纳米流体
材料科学
纳米技术
工程物理
纳米颗粒
工程类
作者
Wenbin He,Xu Li,Gengchen Yu,Kang Wang,Dian Bao,Xin‐Gui Tang,Xin Zhou,Jun Zhang,Tao Huang,Ning Li,Mengdi Guo,Yue Yang,Yanan Ma
标识
DOI:10.1002/adma.202417498
摘要
The inherent trade-off between permeability and selectivity has constrained further improvement of passive linear force-electric conversion performance in nanofluidic pressure sensors. To overcome this limitation, a 3D nanofluidic membrane with high mechanical strength utilizing aramid nanofibers/carbon nanofiber (ANF/CNF) dual crosslinking is developed. Due to the abundant surface functional groups of CNF and the high mechanical strength of ANF, this large-scale integrated 3D nanofluidic membrane exhibits advantages of high flux, high porosity, and short ion transport path, demonstrating superior force-electric response compared to conventional 1D and 2D configurations. The enhancement mechanism of the ANF/CNF membrane is systematically investigated through experimental results and theoretical calculations. The optimized device has a sensitivity of 111 nA cm
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