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A Spontaneously Electrical State of Matter
Andrew M. Cassidy
,
Martin R. S. McCoustra
, David Field
Institute of Chemical Sciences
School of Engineering & Physical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Citations (Scopus)
37
Downloads (Pure)
Overview
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INIS
films
100%
solids
66%
electric fields
66%
interactions
33%
dynamics
25%
dipoles
25%
surfaces
16%
temperature dependence
16%
interfaces
16%
mean-field theory
16%
thin films
16%
deposition
16%
electrostatics
16%
charges
16%
polarization
16%
carbon monoxide
16%
surface potential
16%
growth
8%
data
8%
substrates
8%
inclusions
8%
rotation
8%
molecules
8%
nonlinear problems
8%
hydrogen
8%
feedback
8%
glass
8%
relaxation
8%
energy
8%
connections
8%
voltage
8%
ammonia
8%
molecular structure
8%
excitons
8%
bonding
8%
absorption spectra
8%
orientation
8%
alcohols
8%
catalysts
8%
ultraviolet radiation
8%
dispersions
8%
chemistry
8%
formates
8%
alignment
8%
packing
8%
nitrous oxide
8%
dipole moments
8%
metastable states
8%
freons
8%
Physics
State of Matter
100%
Electric Field
100%
Field Strength
37%
Electrostatics
25%
Thin Films
25%
Carbon Monoxide
25%
Intermolecular Force
25%
Molecular Structure
12%
Nonlinear Effect
12%
Exciton
12%
Dipole Moment
12%
Nitrous Oxide
12%
Interstellar Matter
12%
Structural Dynamics
12%
Condensation
12%
Absorption Spectra
12%
Temperature Dependence
12%
Self Organization
12%
Broadband
12%
Solid Surface
12%
Material Science
Film
100%
Surface (Surface Science)
20%
Carbon Monoxide
20%
Thin Films
20%
Surface Charge
10%
Film Deposition
10%
Film Growth
10%
Hydrogen Bonding
10%
Electrostatic Interaction
10%
Structural Dynamics
10%
Oxide Compound
10%
Molecular Structure
10%
Absorption Spectra
10%