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    本课题组以有机化学为背景,致力于超分子拓扑化合物的合成和组装,特别是强调 含膦大环、动态索烃和轮烷等的组装与性能研究;并进一步发展基于正交作用的超分子动态材料。我们意在以有机化学为基础,发展多学科性研究,特别 重视与材料科学、 药物化学和生命科学的交叉。
 


超分子有机化学和智能材料,具体研究包括(但不限于)
 

1) 含膦大环化学,发展新的构筑基元,重视源头创新;

2) 超分子拓扑化合物。特别强调分子转子的组装与性质, 发展动态索烃和轮烷;

3) 超分子聚合物化学和 动态材料的构筑;

4) 分子胶囊和小分子凝胶 及其在分子传感研究中应用;

5) 动态材料在药物转运和DNA转染中的应用;

我们意在在以有机化学为基础,发展多学科性的研究,特别注意与材料科学和生命科学的交叉。



Specific research topics of current interest include (but not limited to):
 


The general research field is supramolecular chemistry and smart materials. The current research interests on the supramolecular system of molecular devices cover from the molecular macrocycles and cages to topological molecules, to the supramolecular polymers:

1) Design and synthesis of macrocycle and molecular cages for molecular recognition and supramolecular catalysts;
2) Molecular devices, especially focus on the molecular rotor, molecular gyroscopes, dynamic molecular rotaxanes and catenanes; The non-covalent bonded catenane was the first one interlocked by multiple hydrogen bonding interaction instead of metal-ligand interaction from our hand;
3) The creation of advanced supramolecular polymers constructed by orthogonal self-assembly. These artificially designed materials can be potentially applied as the smart materials in multiple specific areas.
The project will continue the previously established results and further explore new possibilities for supramolecular smart materials, as well as their applications as the artificial intelligent materials.

 


     

    

       

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