Physics of Ionic Conduction in Narrow Biological and Artificial Channels

The book reprints a set of important scientific papers applying physics and mathematics to address the problem of selective ionic conduction in narrow water-filled channels and pores. It is a long-standing problem, and an extremely important one. Life in all its forms depends on ion channels and, fu...

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Year of Publication:2021
Language:English
Physical Description:1 electronic resource (306 p.)
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id 993545726704498
ctrlnum (CKB)5400000000045360
(oapen)https://directory.doabooks.org/handle/20.500.12854/76887
(EXLCZ)995400000000045360
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spelling McClintock, Peter V E edt
Physics of Ionic Conduction in Narrow Biological and Artificial Channels
Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
1 electronic resource (306 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
The book reprints a set of important scientific papers applying physics and mathematics to address the problem of selective ionic conduction in narrow water-filled channels and pores. It is a long-standing problem, and an extremely important one. Life in all its forms depends on ion channels and, furthermore, the technological applications of artificial ion channels are already widespread and growing rapidly. They include desalination, DNA sequencing, energy harvesting, molecular sensors, fuel cells, batteries, personalised medicine, and drug design. Further applications are to be anticipated.The book will be helpful to researchers and technologists already working in the area, or planning to enter it. It gives detailed descriptions of a diversity of modern approaches, and shows how they can be particularly effective and mutually reinforcing when used together. It not only provides a snapshot of current cutting-edge scientific activity in the area, but also offers indications of how the subject is likely to evolve in the future.
English
Research & information: general bicssc
Technology: general issues bicssc
reversal potential
effects of diffusion coefficients
permanent charge
bioelectricity
electrochemistry
thermodynamics
electrokinetics
molecular mean-field theory
Boltzmann and Fermi distributions
Poisson-Boltzmann
Poisson-Fermi
Poisson-Bikerman
Nernst-Planck
steric and correlation effects
ion channels
ion activity
double-layer capacitance
nanofluidics
steric effect
Poisson-Boltzmann model
Bikerman model
entropy
specific ion size
electric double layer
orientational ordering of water dipoles
Helmholtz free energy
modified Langevin Poisson-Boltzmann model
nanopores
reduced models
Monte Carlo
classical density functional theory
Poisson-Nernst-Planck
ion transport
nanopore
graphene
crown ether
ion channel
selectivity
permeability
patch-clamp
computer simulations
ionic Coulomb blockade
2D materials
nanotubes
angstrom slits
protein dynamics
molecular dynamics
non-Hermitian Hamiltonians
algebraic topology
semiclassical methods
statistical mechanics
polarization
maxwell equations
gating current
dielectric constant
statistical theory
linear response
ionic transport
NaChBac
computational electrophysiology
electrodiffusion model
stochastic simulations
current-voltage dependence
committor probabilities
3-0365-1646-8
3-0365-1645-X
Luchinsky, Dmitry G. edt
McClintock, Peter V E oth
Luchinsky, Dmitry G. oth
language English
format eBook
author2 Luchinsky, Dmitry G.
McClintock, Peter V E
Luchinsky, Dmitry G.
author_facet Luchinsky, Dmitry G.
McClintock, Peter V E
Luchinsky, Dmitry G.
author2_variant p v e m pve pvem
d g l dg dgl
author2_role HerausgeberIn
Sonstige
Sonstige
title Physics of Ionic Conduction in Narrow Biological and Artificial Channels
spellingShingle Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_full Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_fullStr Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_full_unstemmed Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_auth Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_new Physics of Ionic Conduction in Narrow Biological and Artificial Channels
title_sort physics of ionic conduction in narrow biological and artificial channels
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2021
physical 1 electronic resource (306 p.)
isbn 3-0365-1646-8
3-0365-1645-X
illustrated Not Illustrated
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carrierType_str_mv cr
is_hierarchy_title Physics of Ionic Conduction in Narrow Biological and Artificial Channels
author2_original_writing_str_mv noLinkedField
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