4639 - 4640 |
The physical chemistry of ionic liquids Wishart JF, Castner EW |
4641 - 4644 |
Nanoscale segregation in room temperature ionic liquids Triolo A, Russina O, Bleif HJ, Di Cola E |
4645 - 4652 |
Ion gels by self-assembly of a triblock copolymer in an ionic liquid He YY, Boswell PG, Buhlmann P, Lodge TP |
4653 - 4658 |
Anharmonic effects in ammonium nitrate and hydroxylammonium nitrate clusters Kumarasiri M, Swalina C, Hammes-Schiffer S |
4659 - 4668 |
Solvation of uranium hexachloro complexes in room-temperature ionic liquids. A molecular dynamics investigation in two liquids Schurhammer R, Wipff G |
4669 - 4677 |
Nanostructural organization and anion effects on the temperature dependence of the optical Kerr effect spectra of ionic liquids Xiao D, Rajian JR, Cady A, Li SF, Bartsch RA, Quitevis EL |
4678 - 4684 |
Conductivity-viscosity-structure: Unpicking the relationship in an ionic liquid Salanne M, Simon C, Turq P, Madden PA |
4685 - 4692 |
Tetraalkylphosphonium polyoxometalate ionic liquids: Novel, organic-inorganic hybrid materials Rickert PG, Antonio MR, Firestone MA, Kubatko KA, Szreder T, Wishart JF, Dietz ML |
4693 - 4704 |
Electrodeposition of al in 1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)amide and 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)amide ionic liquids: In situ STM and EQCM studies Moustafa EM, El Abedin SZ, Shkurankov A, Zschippang E, Saad AY, Bund A, Endres F |
4705 - 4714 |
On the response of an ionic liquid to external perturbations and the calculation of shear viscosity Hu ZH, Margulis CJ |
4715 - 4723 |
Surface orientation of 1-methyl-, 1-ethyl-, and 1-butyl-3-methylimidazolium methyl sulfate as probed by sum-frequency generation vibrational spectroscopy Santos CS, Baldelli S |
4724 - 4731 |
Solute rotation and solvation dynamics in an alcohol-functionalized room temperature ionic liquid Paul A, Samanta A |
4732 - 4736 |
Separation of benzene and hexane by solvent extraction with 1-alkyl-3-methylimidazolium bis{(trifluoromethyl)sulfonyl}amide ionic liquids: Effect of the alkyl-substituent length Arce A, Earle MJ, Rodriguez H, Seddon KR |
4737 - 4741 |
Salting-out effects in aqueous ionic liquid solutions: Cloud-point temperature shifts Trindade JR, Visak ZP, Blesic M, Marrucho IM, Coutinho JAP, Lopes JNC, Rebelo LPN |
4742 - 4749 |
Ionic liquids based on dicyanamide anion: Influence of structural variations in cationic structures on ionic conductivity Yoshida Y, Baba O, Saito G |
4750 - 4754 |
Difference in lower critical solution temperature behavior between random copolymers and a homopolymer having solvatophilic and solvatophobic structures in an ionic liquid Ueki T, Karino T, Kobayashi Y, Shibayama M, Watanabe M |
4755 - 4762 |
Electrostatic interactions of a neutral dipolar solute with a fused salt: A new model for solvation in ionic liquids Kobrak MN |
4763 - 4769 |
Dye-sensitized TiO2 solar cells using imidazolium-type ionic liquid crystal systems as effective electrolytes Yamanaka N, Kawano R, Kubo W, Masaki N, Kitamura T, Wada Y, Watanabe M, Yanagida S |
4770 - 4774 |
Electron photodetachment from iodide in ionic liquids through charge-transfer-to-solvent band excitation Katoh R, Yoshida Y, Katsumura Y, Takahashi K |
4775 - 4780 |
The dielectric response of room-temperature ionic liquids: Effect of cation variation Weingartner H, Sasisanker P, Daguenet C, Dyson PJ, Krossing I, Slattery JM, Schubert T |
4781 - 4787 |
Dynamics of solvent and rotational relaxation of coumarin-153 in room-temperature ionic liquid 1-butyl-3-methyl imidazolium tetrafluoroborate confined in poly(oxyethylene glycol) ethers containing micelles Seth D, Chakraborty A, Setua P, Sarkar N |
4788 - 4800 |
Accurate thermochemical properties for energetic materials applications. II. Heats of formation of imidazolium-, 1,2,4-triazolium-, and tetrazolium-based energetic salts from isodesmic and lattice energy calculations Gutowski KE, Rogers RD, Dixon DA |
4801 - 4806 |
Temperature-dependent electronic and vibrational structure of the 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)amide room-temperature ionic liquid surface: A study with XPS, UPS, MIES, and HREELS Krischok S, Eremtchenko M, Himmerlich M, Lorenz P, Uhlig J, Neumann A, Ottking R, Beenken WJD, Hofft O, Bahr S, Kempter V, Schaefer JA |
4807 - 4811 |
Reaction between diiodide anion radicals in ionic liquids Takahashi K, Sakai S, Tezuka H, Hiejima Y, Katsumura Y, Watanabe M |
4812 - 4818 |
Molecular dynamics simulation of nanostructural organization in ionic liquid/water mixtures Jiang W, Wang YT, Voth GA |
4819 - 4829 |
Intermolecular interactions and dynamics of room temperature ionic liquids that have silyl- and siloxy-substituted imidazolium cations Shirota H, Wishart JF, Castner EW |
4830 - 4836 |
Ultrafast dynamics of room temperature ionic liquids after ultraviolet femtosecond excitation Brands H, Chandrasekhar N, Unterreiner AN |
4837 - 4843 |
Characterization of the ability of CO2 to act as an antisolvent for ionic liquid/organic mixtures Mellein BR, Brennecke JF |
4844 - 4853 |
Why does a reduction in hydrogen bonding lead to an increase in viscosity for the 1-butyl-2,3-dimethyl-imidazolium-based ionic liquids? Hunt PA |
4854 - 4859 |
Terahertz time-domain spectroscopy of imidazolium ionic liquids Yamamoto K, Tani M, Hangyo M |
4860 - 4866 |
Local structure at the air/liquid interface of room-temperature ionic liquids probed by infrared-visible sum frequency generation vibrational spectroscopy: 1-alkyl-3-methylimidazolium tetrafluoroborates Iimori T, Iwahashi T, Kanai K, Seki K, Sung JH, Kim D, Hamaguchi HO, Ouchi Y |
4867 - 4876 |
Effect of temperature and water content on the shear viscosity of the ionic liquid 1-ethyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide as studied by atomistic simulations Kelkar MS, Maginn EJ |
4877 - 4884 |
Polarization relaxation in an ionic liquid confined between electrified walls Pinilla C, Del Popolo MG, Kohanoff J, Lynden-Bell RM |
4885 - 4893 |
Nuclear magnetic resonance study of the dynamics of imidazolium ionic liquids with -CH2Si(CH3)(3) vs -CH2C(CH3)(3) substituents Chung SH, Lopato R, Greenbaum SG, Shirota H, Castner EW, Wishart JF |
4894 - 4900 |
Melting and freezing behaviors of prototype ionic liquids, 1-butyl-3-methylimidazolium bromide and its chloride, studied by using a nano-watt differential scanning calorimeter Nishikawa K, Wang SL, Katayanagi H, Hayashi S, Hamaguchi HO, Koga Y, Tozaki KI |
4901 - 4909 |
Vibrational spectroscopy and dynamics of azide ion in ionic liquid and dimethyl sulfoxide water mixtures Sando GM, Dahl K, Owrutsky JC |
4910 - 4913 |
Application of hole theory to define ionic liquids by their transport properties Abbott AP, Harris RC, Ryder KS |
4914 - 4919 |
Picosecond time-resolved fluorescence study on solute-solvent interaction of 2-aminoquinoline in room-temperature ionic liquids: Aromaticity of imidazolium-based ionic liquids Iwata K, Kakita M, Hamaguchi HO |
4920 - 4925 |
Effects of solute electronic polarizability on solvation in a room-temperature ionic liquid Jeong D, Shim Y, Choi MY, Kim HJ |
4926 - 4937 |
Protic ionic liquids: Preparation, characterization, and proton free energy level representation Belieres JP, Angell CA |
4938 - 4950 |
Neutral and charged 1-butyl-3-methylimidazolium triflate clusters: Equilibrium concentration in the vapor phase and thermal properties of nanometric droplets Ballone P, Pinilla C, Kohanoff J, Del Popolo MG |
4951 - 4962 |
Rhodium-catalyzed hydroformylation of 1-hexene in an ionic liquid: A molecular dynamics study of the hexene/[BMI][PF6] interface Sieffert N, Wipff G |
4963 - 4977 |
Fluorescence probing of temperature-dependent dynamics and friction in ionic liquid local environments Funston AM, Fadeeva TA, Wishart JF, Castner EW |
4978 - 4989 |
Measurements of the complete solvation response in ionic liquids Arzhantsev S, Jin H, Baker GA, Maroncelli M |
4990 - 4999 |
Structure and orientation of the imidazolium cation at the room-temperature ionic liquid/SiO2 interface measured by sum-frequency vibrational spectroscopy Rollins JB, Fitchett BD, Conboy JC |
5000 - 5007 |
An electrochemical study of the oxidation of hydrogen at platinum electrodes in several room temperature ionic liquids Silvester DS, Aldous L, Hardacre C, Compton RG |
5008 - 5015 |
Correlation between quasielastic Raman scattering and configurational entropy in an ionic liquid Ribeiro MCC |
5016 - 5022 |
Solvation dynamics and electric field relaxation in an imidazolium-PF6 ionic liquid: From room temperature to the glass transition Ito N, Richert R |
5023 - 5029 |
Photoinduced electron-transfer reactions in two room-temperature ionic liquids: 1-butyl-3-methylimidazolium hexafluorophosphate and 1-octyl-3-methylimidazolium hexafluorophosphate Vieira RC, Falvey DE |