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首页> 外文期刊>Angewandte Chemie >Ring Shuttling Controls Macroscopic Motion in a Three-Dimensional Printed Polyrotaxane Monolith
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Ring Shuttling Controls Macroscopic Motion in a Three-Dimensional Printed Polyrotaxane Monolith

机译:环形梭式控制三维印刷的热框整体中的宏观运动

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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.
机译:扩增分子运动进入宏观世界的发展潜力巨大。 这里证明的是一种方法,其通过直接写入3D打印将机械互锁分子集成到复杂的三维(3D)架构中。 含有α-环糊精和聚(环氧丙烷)聚(环氧丙烷)(乙烯)(PEO-PPO-PEO)三嵌段共聚物组成的息氨酸水蛋白水凝胶的设计和合成,并将其随后的制造成显着的基于聚甲烷 通过3D打印进行格子立方体,然后报道了印刷后的聚合。 通过通过溶剂交换切换随机穿梭和固定状态之间的A-Cycleodextrin环的运动,聚XANE整料不仅表现出宏观形状记忆特性,而且还能够通过抬起反向重力来将化学能量转化为机械工作的化学能量。

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