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Nanoscale Structure in Short-Chain Ionic Liquids
Diego Pontoni
, Marco DiMichiel
, Moshe Deutsch
Department of Physics - at Bar-Ilan University
European Synchrotron Radiation Facility
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Scopus citations
Overview
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Keyphrases
Ionic Liquid
100%
Nanoscale Structure
100%
Short Chain
100%
Increased Temperature
50%
Coulomb
50%
Reduction Temperature
50%
Correlation Length
50%
Methylene
50%
Diffraction Pattern
50%
Family Model
50%
Observed Trends
50%
Line Shape
50%
Chain Length
50%
Coefficient of Thermal Expansion
50%
Van Der Waals
50%
Melting Temperature
50%
Room Temperature Ionic Liquid
50%
Packing Constraint
50%
Temperature Scale
50%
Main Peak
50%
Cationic Chains
50%
T-chain
50%
Teubner
50%
Apolar
50%
Engineering
Nanomaterial
100%
Correlation Length
50%
Reduced Temperature
50%
Coulomb Interaction
50%
Increasing Temperature
50%
Measured Value
50%
Melting Temperature
50%
Expansion Coefficient
50%
Room Temperature
50%
Temperature Scale
50%