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81 results for “ionic liquids”
Competition of Acetone Reduction and Hydrogen Evolution on Pt Single Crystal Electrodes in Absence and Presence of the Ionic Liquid [C2C1Im][OTf]
<p>Raw and treated data</p>
Data from: Optimization and kinetic study of methyl laurate synthesis using ionic liquid [Hnmp]HSO4 as a catalyst
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Data from: Catalytic synthesis of n-butyl carboxylate with immobilized ionic liquid based on RSM optimization
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Transcriptome analysis of ionic-liquid tolerant Bacillus amyloliquefaciens CMW1 and identification of a novel efflux pump
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Data from: Variations of thermophysical properties and heat transfer performance of nanoparticle-enhanced ionic liquids
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Data from: Synthesis and investigation of physicochemical properties of dicationic ionic liquids
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Transcriptional toxicity of imidazolium- and cholinium-based ionic liquids
GEO Series GSE156769. Daphnia magna. 12 samples. Type: Expression profiling by high throughput sequencing.
Data from: Fabrication and characterization of Ni-decorated h-BN powders with ChCl-EG ionic liquid as addition by electroless deposition
Electroless plating nickel particles on hexagonal boron nitride (h-BN) of ceramic powders are investigated in this paper. As comparison, the different additive concentration of choline chloride-ethylene glycol (ChCl-EG) ionic liquid (0g/L, 30g/L, 60g/L, 90g/L) is presented. The effects of ChCl-EG concentration are studied, including the surface morphologies, phase analysis of Ni-decorated h-BN powders, and the residual Ni2+ concentration is measured in electroless plating bath. It is demonstrated that the deposition phenomena of nickel particles on h-BN surface is changed with the addition of ChCl-EG. When the concentration of ChCl-EG is 30g/L, the Ni particles on h-BN surface are in dispersed and spheroid state with the average size of 10-1000nm. It can be found that 30g/L ChCl-EG is conducive to the arise of deposition phenomena, which is the formation of the single nickel particle on h-BN surface. Besides, more Ni particles are deposited on h-BN surface with the increase of plating nickel times, which is characterized with scanning electron microscope (SEM) and transmission electron microscope (TEM). Furthermore, the deposition phenomenon and growth mechanism are proposed without and with ChCl-EG as additive to further elaborate the formation of Ni particles on h-BN surface.
Self-Assembled Supported Ionic Liquids
<p>Raw and processed data from MAS NMR, NMR in solution, Elemental analysis, N2 adsorption–desorption isotherms and Small Angle X-ray scattering (SAXS) measurements, for the article "Self-Assembled Supported Ionic Liquids".</p>
Figure 3 from: Neamah MJ, Al-Akkam EJM (2024) Preparation and characterization of vemurafenib microemulsion based hydrogel using surface active ionic liquid. Pharmacia 71: 1-9. https://doi.org/10.3897/pharmacia.71.e111178
Figure 3 Rheological behaviour of different microemulsion-based hydrogel formulas.
Figure 2 from: Neamah MJ, Al-Akkam EJM (2024) Preparation and characterization of vemurafenib microemulsion based hydrogel using surface active ionic liquid. Pharmacia 71: 1-9. https://doi.org/10.3897/pharmacia.71.e111178
Figure 2 Release profile of vemurafenib from different SAIL-based microemulsion formulas.
Charge storage and operando electrochemical dilatometry of MXene electrodes in ionic liquids
<p>data and metadata fo the publication with the doi:</p> <p>https://doi.org/10.1016/j.ensm.2024.103771</p> <p> </p>
Understanding the Buoy Effect of Surface-Enriched Pt Complexes in Ionic Liquids: A Combined ARXPS and Pendant Drop Study**, DOI: 10.1002/cphc.202300612
<p>Recently, we demonstrated that Pt catalyst complexes dissolved in the ionic liquid (IL) [C<sub>4</sub>C<sub>1</sub>Im][PF<sub>6</sub>] can be deliberately enriched at the IL surface by introducing perfluorinated substituents, which act like buoys dragging the metal complex towards the surface. Herein, we extend our previous angle-resolved X-ray photoelectron spectroscopy (ARXPS) studies at complex concentrations between 30 and 5 %<sub>mol</sub> down to 1 %<sub>mol</sub> and present complementary surface tension pendant drop (PD) measurements under ultraclean vacuum conditions. This combination allows for connecting the microscopic information on the IL/gas interface derived from ARXPS with the macroscopic property surface tension. The surface enrichment of the Pt complexes is found to be most pronounced at 1 %<sub>mol</sub>. It also displays a strong temperature dependence, which was not observed for 5 %<sub>mol</sub> and above, where the surface is already saturated with the complex. The surface enrichment deduced from ARXPS is also reflected by the pronounced decrease in surface tension with increasing concentration of the catalyst. We furthermore observe by ARXPS and PD a much stronger surface affinity of the buoy-complex as compared to the free ligands in solution. Our results are highly interesting for an optimum design of IL-based catalyst systems with large contact areas to the surrounding reactant/product phase, such as in supported IL phase (SILP) catalysis.</p>
Data from: Fabrication and characterization of Ni-decorated h-BN powders with ChCl-EG ionic liquid as addition by electroless deposition
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Transcriptomic and metabolomic profiling of ionic liquid stimuli unveils enhanced secondary metabolism in Aspergillus nidulans
GEO Series GSE65946. Aspergillus nidulans; Neurospora crassa OR74A; Aspergillus nidulans FGSC A4. 9 samples. Type: Expression profiling by array.
Generation of Ionic Liquid Tolerant Pseudomonas putida KT2440 Strains via Adaptive Laboratory Evolution
GEO Series GSE149827. Pseudomonas putida KT2440. 16 samples. Type: Expression profiling by high throughput sequencing.
Gromacs Trajectories of a 200ns simulation of Haloferax volcanii ADH2 in ionic liquids
<p>Gromacs Trajectories of a 200ns simulation of Haloferax volcanii ADH2 in ionic liquids converted from amber trajectories</p>
Graphical abstract, figure 2, 4 and 6 from a review: Silica-Based Supported Ionic Liquid-like Phases as Heterogeneous Catalysts, Chrobok A. et al., Molecules 2022, 27, 5900, https://doi.org/10.3390/ - NCN project OPUS, grant no. 2020/37/B/ST8/00693.
<p>Graphical abstract presents Silica-Based Supported Ionic Liquid-like Phases systems. Figure 2. refers to supported ionic liquid phase (SILP) and supported ionic liquid-like phase (SILLP). Figure 4. shows scheme of covalent immobilization of ionic liquid on the silica surface, while Figure 6. depicts structures of Lewis type silica-based SILLP materials. The files relate to the silica-based materials modified with ionic liquids that were reviewed for the NCN project OPUS, grant no. 2020/37/B/ST8/00693.</p>
Analysis of silica-based materials modified with ionic liquid and lipase - NCN project OPUS, grant no. 2020/37/B/ST8/00693.
<p>Dataset contains results obtained during the NCN project OPUS, grant no. 2020/37/B/ST8/00693. The files presents TGA, SEM-EDS analysis of synthesized hybrid materials composing of silica and various metal-based oxides.</p>
Analysis of MWCNT-based materials modified with ionic liquid and ruthenium complex - NCN project OPUS, grant no. 2020/37/B/ST8/00693.
<p>The files present the TGA and SEM-EDS analyses of materials synthesized under the NCN project OPUS, grant no. 2020/37/B/ST8/00693, the materials were created by deposition of ionic liquid and ruthenium complex on the surface of multiwall carbon nanotubes.</p>
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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