纳米孔
膜
离子运输机
离子
纳米技术
离子通道
化学
纳米
纳米颗粒
材料科学
有机化学
生物化学
复合材料
受体
作者
Yanan Jiang,Wenjie Ma,Yujuan Qiao,Yifei Xue,Jiahao Lu,Jun Gao,Nannan Liu,Fei Wu,Ping Yu,Lei Jiang,Lanqun Mao
标识
DOI:10.1002/anie.202005084
摘要
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to external stimuli. Realizing such functions with sub-nanometer solid-state nanopores has been an important topic with wide practical applications. Herein, we demonstrate a biomimetic photoresponsive ion channel and photodriven ion pump using a porphyrin-based metal-organic framework membrane with pore sizes comparable to hydrated ions. We show that the molecular-size pores enable precise and robust optoelectronic ion transport modulation in a broad range of concentrations, unparalleled with conventional solid-state nanopores. Upon decoration with platinum nanoparticles to form a Schottky barrier photodiode, photovoltage across the membrane is generated with "uphill" ion transport from low concentration to high concentration. These results may spark applications in energy conversion, ion sieving, and artificial photosynthesis.
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