imidazolium ionic liquid interfaces with vapor and

[PDF] Lower critical solution temperature (LCST) phase

Lower critical solution temperature (LCST) phase behaviour of an imidazolium-based ionic liquid is reported, which can be controlled by concentration, the choice of cation, anion and solvent, and by supramolecular host-guest complex formation. Molecular dynamics simulations provide insight into the molecular basis of this LCST phenomenon. This thermo-responsive system has potential

Imidazolium Ionic Liquid Interfaces with Vapor and

Imidazolium Ionic Liquid Interfaces with Vapor and Graphite: Interfacial Tension and Capacitance from Coarse-Grained Molecular Simulations By C Merlet, M Salanne, B Rotenberg and PA Madden No static citation data No static citation data Cite

Synthesis and characterization of branched polymeric ionic

A branched polymeric ionic liquid (PIL) with imidazolium cation segments in the main chain connecting branching points was prepared in 95% yield by heating an equimolar mixture of 1,3,5-tris-(4-chlorobutoxy)-benzene and 1,3,5-tris-(4-imidazol-1-yl-butoxy)-benzene at 80 C for 16 h. Similarly, condensation of a mixture of 1,3,5-tris-(4-imidazol-1-yl-butoxy)-benzene and 1,4-dichlorobutane in 1

(PDF) Synthesis and characterization of polymeric ionic

Keywords Ionic liquid polymer Imidazolium cation Addition polymerization Introduction Ionic liquids are well known for their unique combination of attractive properties such as negligible vapor pressure, thermal stability, nonflammability, high ionic conductivity

(PDF) Surface Characterization of Imidazolium

Advancement in the field of ionic liquid technology requires a comprehensive understanding of their surface properties, as a wide range of chemical reactions occur mainly at interfaces. As essential media currently used in several technological

[PDF] Lower critical solution temperature (LCST) phase

Lower critical solution temperature (LCST) phase behaviour of an imidazolium-based ionic liquid is reported, which can be controlled by concentration, the choice of cation, anion and solvent, and by supramolecular host-guest complex formation. Molecular dynamics simulations provide insight into the molecular basis of this LCST phenomenon. This thermo-responsive system has potential

Synthesis and characterization of branched polymeric ionic

A branched polymeric ionic liquid (PIL) with imidazolium cation segments in the main chain connecting branching points was prepared in 95% yield by heating an equimolar mixture of 1,3,5-tris-(4-chlorobutoxy)-benzene and 1,3,5-tris-(4-imidazol-1-yl-butoxy)-benzene at 80 C for 16 h. Similarly, condensation of a mixture of 1,3,5-tris-(4-imidazol-1-yl-butoxy)-benzene and 1,4-dichlorobutane in 1

Nanoscale perturbations of room temperature ionic liquid

2012/11/271. ACS Nano. 2012 Nov 27;6(11):9818-27. doi: 10.1021/nn303355b. Epub 2012 Oct 30. Nanoscale perturbations of room temperature ionic liquid structure at charged and uncharged interfaces. Zhou H(1), Rouha M, Feng G, Lee SS, Docherty H, Fenter P, Cummings

[PDF] Lower critical solution temperature (LCST) phase

Lower critical solution temperature (LCST) phase behaviour of an imidazolium-based ionic liquid is reported, which can be controlled by concentration, the choice of cation, anion and solvent, and by supramolecular host-guest complex formation. Molecular dynamics simulations provide insight into the molecular basis of this LCST phenomenon. This thermo-responsive system has potential

Ionic Liquids Based Electrolytes for Rechargeable

Ionic liquids (ILs) have many useful properties, including low vapor pressure, a broad liquid state temperature window, high chemical and thermal stability, wide electrochemical voltage window, non-flammability, high ionic conductivity, and good solubility in various

Ionic Liquids Based Electrolytes for Rechargeable

Ionic liquids (ILs) have many useful properties, including low vapor pressure, a broad liquid state temperature window, high chemical and thermal stability, wide electrochemical voltage window, non-flammability, high ionic conductivity, and good solubility in various

Influence of Various Ionic Liquids Embedded Electrospun

Influence of alkyl chain length and the concentration of various imidazolium-based ionic liquids embedded electrospun PVDF-HFP membrane electrolytes on photovoltaic performance of DSSC were investigated for the first time. 1 Electrochemical Energy Research Lab, Centre for Nanoscience and Technology, Pondicherry University, Puducherry - 605 014, India

IJMS

Mixtures of polyethylene oxide (PEO, M.W.~900,000) and imidazolium ionic liquids (ILs) are studied using high-pressure Fourier-transform infrared spectroscopy. At ambient pressure, the spectral features in the Cndash;H stretching region reveal that PEO can disturb the local structures of the imidazolium rings of [BMIM]+ and [HMIM]+. The pressure-induced phase transition of pure 1-butyl-3

Ionic Liquids Based Electrolytes for Rechargeable

Ionic liquids (ILs) have many useful properties, including low vapor pressure, a broad liquid state temperature window, high chemical and thermal stability, wide electrochemical voltage window, non-flammability, high ionic conductivity, and good solubility in various

Ionic Liquids and Poly(ionic liquid)s for Morphosynthesis of

Max Planck Insti tute of Colloids and Interfaces Author Manuscript 1. Introduction Ionic liquids (ILs) are liquids composed entirely of ions with melting point below 100 oC, were first discovered by Paul Walden in 1914[1], and found great interest in both academia and industry.

(PDF) Surface Characterization of Imidazolium

Advancement in the field of ionic liquid technology requires a comprehensive understanding of their surface properties, as a wide range of chemical reactions occur mainly at interfaces. As essential media currently used in several technological

CiteSeerX — Interaction of Water Vapor with the Surfaces

BibTeX MISC{Macmillan_interactionof, author = {A C. Macmillan and Theresa M. Mcintire and J. Alfredo Freites and Douglas J. Tobias and Sergey A. Nizkorodov}, title = {Interaction of Water Vapor with the Surfaces of Imidazolium-Based Ionic Liquid Nanoparticles and Thin Films}, year = {}}

Nanocapillary confinement of imidazolium based ionic

Interfaces of ionic liquids have been found to induce structural changes with evidence of long range structural ordering on solid–liquid interfaces spanning length scales of 10–100 nm. Our aim is to characterize the influence of confinement on the structural properties of ionic liquids.

(PDF) Imidazolium Ionic Liquid Crystals With Pendant

Imidazolium Ionic Liquid Crystals With Pendant Mesogenic Groups Chem. Mater, 2008 Peter Nockemann Download PDF Download Full PDF Package This paper A short summary of this paper 37 Full PDFs related to this paper READ PAPER Imidazolium Ionic

(PDF) Imidazolium Ionic Liquid Crystals With Pendant

Imidazolium Ionic Liquid Crystals With Pendant Mesogenic Groups Chem. Mater, 2008 Peter Nockemann Download PDF Download Full PDF Package This paper A short summary of this paper 37 Full PDFs related to this paper READ PAPER Imidazolium Ionic

(PDF) Synthesis and characterization of polymeric ionic

Keywords Ionic liquid polymer Imidazolium cation Addition polymerization Introduction Ionic liquids are well known for their unique combination of attractive properties such as negligible vapor pressure, thermal stability, nonflammability, high ionic conductivity

Chemically Cross

Chemically Cross-Linked MOF Membrane Generated from Imidazolium-Based Ionic Liquid-Decorated UiO-66 Type NMOF and Its Application toward CO2 Separation and Conversion ACS Applied Materials Interfaces ( IF 8.758) Pub Date : 2017-10-25 00:00:00, DOI: 10.1021/acsami.7b12697

(PDF) Synthesis and characterization of polymeric ionic

Keywords Ionic liquid polymer Imidazolium cation Addition polymerization Introduction Ionic liquids are well known for their unique combination of attractive properties such as negligible vapor pressure, thermal stability, nonflammability, high ionic conductivity

Imidazolium Polyesters: Structure–Property Relationships

Renlong Gao, Mingqiang Zhang, Shih‐Wa Wang, Robert B. Moore, Ralph H. Colby, Timothy E. Long, Polyurethanes Containing an Imidazolium Diol‐Based Ionic‐Liquid Chain Extender for Incorporation of Ionic‐Liquid Electrolytes, Macromolecular Chemistry and214

(PDF) Surface Characterization of Imidazolium

Advancement in the field of ionic liquid technology requires a comprehensive understanding of their surface properties, as a wide range of chemical reactions occur mainly at interfaces. As essential media currently used in several technological

Particle swarm modeling of vapor

Based on particle swarm optimization (PSO), a thermodynamic modeling for the vapor-liquid equilibrium of binary mixtures of carbon dioxide with ionic liquids is presented. The Peng-Robinson equation of state with the Wong-Sandler mixing rules is used to evaluate the fugacity coefficient of the systems. Simulations are carried out in five systems containing 1-alkyl-3-methylimidazolium ionic

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