纳米技术
离子
材料科学
纳米流体学
纤维
离子运输机
化学
复合材料
有机化学
作者
Lianmeng Si,Rui Song,Hong Xiao,Wensi Xing,Yiju Li,Yibo Wang,Liang Xu,Jianwei Song,Shengping Shen
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-03-10
标识
DOI:10.1021/acs.nanolett.5c00097
摘要
Constructing mechanically strong and environmentally stable nanofluidic fibers with excellent ion transport remains a challenge. Herein, we design a mechanically robust and stable aramid nanofiber/carboxylated aramid nanofiber (ANF/cANF) hybrid nanofluidic fiber with a high ionic conductivity via a wet spinning-induced orientation strategy. Benefiting from the oriented structure and strong interfacial interactions of the filaments, the ANF/cANF nanofluidic fiber exhibits a high tensile strength of 276.8 MPa. Carboxylation and oriented nanochannels dramatically reduce the charge transfer resistance, resulting in a high ionic conductivity. As a result, the ANF/cANF nanofluidic fiber obtains a 5-fold increase in ionic conductivity compared to that of the disordered fiber. Notably, the nanofluidic fiber maintains its structural integrity and mechanical properties after 90 days of immersion in water. Additionally, it retains its favorable surface-charge-dominated ion transport capabilities even under extreme conditions, including exposure to acids, alkalis, and ethanol, as well as after treatments at high (150 °C) and low (-196 °C) temperatures.
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