Perspectives on external electric fields in molecular simulation: progress, prospects and challenges.
暂无分享,去创建一个
[1] K. Kawasaki,et al. Nonlinear Effects in the Shear Viscosity of Critical Mixtures , 1967 .
[2] I. R. Mcdonald,et al. On the calculation by molecular dynamics of the shear viscosity of a simple fluid , 1973 .
[3] W. Visscher. Transport processes in solids and linear-response theory , 1974 .
[4] G. Ciccotti,et al. Direct Computation of Dynamical Response by Molecular Dynamics: The Mobility of a Charged Lennard-Jones Particle , 1975 .
[5] G. Ciccotti,et al. “Thought-experiments” by molecular dynamics , 1979 .
[6] M. Lindenfeld,et al. Nonlinear transport in the Boltzmann limit , 1979 .
[7] J. P. Valleau,et al. Electrical double layers. I. Monte Carlo study of a uniformly charged surface , 1980 .
[8] H. C. Andersen. Molecular dynamics simulations at constant pressure and/or temperature , 1980 .
[9] D. Heyes,et al. Computer simulation of molten-salt interphases. Effect of a rigid boundary and an applied electric field , 1981 .
[10] L. Taylor. The mechanisms of athermal microwave biological effects. , 1981, Bioelectromagnetics.
[11] M. Evans. Molecular dynamics simulation of liquid anisotropy. II. Rise and fall transients on a picosecond time scale , 1982 .
[12] J. G. Powles,et al. The computer simulation of the dielectric properties of polar liquids. The dielectric constant and relaxation of liquid hydrogen chloride , 1982 .
[13] M. Evans. Molecular dynamics simulation of induced anisotropy. I. Equilibrium properties , 1982 .
[14] William G. Hoover,et al. High-strain-rate plastic flow studied via nonequilibrium molecular dynamics , 1982 .
[15] M. Evans. Computer simulation of liquid anisotropy. III. Dispersion of the induced birefringence with a strong alternating field , 1982 .
[16] M. Evans. Computer simulation of liquid anisotropy. V. Nonlinear molecular dynamics at high field strengths , 1983 .
[17] M. Evans. Computer simulation of liquid anisotropy. IV. Terms to second order in the external field of force , 1983 .
[18] William G. Hoover,et al. Nonequilibrium molecular dynamics via Gauss's principle of least constraint , 1983 .
[19] E. Cohen. Kinetic theory of non-equilibrium fluids , 1983 .
[20] R. Resta,et al. External Fields in the Self-Consistent Theory of Electronic States: A New Method for Direct Evaluation of Macroscopic and Microscopic Dielectric Response , 1983 .
[21] M. Evans. New Phenomenon of the Molecular Liquid State: Interaction of Molecular Rotation and Translation , 1983 .
[22] S. Nosé. A unified formulation of the constant temperature molecular dynamics methods , 1984 .
[23] Denis J. Evans,et al. Non-Newtonian molecular dynamics , 1984 .
[24] J. Nørskov,et al. Changes in the vibrational frequencies of adsorbed molecules due to an applied electric field , 1984 .
[25] G. Morriss,et al. Isothermal response theory , 1985 .
[26] Denis J. Evans,et al. The Nose–Hoover thermostat , 1985 .
[27] Hoover,et al. Canonical dynamics: Equilibrium phase-space distributions. , 1985, Physical review. A, General physics.
[28] Evans Mw,et al. Intermolecular Coriolis and centrifugal forces in chiral molecules: Laboratory frame differences between enantiomers and racemic mixtures. , 1985 .
[29] Kremer,et al. Molecular dynamics simulation for polymers in the presence of a heat bath. , 1986, Physical review. A, General physics.
[30] Denis J. Evans,et al. Flows Far From Equilibrium Via Molecular Dynamics , 1986 .
[31] S. Pons,et al. A theoretical analysis of the vibrational spectrum of carbon monoxide on platinum metal electrodes , 1986 .
[32] M. R. Philpott,et al. Vibrational and electronic properties of cyanide adsorbed on metal electrodes , 1987 .
[33] Evans,et al. Application of transient correlation functions to shear flow far from equilibrium. , 1987, Physical review. A, General physics.
[34] Hermann,et al. Coupling of vibrational modes of adsorbates: Application to field-induced shifts for CO and CN on Cu(100). , 1987, Physical review. B, Condensed matter.
[35] E. Clementi,et al. Molecular dynamics of liquid water in a circularly polarized external field , 1987 .
[36] Seki,et al. Field-induced vibrational frequency shifts of CO and CN chemisorbed on Cu(100). , 1987, Physical review letters.
[37] D. K. Lambert. Vibrational Stark effect of CO on Ni(100), and CO in the aqueous double layer: Experiment, theory, and models , 1988 .
[38] Zhu,et al. Molecular-dynamics study of nonpolar molecular liquids in intense laser fields. , 1988, Physical review. A, General physics.
[39] G. W. Robinson,et al. Effects of an intense picosecond laser on liquid carbon disulfide: a molecular dynamics study , 1989 .
[40] M. Evans. Symmetry analysis of non-equilibrium time correlation functions , 1989 .
[41] Pacchioni,et al. Point-charge effects on the vibrational frequency of CO chemisorbed on Cu and Pd clusters: A model for CO with ionic coadsorbates. , 1989, Physical review. B, Condensed matter.
[42] A. Anderson. The influence of electrochemical potential on chemistry at electrode surfaces modeled by MO theory , 1990 .
[43] C. Woodward,et al. Monte Carlo simulations of an electric double layer , 1990 .
[44] Masakatsu Watanabe,et al. Dielectric properties and phase transitions of water between conducting plates , 1991 .
[45] G. W. Robinson,et al. Structure and dynamics of liquid water between plates , 1991 .
[46] H. W. Evans. Correlation between rotation and translation in chiral ensembles: Comparison of molecule fixed and laboratory frame time correlation functions , 1991 .
[47] Shuichi Nosé,et al. Constant Temperature Molecular Dynamics Methods , 1991 .
[48] Zhu,et al. Molecular-dynamics study of liquid water in strong laser fields. , 1991, Physical review. A, Atomic, molecular, and optical physics.
[49] M. Evans. Molecular dynamics computer simulation of magnetisation by an electromagnetic field , 1991 .
[50] P. Kusalik. Determination of the transient polarization response of a dipolar fluid , 1992 .
[51] M. Yoshida,et al. Electric polarization of rodlike polyions investigated by Monte Carlo simulations , 1992 .
[52] G. Wagnière,et al. Field applied molecular dynamics (FMD) computer simulation of circular dichroism and optical rotatory dispersion , 1992 .
[53] Head-Gordon,et al. Molecular-orbital calculations of the lifetimes of the vibrational modes of CO on Cu(100). , 1992, Physical review. B, Condensed matter.
[54] C. Woodward,et al. Mean-field Monte Carlo technique for studies of electric double layers and flexible polyelectrolytes , 1992 .
[55] P. Kusalik,et al. Roto-translational motion in liquid water and its structural implication , 1993 .
[56] Denis J. Evans,et al. Field-dependent conductivity and diffusion in a two-dimensional Lorentz gas , 1993 .
[57] Evans,et al. Equivalence of thermostatted nonlinear responses. , 1993, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[58] Svishchev,et al. Crystallization of liquid water in a molecular dynamics simulation. , 1994, Physical review letters.
[59] P. Kusalik. Computer simulation study of a highly polar fluid under the influence of static electric fields , 1994 .
[60] P. Kusalik,et al. Nonequilibrium Molecular Dynamics of a Dense Ionic Fluid , 1994 .
[61] D. Lange,et al. Athermal alterations in the structure of the canalicular membrane and ATPase activity induced by thermal levels of microwave radiation. , 1994, Radiation research.
[62] Godby,et al. Density-Polarization Functional Theory of the Response of a Periodic Insulating Solid to an Electric Field. , 1995, Physical review letters.
[63] K. Heinzinger,et al. Molecular dynamics simulation of a chloride ion in water under the influence of an external electric field , 1996 .
[64] Klaus Schulten,et al. Protein Response to External Electric Fields: Relaxation, Hysteresis, and Echo , 1996 .
[65] Svishchev,et al. Quartzlike polymorph of ice. , 1996, Physical review. B, Condensed matter.
[66] P. Kusalik,et al. Electrofreezing of Liquid Water: A Microscopic Perspective , 1996 .
[67] Mark E. Tuckerman,et al. Explicit reversible integrators for extended systems dynamics , 1996 .
[68] Melzer,et al. Experimental investigation of the melting transition of the plasma crystal. , 1996, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[69] K. Hermansson,et al. Electric field effects on vibrating polar molecules from weak to strong fields , 1996 .
[70] So,et al. INVESTIGATION OF THE TEMPERATURE DEPENDENCE OF DIELECTRIC RELAXATION IN LIQUID WATER BY THZ REFLECTION SPECTROSCOPY AND MOLECULAR DYNAMICS SIMULATION , 1997 .
[71] Denis J. Evans,et al. Nonlinear Response for Time-dependent External Fields , 1997 .
[72] M. de Rosa,et al. Non‐thermal effects of microwaves on proteins: thermophilic enzymes as model system , 1997, FEBS letters.
[73] G. Sutmann. Structure formation and dynamics of water in strong external electric fields , 1998 .
[74] J. Liu,et al. A Monte-Carlo approach of domain switching in ferroelectric Potts lattice under external electric field , 1998 .
[75] C. E. Dykstra. External electric field effects on the water trimer , 1999 .
[76] M. Jhon,et al. The effect of an external electric field on the structure of liquid water using molecular dynamics simulations , 1999 .
[77] On-top adsorption of hydrogen at platinum electrodes: a quantum-chemical study , 1999 .
[78] E. Stuve,et al. Phase transitions in vapor-deposited water under the influence of high surface electric fields , 2000 .
[79] H. Bohr,et al. Microwave-enhanced folding and denaturation of globular proteins. , 2000, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[80] F. Peeters,et al. Reply: Schweigert, Schweigert, and Peeters , 2001 .
[81] J. Holder,et al. Molecular Dynamics Simulations of Collisional Cooling of Highly Charged Ions in a Penning Trap , 2001 .
[82] R. L. Rowley,et al. Molecular dynamics simulation of continuous current flow through a model biological membrane channel. , 2001, Physical review letters.
[83] A. Amadei,et al. A first-principles method to model perturbed electronic wavefunctions: the effect of an external homogeneous electric field , 2001 .
[84] A. Vegiri,et al. A molecular dynamics study of structural transitions in small water clusters in the presence of an external electric field , 2001 .
[85] Kwong‐Yu Chan,et al. Diffusivity and Conductivity of a Solvent Primitive Model Electrolyte in a Nanopore by Equilibrium and Nonequilibrium Molecular Dynamics Simulations , 2001 .
[86] M. Repacholi,et al. Health risks from the use of mobile phones. , 2001, Toxicology letters.
[87] K. Yamashita,et al. A DFT study of electric field effects on proton transfer reactions at H+(H2O)2/Pt(111) and Ag(111) , 2001 .
[88] S. V. Shevkunov,et al. Equilibrium structures of the N=64 water cluster in the presence of external electric fields , 2001 .
[89] F. Peeters,et al. Schweigert, Schweigert, and Peeters Reply: , 2001 .
[90] Kwong‐Yu Chan,et al. Non-equilibrium molecular dynamics simulation study of the frequency dependent conductivity of a primitive model electrolyte in a nanopore , 2002 .
[91] A. Vegiri. Translational dynamics of a cold water cluster in the presence of an external uniform electric field , 2002 .
[92] J. Freund. Electro-osmosis in a nanometer-scale channel studied by atomistic simulation , 2002 .
[93] Alfredo Pasquarello,et al. Ab initio molecular dynamics in a finite homogeneous electric field. , 2002, Physical review letters.
[94] A. Amadei,et al. Extension of the perturbed matrix method: application to a water molecule , 2002 .
[95] S. Auerbach,et al. Microwave-driven zeolite-guest systems show athermal effects from nonequilibrium molecular dynamics. , 2002, Journal of the American Chemical Society.
[96] S. Stone-Elander,et al. Quantum Chemical Model of an SN2 Reaction in a Microwave Field , 2002 .
[97] S. V. Shevkunov,et al. Electric field induced transitions in water clusters , 2002 .
[98] Andrea Amadei,et al. Dynamical and Statistical Mechanical Characterization of Temperature Coupling Algorithms , 2002 .
[99] J. Schiffer. Melting of crystalline confined plasmas. , 2002, Physical review letters.
[100] A. Amadei,et al. Theoretical equations of state for temperature and electromagnetic field dependence of fluid systems, based on the quasi-Gaussian entropy theory , 2002 .
[101] J. Petravic,et al. Conductivity of molten sodium chloride and its supercritical vapor in strong dc electric fields , 2003 .
[102] Niall J. English,et al. Molecular dynamics simulations of microwave heating of water , 2003 .
[103] Excited-state forces within a first-principles Green's function formalism. , 2002, Physical review letters.
[104] D. Archer,et al. Microwave radiation can alter protein conformation without bulk heating , 2003, FEBS letters.
[105] Niall J. English,et al. Hydrogen bonding and molecular mobility in liquid water in external electromagnetic fields , 2003 .
[106] D. Leibfried,et al. Experimental demonstration of a robust, high-fidelity geometric two ion-qubit phase gate , 2003, Nature.
[107] Lars Malmgren,et al. Nerve cell damage in mammalian brain after exposure to microwaves from GSM mobile phones. , 2003, Environmental health perspectives.
[108] J. Petravic,et al. Conductivity of molten sodium chloride in an alternating electric field , 2003 .
[109] A. Faraone,et al. Model for the translation-rotation coupling of molecular motion in water , 2003 .
[110] Alexander D. MacKerell,et al. CHARMM fluctuating charge force field for proteins: II Protein/solvent properties from molecular dynamics simulations using a nonadditive electrostatic model , 2004, J. Comput. Chem..
[111] Ki Ryang Byun,et al. Field-effect ion-transport devices with carbon nanotube channels: Schematics and simulations , 2004 .
[112] O. Salata,et al. Applications of nanoparticles in biology and medicine , 2004, Journal of nanobiotechnology.
[113] A. Mark,et al. Electrofreezing of confined water. , 2004, The Journal of chemical physics.
[114] P. Hoet,et al. Nanoparticles – known and unknown health risks , 2004, Journal of nanobiotechnology.
[115] N. English,et al. Theoretical studies of the kinetics of methane hydrate crystallization in external electromagnetic fields. , 2004, The Journal of chemical physics.
[116] Cameron Alexander,et al. Protein-polymer nano-machines. Towards synthetic control of biological processes , 2004, Journal of nanobiotechnology.
[117] G. Hummer,et al. Electric field and temperature effects on water in the narrow nonpolar pores of carbon nanotubes. , 2004, The Journal of chemical physics.
[118] J. Ohkubo,et al. Molecular alignment in a liquid induced by a nonresonant laser field: Molecular dynamics simulation. , 2004, The Journal of chemical physics.
[119] Electric field-controlled water permeation coupled to ion transport through a nanopore. , 2003, The Journal of chemical physics.
[120] A. Amadei,et al. Statistical Mechanical Modeling of Chemical Reactions in Complex Systems: The Reaction Free Energy Surface , 2004 .
[121] Ravindra P. Joshi,et al. Ultrashort electrical pulses open a new gateway into biological cells , 2004, Proceedings of the IEEE.
[122] A. Vegiri. Dynamic response of liquid water to an external static electric field at T=250 K ☆ , 2004 .
[123] D Peter Tieleman,et al. BMC Biochemistry BioMed Central Research article The molecular basis of electroporation , 2004 .
[124] Kwong‐Yu Chan,et al. Structural and transport properties of an SPC/E electrolyte in a nanopore , 2004 .
[125] Fabrizio Mancinelli,et al. Non‐thermal effects of electromagnetic fields at mobile phone frequency on the refolding of an intracellular protein: Myoglobin , 2004, Journal of cellular biochemistry.
[126] Zhong Chen,et al. Molecular dynamics simulation of liquid methanol under the influence of an external electric field , 2005 .
[127] P. Umari,et al. Density functional theory with finite electric field , 2005 .
[128] P. Dugourd,et al. Monte Carlo simulations of flexible molecules in a static electric field: electric dipole and conformation , 2005 .
[129] J. Hansen,et al. Electric-field-controlled water and ion permeation of a hydrophobic nanopore. , 2005, The Journal of chemical physics.
[130] Simulating the relaxation dynamics of microwave-driven zeolites. , 2005, The journal of physical chemistry. B.
[131] Irene Yarovsky,et al. Electric field effects on insulin chain-B conformation. , 2005, The journal of physical chemistry. B.
[132] Fabrizio Mancinelli,et al. Electromagnetic fields at mobile phone frequency induce apoptosis and inactivation of the multi‐chaperone complex in human epidermoid cancer cells , 2005, Journal of cellular physiology.
[133] L. Challis,et al. Mechanisms for interaction between RF fields and biological tissue , 2005, Bioelectromagnetics.
[134] Mounir Tarek,et al. Membrane electroporation: a molecular dynamics simulation. , 2005, Biophysical journal.
[135] K. Travis,et al. A configurational temperature Nosé-Hoover thermostat. , 2005, The Journal of chemical physics.
[136] J. Petravic,et al. Conductivity of molten sodium chloride in an arbitrarily weak dc electric field. , 2005, The Journal of chemical physics.
[137] Niall J. English,et al. Molecular dynamics simulations of liquid water using various long-range electrostatics techniques , 2005 .
[138] D. Sorescu,et al. Effects of an external electromagnetic field on rutile Tio2: A molecular dynamics study , 2006 .
[139] M. Girardi,et al. Three-dimensional square water in the presence of an external electric field. , 2006, The Journal of chemical physics.
[140] D. Wales,et al. Thermodynamics of water octamer in a uniform electric field. , 2006, The Journal of chemical physics.
[141] Peter L. Freddolino,et al. The role of molecular modeling in bionanotechnology , 2006 .
[142] Qin Hu,et al. Molecular Dynamics Analysis of High Electric Pulse Effects on Bilayer Membranes Containing DPPC and DPPS , 2006, IEEE Transactions on Plasma Science.
[143] Kwang S. Kim,et al. Electric field effects on water clusters (n = 3-5): systematic ab initio study of structures, energetics, and transition states. , 2006, The Journal of chemical physics.
[144] Niall J. English,et al. Molecular dynamics simulations of microwave effects on water using different long-range electrostatics methodologies , 2006 .
[145] P. Jungwirth,et al. Homogeneous freezing of water starts in the subsurface. , 2006, The journal of physical chemistry. B.
[146] U. Pliquett,et al. Nanosecond pulsed electric fields cause melanomas to self-destruct , 2006, Conference Record of the 2006 Twenty-Seventh International Power Modulator Symposium.
[147] F. Blum,et al. Molecular dynamics of polystyrene solutions in microwave fields. , 2006, The Journal of chemical physics.
[148] R. Böckmann,et al. Electric field effects on membranes: gramicidin A as a test ground. , 2007, Journal of structural biology.
[149] Matthias Krack,et al. Efficient and accurate Car-Parrinello-like approach to Born-Oppenheimer molecular dynamics. , 2007, Physical review letters.
[150] David J Wales,et al. Energy landscapes for water clusters in a uniform electric field. , 2007, The Journal of chemical physics.
[151] M. Parrinello,et al. Canonical sampling through velocity rescaling. , 2007, The Journal of chemical physics.
[152] K. Schoenbach,et al. High electrical field effects on cell membranes. , 2007, Bioelectrochemistry.
[153] H. Treutlein,et al. Effect of frequency on insulin response to electric field stress. , 2007, The journal of physical chemistry. B.
[154] Microwave heating of water, ice, and saline solution: molecular dynamics study. , 2006, The Journal of chemical physics.
[155] Crystallization of Ca + ions in a linear rf octupole ion trap , 2007 .
[156] N. English,et al. Denaturation of hen egg white lysozyme in electromagnetic fields: a molecular dynamics study. , 2007, The Journal of chemical physics.
[157] C. Chan,et al. Effects of an electric field on a water bilayer on Ag(111) , 2007 .
[158] Matteo Pasquali,et al. Carbon nanotube‐enhanced thermal destruction of cancer cells in a noninvasive radiofrequency field , 2007, Cancer.
[159] Molecular simulation of transport in nanopores: application of the transient-time correlation function formalism. , 2008, Physical review. E, Statistical, nonlinear, and soft matter physics.
[160] Aleksei Aksimentiev,et al. Detection of DNA sequences using an alternating electric field in a nanopore capacitor. , 2008, Nano letters.
[161] Zhongqiao Hu,et al. Electrophoresis in protein crystal: nonequilibrium molecular dynamics simulations. , 2008, Biophysical journal.
[162] S. P. Gejji,et al. Water clusters (H2O)n, n=6-8, in external electric fields. , 2008, The Journal of chemical physics.
[163] F. Apollonio,et al. Mixed Quantum-Classical Methods for Molecular Simulations of Biochemical Reactions With Microwave Fields: The Case Study of Myoglobin , 2008, IEEE Transactions on Microwave Theory and Techniques.
[164] Quirino Balzano,et al. QUANTITATIVE EVALUATIONS OF MECHANISMS OF RADIOFREQUENCY INTERACTIONS WITH BIOLOGICAL MOLECULES AND PROCESSES , 2008, Health physics.
[165] P. Vernier,et al. Interface water dynamics and porating electric fields for phospholipid bilayers. , 2008, The journal of physical chemistry. B.
[166] U. Landman,et al. Electric field control of structure, dimensionality, and reactivity of gold nanoclusters on metal-supported MgO films. , 2008, Physical review letters.
[167] Motoyasu Sato,et al. Enhanced Heating of Salty Ice and Water Under Microwaves: Molecular DynamicsStudy , 2007, The Journal of microwave power and electromagnetic energy : a publication of the International Microwave Power Institute.
[168] Xiongce Zhao,et al. A molecular dynamics simulation study on trapping ions in a nanoscale Paul trap , 2008, Nanotechnology.
[169] D. Branton,et al. The potential and challenges of nanopore sequencing , 2008, Nature Biotechnology.
[170] N. Aluru,et al. Pumping of confined water in carbon nanotubes by rotation-translation coupling. , 2008, Physical review letters.
[171] F. Calvo,et al. Folding of gas-phase polyalanines in a static electric field: alignment, deformations, and polarization effects. , 2008, Biophysical journal.
[172] H. Treutlein,et al. Comparative study of insulin chain-B in isolated and monomeric environments under external stress. , 2008, The journal of physical chemistry. B.
[173] Niall J. English. Effect of electrostatics techniques on the estimation of thermal conductivity via equilibrium molecular dynamics simulation: application to methane hydrate , 2008 .
[174] K. Travis,et al. Configurational temperature control for atomic and molecular systems. , 2008, The Journal of chemical physics.
[175] T. Ramalho,et al. Electrical field effects on dipole moment, structure and energetic of (H2O)n (2 ⩽ n ⩽ 15) cluster , 2009 .
[176] F. Biscarini,et al. Effects of electric field stress on a beta-amyloid peptide. , 2009, The journal of physical chemistry. B.
[177] N. English,et al. Carbon nanotube assisted water self-diffusion across lipid membranes in the absence and presence of electric fields , 2009 .
[178] N. English,et al. Estimation of zeta potentials of titania nanoparticles by molecular simulation , 2009 .
[179] Wei Zhao,et al. Effect of high-intensity pulsed electric fields on the activity, conformation and self-aggregation of pepsin , 2009 .
[180] R. Hentschke,et al. Dipolar particles in an external field: Molecular dynamics simulation and mean field theory. , 2009, Physical review. E, Statistical, nonlinear, and soft matter physics.
[181] N. English,et al. Electromagnetic field effects on binary dimethylimidazolium-based ionic liquid/water solutions. , 2009, Physical chemistry chemical physics : PCCP.
[182] N. English,et al. Static and alternating electric field and distance-dependent effects on carbon nanotube-assisted water self-diffusion across lipid membranes. , 2009, The Journal of chemical physics.
[183] T. Monz,et al. Realization of the quantum Toffoli gate with trapped ions. , 2008, Physical review letters.
[184] N. English,et al. Very different responses to electromagnetic fields in binary ionic liquid-water solutions. , 2009, The journal of physical chemistry. B.
[185] P. Burke,et al. Time-dependent R -matrix theory for ultrafast atomic processes , 2009 .
[186] N. English,et al. Nonequilibrium molecular dynamics study of electric and low-frequency microwave fields on hen egg white lysozyme. , 2009, The Journal of chemical physics.
[187] F. Biscarini,et al. Electric Field Effects on Short Fibrils of Aβ Amyloid Peptides. , 2010, Journal of chemical theory and computation.
[188] Rafael Mulero,et al. Nanopore-Based Devices for Bioanalytical Applications , 2010 .
[189] Margaret E. Johnson,et al. Current status of the AMOEBA polarizable force field. , 2010, The journal of physical chemistry. B.
[190] N. English,et al. Hydrogen bond perturbation in hen egg white lysozyme by external electromagnetic fields: a nonequilibrium molecular dynamics study. , 2010, The Journal of chemical physics.
[191] S. Shaik,et al. External Electric Field Can Control the Catalytic Cycle of Cytochrome P450cam: A QM/MM Study , 2010 .
[192] Andrew Nelson,et al. Phase phenomena in supported lipid films under varying electric potential , 2010, 1007.3004.
[193] N. English,et al. Electrical conductivity and dipolar relaxation of binary dimethylimidazolium chloride–water solutions: A molecular dynamics study , 2010 .
[194] B. Lanyon,et al. Towards quantum chemistry on a quantum computer. , 2009, Nature chemistry.
[195] Martina Havenith,et al. Combining THz spectroscopy and MD simulations to study protein-hydration coupling. , 2010, Methods.
[196] M. Gaestel,et al. Biological monitoring of non‐thermal effects of mobile phone radiation: recent approaches and challenges , 2009, Biological reviews of the Cambridge Philosophical Society.
[197] Jun Tan,et al. Electromagnetic field treatment protects against and reverses cognitive impairment in Alzheimer's disease mice. , 2010, Journal of Alzheimer's disease : JAD.
[198] M. Reed,et al. A long DNA segment in a linear nanoscale Paul trap , 2010, Nanotechnology.
[199] P. Thomas Vernier,et al. Life Cycle of an Electropore: Field-Dependent and Field-Independent Steps in Pore Creation and Annihilation , 2010, The Journal of Membrane Biology.
[200] D. P. Luis,et al. Electrodissociation of clathrate-like structures , 2010 .
[201] S. Grimme,et al. Electric field induced activation of H2--can DFT do the job? , 2010, Chemical communications.
[202] J. Smiatek,et al. Polyelectrolyte electrophoresis in nanochannels: a dissipative particle dynamics simulation. , 2010, The journal of physical chemistry. B.
[203] S. P. Gejji,et al. Methanol clusters (CH3OH)n, n = 3-6 in external electric fields: density functional theory approach. , 2011, The Journal of chemical physics.
[204] W. Conner,et al. Experimental evidence of selective heating of molecules adsorbed in nanopores under microwave radiation. , 2011, Physical review letters.
[205] H. Kreuzer,et al. Water whiskers in high electric fields. , 2011, Physical chemistry chemical physics : PCCP.
[206] G. D'Inzeo,et al. Modeling of chemical reactions in micelle: water-mediated keto-enol interconversion as a case study. , 2011, The journal of physical chemistry. B.
[207] J. Tse,et al. Density fluctuations in liquid water. , 2011, Physical review letters.
[208] A. Castro,et al. Water molecules in ultrashort intense laser fields , 2011, 1112.2618.
[209] Sindy K. Y. Tang,et al. Externally applied electric fields up to 1.6 × 10(5) V/m do not affect the homogeneous nucleation of ice in supercooled water. , 2011, The journal of physical chemistry. B.
[210] C. Vega,et al. Phase diagram of water under an applied electric field. , 2011, Physical review letters.
[211] D. Wales,et al. Physical properties of small water clusters in low and moderate electric fields. , 2011, The Journal of chemical physics.
[212] S. O'Brien,et al. Ionic liquids in external electric and electromagnetic fields: a molecular dynamics study , 2011 .
[213] K. Ryan,et al. Electrophoretic deposition of poly(3-decylthiophene) onto gold-mounted cadmium selenide nanorods. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[214] G. Patey,et al. Heterogeneous Ice Nucleation Induced by Electric Fields , 2011 .
[215] Niall J. English,et al. Human aquaporin 4 gating dynamics in dc and ac electric fields: a molecular dynamics study. , 2011, The Journal of chemical physics.
[216] Tong-Yi Zhang,et al. Molecular dynamics simulations of phase transition of lamellar lipid membrane in water under an electric field , 2011 .
[217] Coupling of translational and rotational motion in chiral liquids in electromagnetic and circularly polarised electric fields. , 2012, The Journal of chemical physics.
[218] Niall J. English,et al. Effects of external electromagnetic fields on the conformational sampling of a short alanine peptide , 2012, J. Comput. Chem..
[219] M. Breton,et al. Microsecond and nanosecond electric pulses in cancer treatments , 2012, Bioelectromagnetics.
[220] L. Colombo,et al. Theory and Monte Carlo simulations for the stretching of flexible and semiflexible single polymer chains under external fields. , 2012, The Journal of chemical physics.
[221] M. Risk,et al. Size-controlled nanopores in lipid membranes with stabilizing electric fields. , 2012, Biochemical and biophysical research communications.
[222] Christian Robert Trott,et al. Molecular Dynamics Simulations of Clathrate Hydrates on Specialised Hardware Platforms , 2012 .
[223] Lucie Delemotte,et al. Molecular Dynamics Simulations of Lipid Membrane Electroporation , 2012, The Journal of Membrane Biology.
[224] K. Ryan,et al. Controlled semiconductor nanorod assembly from solution: influence of concentration, charge and solvent nature , 2012 .
[225] J. van den Brink,et al. Testing the validity of the strong spin-orbit-coupling limit for octahedrally coordinated iridate compounds in a model system Sr3CuIrO6. , 2012, Physical review letters.
[226] Carsten A. Ullrich,et al. Time-Dependent Density-Functional Theory: Concepts and Applications , 2012 .
[227] Xiaomin Liu,et al. Structure of ionic liquids under external electric field: a molecular dynamics simulation , 2012 .
[228] A. M. Saitta,et al. Ab initio molecular dynamics study of dissociation of water under an electric field. , 2012, Physical review letters.
[229] Aleksei Aksimentiev,et al. Slowing down DNA translocation through a nanopore in lithium chloride. , 2012, Nano letters.
[230] G. Patey,et al. Molecular dynamics simulations of ice nucleation by electric fields. , 2012, The journal of physical chemistry. A.
[231] Pengyu Y. Ren,et al. The Polarizable Atomic Multipole-based AMOEBA Force Field for Proteins. , 2013, Journal of chemical theory and computation.
[232] F. Apollonio,et al. Feasibility for Microwaves Energy to Affect Biological Systems Via Nonthermal Mechanisms: A Systematic Approach , 2013, IEEE Transactions on Microwave Theory and Techniques.
[233] Joost VandeVondele,et al. Efficient Linear-Scaling Density Functional Theory for Molecular Systems. , 2013, Journal of chemical theory and computation.
[234] N. English. Massively-Parallel Molecular Dynamics Simulation of Clathrate Hydrates on Blue Gene Platforms , 2013 .
[235] François Bottin,et al. Kinetic Monte Carlo study of protonic diffusion and conduction in Gd-doped BaCeO3 , 2013 .
[236] M. Liberti,et al. Human aquaporin 4 gating dynamics under and after nanosecond-scale static and alternating electric-field impulses: a molecular dynamics study of field effects and relaxation. , 2013, The Journal of chemical physics.
[237] G. He,et al. Pumping of water through carbon nanotubes by rotating electric field and rotating magnetic field , 2013 .
[238] M. Parrinello,et al. From metadynamics to dynamics. , 2013, Physical review letters.
[239] R. Khusnutdinoff. Dynamics of a network of hydrogen bonds upon water electrocrystallization , 2013, Colloid Journal.
[240] L. Bartolotti,et al. Exploring electric field induced structural evolution of water clusters, (H2O)n [n = 9-20]: density functional approach. , 2013, The Journal of chemical physics.
[241] D. Miklavčič,et al. On the Electroporation Thresholds of Lipid Bilayers: Molecular Dynamics Simulation Investigations , 2013, The Journal of Membrane Biology.
[242] Niall J. English,et al. Translational and rotational diffusive motion in liquid water in square-wave time-varying electric fields , 2013 .
[243] G. Patey,et al. Ice nucleation by electric surface fields of varying range and geometry. , 2013, The Journal of chemical physics.
[244] G. D'Inzeo,et al. Effect of high exogenous electric pulses on protein conformation: myoglobin as a case study. , 2013, The journal of physical chemistry. B.
[245] K. Ryan,et al. Highly ordered nanorod assemblies extending over device scale areas and in controlled multilayers by electrophoretic deposition. , 2013, The journal of physical chemistry. B.
[246] B. D. Todd,et al. Electropumping of water with rotating electric fields. , 2013, The Journal of chemical physics.
[247] S. V. Shevkunov,et al. Water vapor nucleation on a crystal surface in a strong electric field , 2013, Colloid Journal.
[248] H. Dammak,et al. Low-temperature anharmonicity of barium titanate: A path-integral molecular-dynamics study , 2012, 1212.5569.
[249] Niall J. English,et al. Massively parallel molecular-dynamics simulation of ice crystallisation and melting: the roles of system size, ensemble, and electrostatics. , 2014, The Journal of chemical physics.
[250] P. E. Keivanidis,et al. Carrier motion in as-spun and annealed P3HT:PCBM blends revealed by ultrafast optical electric field probing and Monte Carlo simulations. , 2014, Physical chemistry chemical physics : PCCP.
[251] Niall J. English,et al. Thermal Conductivity of Supercooled Water: An Equilibrium Molecular Dynamics Exploration. , 2014, The journal of physical chemistry letters.
[252] W. Geng,et al. Effects of the electric field on the properties of ZnO-graphene composites: a density functional theory study. , 2014, Physical chemistry chemical physics : PCCP.
[253] B. D. Todd,et al. Molecular dynamics study of nanoconfined water flow driven by rotating electric fields under realistic experimental conditions. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[254] Monte Carlo simulation of the kinetic collisional equation with external fields , 2014 .
[255] F. Calvo,et al. Atomistic modeling of vibrational action spectra in polyatomic molecules: nuclear quantum effects. , 2014, The journal of physical chemistry. A.
[256] Niall J. English,et al. Massively parallel molecular dynamics simulation of formation of clathrate-hydrate precursors at planar water-methane interfaces: insights into heterogeneous nucleation. , 2014, The Journal of chemical physics.
[257] Franz Saija,et al. Miller experiments in atomistic computer simulations , 2014, Proceedings of the National Academy of Sciences.
[258] Niall J. English,et al. Dipolar response and hydrogen-bond kinetics in liquid water in square-wave time-varying electric fields , 2014 .
[259] F. Djurabekova,et al. Molecular Dynamics Simulations of Ion Irradiation of a Surface under an Electric Field , 2014 .
[260] Niall J. English,et al. Perspectives on molecular simulation of clathrate hydrates: Progress, prospects and challenges , 2015 .
[261] Communication: influence of nanosecond-pulsed electric fields on water and its subsequent relaxation: dipolar effects and debunking memory. , 2015, The Journal of chemical physics.