Ring Shuttling Controls Macroscopic Motion in a Three-Dimensional Printed Polyrotaxane Monolith

被引:69
作者
Lin, Qianming [1 ]
Hou, Xisen [1 ]
Ke, Chenfeng [1 ]
机构
[1] Dartmouth Coll, Dept Chem, 41 Coll St, Hanover, NH 03755 USA
关键词
3D printing; cyclodextrins; mechanically interlocked molecules; rotaxanes; supramolecular chemistry; CYCLIC HOST LIQUIDS; ALPHA-CYCLODEXTRIN; INCLUSION COMPLEXES; MOLECULAR MACHINES; RESPONSIVE HYDROGELS; POLYETHYLENE-GLYCOL; TEMPLATE SYNTHESIS; TOPOLOGICAL GEL; CROSS-LINKS; ROTAXANE;
D O I
10.1002/anie.201612440
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Amplification of molecular motions into the macroscopic world has great potential in the development of smart materials. Demonstrated here is an approach that integrates mechanically interlocked molecules into complex three-dimensional (3D) architectures by direct-write 3D printing. The design and synthesis of polypseudorotaxane hydrogels, which are composed of alpha-cyclodextrins and poly(ethylene oxide)poly(propylene oxide)-poly(ethylene oxide) (PEO-PPO-PEO) triblock copolymers, and their subsequent fabrication into polyrotaxane-based lattice cubes by 3D printing followed by post-printing polymerization are reported. By switching the motion of the a-cyclodextrin rings between random shuttling and stationary states through solvent exchange, the polyrotaxane monolith not only exhibits macroscopic shape-memory properties but is also capable of converting the chemical energy input into mechanical work by lifting objects against gravity.
引用
收藏
页码:4452 / 4457
页数:6
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