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Photo-stimuli responsive supramolecular materials using supramolecular machine

机译:使用超分子机器的光刺激响应性超分子材料

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Molecular recognition is essential for realizing functional supramolecular materials. Non-covalent host-guest interactions are an effective tool to introduce switching and functional properties into materials. This paper focuses on the photo responsive supramolecular actuators. These functions have been achieved by reversible bond formation with cyclodextrins (CDs). To prepare a supramolecular actuator using host-guest complexes, two approaches have been introduced. The first is the functionalization of a supramolecular gel actuator by changing the cross-linking density, and the second is the functionalization of a topological gel actuator by changing length of the cross-linking points. Both actuators exhibit contractive bending behavior. This paper summarizes advancements in supramolecular materials that function through the chemical mechanism of host-guest interactions and the physical mechanism of the sliding motion of ring molecules.
机译:分子识别对于实现功能性超分子材料至关重要。非共价主客体相互作用是将开关和功能特性引入材料的有效工具。本文着重于光响应超分子致动器。这些功能是通过与环糊精(CD)形成可逆键来实现的。为了使用客体-客体配合物制备超分子致动器,已经引入了两种方法。第一个是通过改变交联密度来使超分子凝胶致动器官能化,第二个是通过改变交联点的长度来使拓扑凝胶致动器官能化。两个执行器均表现出收缩弯曲行为。本文总结了超分子材料的研究进展,这些材料通过客体-客体相互作用的化学机理和环分子滑动运动的物理机理起作用。

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