细菌视紫红质
分子马达
分子机器
偶氮苯
大规模运输
纳米技术
跨膜蛋白
分子
离子运输机
离子泵
材料科学
膜
离子
化学
生化工程
工程类
有机化学
受体
生物化学
作者
Ganhua Xie,Pei Li,Zhiju Zhao,Xiang‐Yu Kong,Zhen Zhang,Kai Xiao,Huanting Wang,Liping Wen,Lei Jiang
标识
DOI:10.1002/anie.201809627
摘要
Abstract In nature, biological machines and motors can selectively transport cargoes across the lipid membranes to efficiently perform various physiological functions via ion channels or ion pumps. It is interesting and challengeable to develop artificial motors and machines of nanodimensions to controllably regulate mass transport in compartmentalized systems. In this work, we show a system of artificial molecular motors that uses light energy to perform transmembrane molecule transport through synthetical nanochannels. After functionalizing the polymer nanochannels with azobenzene derivatives, these nanomachines exhibit autonomous selective transport behavior over a long distance upon simultaneous irradiation with UV (365 nm) and visible (430 nm) light. With new strategies or suitable materials for directed molecular movement, such device can be regarded as a precursor of artificial light‐driven molecular pumps.
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