rotaxane, Catenane, Chemistry, Supramolecular chemistry, Cyclophane, Hydrogen bond, Intermolecular force, Ring (chemistry)