整改
材料科学
离子键合
等电点
纳米流体学
表面电荷
阳极氧化
质子化
化学物理
胺气处理
纳米技术
纳米孔
离子
物理化学
化学
有机化学
电压
铝
物理
量子力学
冶金
酶
作者
Chengyong Li,Fengxiang Ma,Zeng‐Qiang Wu,Hong‐Li Gao,Wenting Shao,Kang Wang,Xing‐Hua Xia
标识
DOI:10.1002/adfm.201300315
摘要
Abstract A new ionic current rectification device responsive to a broad range of pH stimuli is established using highly ordered nanochannels of porous anodic alumina membrane with abrupt surface charge discontinuity. The asymmetric surface charge distribution is achieved by patterning the nanochannels with surface amine functional groups at designed positions using a two‐step anodization process. Due to the protonation/deprotonation of the patterned amine and the remaining intrinsic hydroxyl groups upon solution pH variation, the nanochannel‐array‐based device is able to regulate ion transport selectivity and has ionic current rectification properties. The rectification ratio of the device is mainly determined by the nanochannel size, and the rectification ratio is less sensitive to the patterned length of the amine groups when the nanochannels size is defined. Thus, the isoelectric point of nanochannels can be easily estimated to be the pH value with a unit rectification ratio. The present ionic device is promising for biosensing, molecular transport and separation, and drug delivery in confined environments.
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