We report the first nanofluidic inductor (L) to complement the known nanofluidic capacitors (C), resistors (R), and diodes for ion currents. Under negative bias, the nanopore behaves like a parallel RC circuit at low frequencies; however, under positive bias, the asymptotic dynamics is that of a serial RL circuit. This new ionic circuit element can lead to nanofluidic RLC or diode-inductor oscillator circuits and new intrapore biosensing/rapid sequencing strategies. A universal theory, with explicit estimates for the capacitance and inductance at opposite biases, is derived to collapse the rectified dynamics of all conic nanopores to facilitate design of this new nanofluidic circuit.

1.
D. B.
Strukov
,
G. S.
Snider
,
D. R.
Stewart
, and
R. S.
Williams
,
Nature
453
,
80
(
2008
);
[PubMed]
A.
Thomas
,
J. Phys. D: Appl. Phys.
46
,
093001
(
2013
).
2.
D.
Stein
,
M.
Kruithof
, and
C.
Dekker
,
Phys. Rev. Lett.
93
,
035901
(
2004
).
3.
P.
Simon
and
Y.
Gogotsi
,
Nat. Mater.
7
,
845
(
2008
).
4.
Z.
Siwy
and
A.
Fuliński
,
Phys. Rev. Lett.
89
,
198103
(
2002
);
[PubMed]
C.
Wei
,
A. J.
Bard
, and
S. W.
Feldberg
,
Anal. Chem.
69
,
4627
(
1997
);
Z.
Siwy
,
E.
Heins
,
C. C.
Harrell
,
P.
Kohli
, and
C. R.
Martin
,
J. Am. Chem. Soc.
126
,
10850
(
2004
);
[PubMed]
G.
Yossifon
,
Y.-C.
Chang
, and
H.-C.
Chang
,
Phys. Rev. Lett.
103
,
154502
(
2009
).
[PubMed]
5.
L.
Chua
,
IEEE Trans. Circuits Syst.
27
,
1059
(
1980
);
T.
Matsumoto
,
IEEE Trans. Circuits Syst.
31
,
1055
(
1984
).
6.
D. D.
Macdonald
,
Electrochim. Acta
51
,
1376
(
2006
);
J.
Schiffbauer
and
G.
Yossifon
,
Phys. Rev. E
86
,
056309
(
2012
);
J.
Schiffbauer
,
S.
Park
, and
G.
Yossifon
,
Phys. Rev. Lett.
110
,
204504
(
2013
).
[PubMed]
7.
J. S.
Daniels
and
N.
Pourmand
,
Electroanalysis
19
,
1239
(
2007
);
[PubMed]
H.-C.
Chang
and
G.
Yossifon
,
Biomicrofluidics
3
,
012001
(
2009
);
[PubMed]
S.
Basuray
,
S.
Senapati
,
A.
Aijian
,
A. R.
Mahon
, and
H.-C.
Chang
,
ACS Nano
3
,
1823
(
2009
).
[PubMed]
8.
S.
Das
,
P.
Dubsky
,
A.
van den Berg
, and
J. C. T.
Eijkel
,
Phys. Rev. Lett.
108
,
138101
(
2012
);
[PubMed]
M.
Mihovilovic
,
N.
Hagerty
, and
D.
Stein
,
Phys. Rev. Lett.
110
,
028102
(
2013
).
[PubMed]
9.
D.
Branton
,
D. W.
Deamer
,
A.
Marziali
,
H.
Bayley
,
S. A.
Benner
,
T.
Butler
,
M.
Di Ventra
,
S.
Garaj
,
A.
Hibbs
,
X.
Huang
 et al.,
Nat. Biotechnol.
26
,
1146
(
2008
).
10.
Y.
Yan
,
L.
Wang
,
J.
Xue
, and
H.-C.
Chang
,
J. Chem. Phys.
138
,
044706
(
2013
).
11.
Y.
Fu
,
H.
Tokuhisa
, and
L. A.
Baker
,
Chem. Commun.
2009
,
4877
;
S.
Liu
,
Y.
Yan
,
Y.
Wang
,
S.
Senapati
, and
H.-C.
Chang
,
Biomicrofluidics
7
,
061102
(
2013
).
[PubMed]
12.
J.
Sherwood
,
M.
Mao
, and
S.
Ghosal
,
Langmuir
30
,
9261
(
2014
).
13.
J.
Cervera
,
B.
Schiedt
,
R.
Neumann
,
S.
Mafe
, and
P.
Ramirez
,
J. Chem. Phys.
124
,
104706
(
2006
);
[PubMed]
J.
Cervera
,
A.
Alcaraz
,
B.
Schiedt
,
R.
Neumann
, and
P.
Ramirez
,
J. Phys. Chem. C
111
,
12265
(
2007
).
14.
F. B.
Hildebrand
,
Advanced Calculus for Applications
(
Prentice-Hall
,
1976
);
A.
Varma
and
M.
Morbidelli
,
Mathematical Methods in Chemical Engineering
(
Oxford University Press
,
1997
).
15.
V. V.
Nikonenko
and
A. E.
Kozmai
,
Electrochim. Acta
56
,
1262
(
2011
).
16.
I.
Vlassiouk
,
S.
Smirnov
, and
Z.
Siwy
,
Nano Lett.
8
,
1978
(
2008
).
[PubMed]
You do not currently have access to this content.