量子点
钙钛矿(结构)
光电子学
材料科学
离子
纳米技术
化学工程
物理
工程类
量子力学
作者
Mingyan Sun,Wenyi Guo,Shuyu Li,Xiaoyan Nie,Tianliang Xiao,Zhaoyue Liu
标识
DOI:10.1002/admt.202500537
摘要
Abstract Biological ion pump that moves ion transport against a thermodynamic gradient is essential for many life activities such as neurotransmission, muscle contraction and photosynthesis. However, the fabrication of an analogous synthetic system with a high‐performance remains a challenge. Here, the use of confined CsPbBr 3 perovskite quantum dots (QDs) in the nanofluidic channels of an anodized aluminum oxide membrane to achieve an ultrahigh light‐powered ion pumping is reported. The oleic acid ligands of CsPbBr 3 QDs determine the cationic selectivity of nanofluidic channels, which enables a surface‐charge‐governed ion transport property. The optoelectronic effect of perovskite QDs creates a potential difference across the membrane under visible light irradiation. This potential difference reverses the spontaneous ion transport direction, and pumps the cation transport against a concentration gradient as high as 50‐fold. The confinement of perovskite QDs within nanofluidic channels provides an alternative way for the building of light‐powered synthetic ion pumps with a high pumping performance.
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