A molecular dynamics study on ionic current rectification of ultra-narrow conical nanopore

被引:1
|
作者
He, Xiaodong [1 ]
Chen, Jialiang [1 ]
机构
[1] Lanzhou Univ, Sch Informat Sci & Engn, 222 Tianshui South Rd, Lanzhou 730000, Peoples R China
关键词
Ionic current rectification; Ultra -narrow conical nanopore; Molecular dynamics simulation; Ion concentration polarization; SOLID-STATE; TRANSPORT;
D O I
10.1016/j.molliq.2023.122679
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Understanding the ionic current rectification (ICR) is crucial for elucidating the physical mechanisms of ions transport in various processes and for advancing the development of nanodevices. Using molecular dynamics simulations, we explore the properties of ionic motion in negatively charged conical nanopores with a tip radius fixed at 1.51 nm. The effects of ion transport behavior on ICR under different electric fields, angles, and cation species were studied. The rectification ratio increases linearly with an increase in angle (0-15 degrees), slows down and then eventually stabilizes with an increase in electric fields, and depends on the cation species being used. Our results indicate that the ion current is mainly contributed by the flow of cations in ultra-narrow nanopores. Further analysis of the ion concentration distribution reveals that the inverse ICR phenomenon is mainly caused by the cation concentration polarization at the tip under negative electric field, making cations are difficult to enter the nanopore from the tip, resulting in a decrease in ionic current. Additionally, cations entering the nanopore from the tip become trapped in the potential well of the tip at a negative electric field, leading to lower ion mobility and ionic current. Finally, it is found the difference in ICR ratio mainly results from the migration rate of cations with different nanopore angles and different ionic types. Our study provides valuable insights into the behavior of ions in ultra-narrow conical nanopores and the mechanisms behind ICR, which could guide the design and development of nanodevices that rely on ionic transport, such as biosensors and energy storage systems.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Study on proper welding condition for ultra-narrow gap submerged arc welding
    Abe Y.
    Fujimoto T.
    Nakatani M.
    Shigeta M.
    Tanaka M.
    Yosetsu Gakkai Ronbunshu/Quarterly Journal of the Japan Welding Society, 2021, 39 (01): : 64 - 74
  • [42] Ionic current rectification of non-Newtonian fluids in pH-regulated conical nanochannels
    Liu, Runxin
    Tang, Lei
    Hao, Yu
    Peng, Li
    Zhou, Teng
    Li, Jie
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2024, 703
  • [43] Study on the polymer translocation induced blockade ionic current inside a nanopore by Langevin dynamics simulation
    Sun, Li-Zhen
    Luo, Meng-Bo
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2013, 25 (46)
  • [44] Modulating ion current rectification generating high energy output in a single glass conical nanopore channel by concentration gradient
    Zhang, Li-Xiang
    Zheng, Yu-Bin
    Cai, Sheng-Lin
    Cao, Xiao-Hong
    Li, Yao-Qun
    CHINESE CHEMICAL LETTERS, 2015, 26 (01) : 43 - 46
  • [45] In-Situ Gas Permeation-Driven Ionic Current Rectification of Heterogeneously Charged Nanopore Arrays
    Seo, Sangjin
    Kim, Taesung
    SMALL, 2024, 20 (43)
  • [46] Modulating ion current rectification generating high energy output in a single glass conical nanopore channel by concentration gradient
    Li-Xiang Zhang
    Yu-Bin Zheng
    Sheng-Lin Cai
    Xiao-Hong Cao
    Yao-Qun Li
    ChineseChemicalLetters, 2015, 26 (01) : 43 - 46
  • [47] A study of droplet transfer behavior in ultra-narrow gap laser arc hybrid welding
    Wang, Chunming (yanxiangfei225@163.com), 1600, Springer London (87): : 9 - 12
  • [48] A study of droplet transfer behavior in ultra-narrow gap laser arc hybrid welding
    Li, Ruoyang
    Yue, Jun
    Sun, Ran
    Mi, Gaoyang
    Wang, Chunming
    Shao, Xinyu
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2016, 87 (9-12): : 2997 - 3008
  • [49] Theoretical study on the ultra-narrow bandwidth tunable atomic filter with electromagnetically induced transparency
    Liu, Yang
    Li, Shu-qing
    Feng, Zhong-ying
    Liu, Xiao-fei
    Gao, Jin-yue
    LASER PHYSICS, 2016, 26 (12)
  • [50] A study on the potassium tunable ultra-narrow bandwidth optical filter at 532nm
    Wang, Q
    Jia, XL
    Zhang, YD
    Ma, ZG
    ACTA PHYSICA SINICA, 2003, 52 (05) : 1151 - 1156