Ion Current Rectification in Extra-Long Nanofunnels

被引:2
作者
Repetto, Diego [1 ]
Angeli, Elena [1 ]
Pezzuoli, Denise [1 ]
Guida, Patrizia [1 ]
Firpo, Giuseppe [1 ]
Repetto, Luca [1 ]
机构
[1] Univ Genoa, Dept Phys, Via Dodecaneso 33, I-16146 Genoa, Italy
来源
APPLIED SCIENCES-BASEL | 2020年 / 10卷 / 11期
关键词
nanofunnel; FEM simulation; ionic current rectification; micro-nano structure interface; SOLID-STATE NANOPORES; CONCENTRATION POLARIZATION; NANOFLUIDIC DEVICES; TRANSPORT PHENOMENA; PORES;
D O I
10.3390/app10113749
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanofluidic systems offer new functionalities for the development of high sensitivity biosensors, but many of the interesting electrokinetic phenomena taking place inside or in the proximity of nanostructures are still not fully characterized. Here, to better understand the accumulation phenomena observed in fluidic systems with asymmetric nanostructures, we study the distribution of the ion concentration inside a long (more than 90 mu m) micrometric funnel terminating with a nanochannel. We show numerical simulations, based on the finite element method, and analyze how the ion distribution changes depending on the average concentration of the working solutions. We also report on the effect of surface charge on the ion distribution inside a long funnel and analyze how the phenomena of ion current rectification depend on the applied voltage and on the working solution concentration. Our results can be used in the design and implementation of high-performance concentrators, which, if combined with high sensitivity detectors, could drive the development of a new class of miniaturized biosensors characterized by an improved sensitivity.
引用
收藏
页数:13
相关论文
共 58 条
[1]   Nanofluidic devices and their applications [J].
Abgrall, Patirick ;
Nguyen, Nam Trung .
ANALYTICAL CHEMISTRY, 2008, 80 (07) :2326-2341
[2]   Effects of Electroosmotic Flow on Ionic Current Rectification in Conical Nanopores [J].
Ai, Ye ;
Zhang, Mingkan ;
Joo, Sang W. ;
Cheney, Marcos A. ;
Qian, Shizhi .
JOURNAL OF PHYSICAL CHEMISTRY C, 2010, 114 (09) :3883-3890
[3]   Geometrical control of ionic current rectification in a configurable nanofluidic diode [J].
Alibakhshi, Mohammad Amin ;
Liu, Binqi ;
Xu, Zhiping ;
Duan, Chuanhua .
BIOMICROFLUIDICS, 2016, 10 (05)
[4]   Junction gap breakdown-based fabrication of polydimethylsiloxane ionic rectifiers [J].
Angeli, Elena ;
Pezzuoli, Denise ;
Repetto, Diego ;
Guida, Patrizia ;
Firpo, Giuseppe ;
Lo Savio, Roberto ;
Repetto, Luca ;
Valbusa, Ugo .
JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2020, 30 (02)
[5]   Nanofluidics coming of age [J].
Bocquet, Lyderic .
NATURE MATERIALS, 2020, 19 (03) :254-256
[6]   Ionic conduction, rectification, and selectivity in single conical nanopores [J].
Cervera, J ;
Schiedt, B ;
Neumann, R ;
Mafé, S ;
Ramírez, P .
JOURNAL OF CHEMICAL PHYSICS, 2006, 124 (10)
[7]   Ion transport in nanofluidic channels [J].
Daiguji, H ;
Yang, PD ;
Majumdar, A .
NANO LETTERS, 2004, 4 (01) :137-142
[8]   Ion transport in nanofluidic channels [J].
Daiguji, Hirofumi .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (03) :901-911
[9]   Nanochannels for electrical biosensing [J].
de la Escosura-Muniz, Alfredo ;
Merkoci, Arben .
TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2016, 79 :134-150
[10]   Solid-state nanopores [J].
Dekker, Cees .
NATURE NANOTECHNOLOGY, 2007, 2 (04) :209-215