Works matching DE "LITHIUM perchlorate"
Results: 81
A Study on the Complex Formation of Poly(Methyl Methacrylate), Poly(Vinyl Chloride) and Their Blend with Lithium Perchlorate Using FTIR Spectroscopy.
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- Macromolecular Symposia, 2020, v. 392, n. 1, p. 1, doi. 10.1002/masy.202000172
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On Thermal and Spectroscopic Studies of Poly(ethylene oxide)/Poly(methyl methacrylate) Blends with Lithium Perchlorate.
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- Macromolecular Symposia, 2015, v. 354, n. 1, p. 374, doi. 10.1002/masy.201400134
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The Influence of Succinyl Groups and Lithium Perchlorate on Chitosan Membranes as Electrolyte Polymers.
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- Macromolecular Symposia, 2015, v. 353, n. 1, p. 185, doi. 10.1002/masy.201550325
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Decatungstate Photocatalyzed Benzylation of Alkenes with Alkylaromatics.
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- Advanced Synthesis & Catalysis, 2013, v. 355, n. 14/15, p. 2891, doi. 10.1002/adsc.201300598
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Determination of activity coefficients and diffusion coefficients of LiClO<sub>4</sub> in ethylene carbonate +water mixtures based on potentiometric measurements at T=(298.2, 308.2, and 318.2) K.
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- Physics & Chemistry of Liquids, 2022, v. 60, n. 6, p. 839, doi. 10.1080/00319104.2022.2056183
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Influence of transport parameters on conductivity of lithium perchlorate-doped poly(vinyl alcohol)/chitosan composites.
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- Journal of Elastomers & Plastics, 2016, v. 48, n. 5, p. 442, doi. 10.1177/0095244315580457
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Integrated Power and Propulsion System Optimization for a Planetary-Hopping Robot.
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- Aerospace (MDPI Publishing), 2022, v. 9, n. 8, p. N.PAG, doi. 10.3390/aerospace9080457
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Discovery of novel anticancer candidates based on a combination strategy of synthesis, characterization, biological activity evaluation, consensus docking and molecular modeling.
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- Journal of the Iranian Chemical Society, 2023, v. 20, n. 8, p. 1949, doi. 10.1007/s13738-023-02811-z
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Synthesis and antiproliferative activity of new hybrids bearing neocryptolepine, acridine and α-aminophosphonate scaffolds.
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- Journal of the Iranian Chemical Society, 2020, v. 17, n. 5, p. 1211, doi. 10.1007/s13738-019-01849-2
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Front Cover: Photocatalytic Cycloadditions Enabled by a Lithium Perchlorate/Nitromethane Electrolyte Solution (Eur. J. Org. Chem. 6/2019).
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- European Journal of Organic Chemistry, 2019, v. 2019, n. 6, p. 1178, doi. 10.1002/ejoc.201900164
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Photocatalytic Cycloadditions Enabled by a Lithium Perchlorate/Nitromethane Electrolyte Solution.
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- European Journal of Organic Chemistry, 2018, v. 2018, n. 47, p. 6720, doi. 10.1002/ejoc.201801280
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Synthesis of Azanucleosides by Anodic Oxidation in a Lithium Perchlorate-Nitroalkane Medium and Diversification at the 4′-Nitrogen Position.
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- Angewandte Chemie International Edition, 2017, v. 56, n. 14, p. 4011, doi. 10.1002/anie.201700547
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Synthesis, Crystal Structure, and Photoluminescence of a Lithium Perchlorate Complex with 18-Crown-6.
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- Journal of Structural Chemistry, 2019, v. 60, n. 7, p. 1119, doi. 10.1134/S0022476619070138
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Electrochemical Aspect of the Synthesis of 2-Nitroethanol-Based Heteroarchitecture.
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- Russian Journal of Organic Chemistry, 2023, v. 59, n. 6, p. 1041, doi. 10.1134/S1070428023060118
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Efficient Three-Component One-Pot Synthesis of 4H-Pyrans.
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- Russian Journal of Organic Chemistry, 2019, v. 55, n. 5, p. 686, doi. 10.1134/S1070428019050178
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Fused pyrimidine systems: XIV. Reaction of 2-alkenyl(alkynyl)sulfanylpyrido[3,4- d]pyrimidin-4(3 H)-ones with arylsulfanyl chlorides.
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- Russian Journal of Organic Chemistry, 2014, v. 50, n. 6, p. 858, doi. 10.1134/S1070428014060189
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Electrophilic intramolecular cyclization of functional derivatives of unsaturated compounds: IV. Cyclosulfenylation of 5-hexenoic acid amides and nucleophilic cleavage of reaction products.
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- Russian Journal of Organic Chemistry, 2013, v. 49, n. 8, p. 1168, doi. 10.1134/S1070428013080125
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Solubility of Lithium Octasulfide in Sulfolane Solutions of Lithium Perchlorate.
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- Russian Journal of General Chemistry, 2024, v. 94, n. 7, p. 1689, doi. 10.1134/S1070363224070119
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NanoSrTiO-filled PEO-P(VdF-HFP)-LiClO electrolytes with improved electrical and thermal properties.
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- Applied Physics A: Materials Science & Processing, 2016, v. 122, n. 2, p. 1, doi. 10.1007/s00339-016-9623-8
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EFFECT OF ELABORATION pH ON THE ELECTROACTIVITY OF CASSAVA STARCH SOLID BIOPOLYMER ELECTROLYTE FILMS.
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- Rasayan Journal of Chemistry, 2019, v. 12, n. 4, p. 1766, doi. 10.31788/RJC.2019.1245302
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Study of Supramolecular Self-Assembly between Cyclopentanocucurbit[6]uril and Lithium and Sodium Ions.
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- Crystallography Reports, 2021, v. 66, n. 7, p. 1268, doi. 10.1134/S1063774521070075
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The Thermoelectric Properties of Spongy PEDOT Films and 3D-Nanonetworks by Electropolymerization.
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- Nanomaterials (2079-4991), 2022, v. 12, n. 24, p. 4430, doi. 10.3390/nano12244430
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Effect of Pore Filling on Properties of Nanocomposites LiClO 4 –MIL–101(Cr) with High Ionic Conductivity.
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- Nanomaterials (2079-4991), 2022, v. 12, n. 19, p. 3263, doi. 10.3390/nano12193263
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Deciphering the Influence of Electrolytes on the Energy Storage Mechanism of Vertically-Oriented Graphene Nanosheet Electrodes by Using Advanced Electrogravimetric Methods.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 12, p. 2451, doi. 10.3390/nano10122451
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A Study on Poly(ethylene oxide)-Based Supercapacitors Doped with Various Dopants.
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- Coatings (2079-6412), 2023, v. 13, n. 8, p. 1373, doi. 10.3390/coatings13081373
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Fabrication and Characterization of Oxygen-Carbon-Contained CrMnFeCoNi Coatings Electrodeposited in DMF-CH 3 CN Solution with and without Supporting Electrolyte LiClO 4.
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- Coatings (2079-6412), 2022, v. 12, n. 12, p. 1804, doi. 10.3390/coatings12121804
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Phase behaviour and morphology of composite comprising of poly(ethylene oxide), polyacrylate and lithium perchlorate.
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- Composite Interfaces, 2014, v. 21, n. 9, p. 797, doi. 10.1080/15685543.2014.960321
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Sulfolane as Solvent for Lithium Battery Electrolytes.
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- Journal of New Materials for Electrochemical Systems, 2013, v. 16, n. 2, p. 65
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Preparation and Characterization of Thermoelectric PEDOT/Te Nanorod Array Composite Films.
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- Materials (1996-1944), 2022, v. 15, n. 1, p. 148, doi. 10.3390/ma15010148
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The Influence of the Type of Electrolyte in the Modifying Solution on the Protective Properties of Vinyltrimethoysilane/Ethanol-Based Coatings Formed on Stainless Steel X20Cr13.
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- Materials (1996-1944), 2021, v. 14, n. 20, p. 6209, doi. 10.3390/ma14206209
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Modulus enhancement of polycarbonate by addition of lithium perchlorate.
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- Journal of Applied Polymer Science, 2017, v. 134, n. 22, p. n/a, doi. 10.1002/app.44882
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Spontaneous formation of discrete arrangement of particles by dipping ultraviolet/ozone-treated poly(dimethylsiloxane) substrate in solution.
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- Journal of Applied Polymer Science, 2016, v. 133, n. 23, p. n/a, doi. 10.1002/app.43506
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Preparation and performance analysis of barium titanate incorporated in corn starch-based polymer electrolytes for electric double layer capacitor application.
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- Journal of Applied Polymer Science, 2016, v. 133, n. 14, p. n/a, doi. 10.1002/app.43275
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Structural Peculiarities of Ion-Conductive Organic-Inorganic Polymer Composites Based on Aliphatic Epoxy Resin and Salt of Lithium Perchlorate.
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- Nanoscale Research Letters, 2017, v. 12, n. 1, p. 1, doi. 10.1186/s11671-017-2195-5
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Analysis of P(VdCl-co-AN-co-MMA)-LiClO-EC triblock copolymer electrolytes.
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- Bulletin of Materials Science, 2015, v. 38, n. 1, p. 183, doi. 10.1007/s12034-014-0797-4
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Electrochemical analysis on poly(ethyl methacrylate)-based electrolyte membranes.
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- Bulletin of Materials Science, 2015, v. 38, n. 1, p. 151, doi. 10.1007/s12034-014-0821-8
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Effects of Composition Variations on Mechanochemically Synthesized Lithium Metazirconate-Based Ceramics and Their Resistance to External Influences.
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- Ceramics (2571-6131), 2023, v. 6, n. 4, p. 2394, doi. 10.3390/ceramics6040147
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Greatly Enhanced Electrocatalytic N<sub>2</sub> Reduction on TiO<sub>2</sub> via V Doping.
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- Small Methods, 2019, v. 3, n. 11, p. N.PAG, doi. 10.1002/smtd.201900356
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Determination of Reduced and Oxidized Coenzyme Q10 in Canine Plasma and Heart Tissue by HPLC-ECD: Comparison with LC-MS/MS Quantification.
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- Antioxidants, 2019, v. 8, n. 8, p. 253, doi. 10.3390/antiox8080253
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Electrochemical Behaviour of Tocopherols: Possibilities of Their Simultaneous Voltammetric Detection.
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- Applied Sciences (2076-3417), 2021, v. 11, n. 17, p. 8095, doi. 10.3390/app11178095
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TiO2 Nanostructured Films for Electrochromic Paper Based-Devices.
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- Applied Sciences (2076-3417), 2020, v. 10, n. 4, p. 1200, doi. 10.3390/app10041200
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Free Volume-Related Microstructural Properties of Lithium Perchlorate/Sodium Alginate Polymer Composites.
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- Polymer Composites, 2014, v. 35, n. 7, p. 1267, doi. 10.1002/pc.22777
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Explosivity of lithium perchlorate in gel polymer electrolytes.
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- Polymer Composites, 2013, v. 34, n. 11, p. 1970, doi. 10.1002/pc.22604
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Structure and Properties of Electroactive Composites Based on Oligomers of Different Molecular Weight Doped with Lithium Perchlorate Salt.
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- Journal of Nano- & Electronic Physics, 2022, v. 14, n. 4, p. 1, doi. 10.21272/jnep.14(4).04008
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Influence of Crystallization on Molecular Dynamics of the Amorphous Phase in Poly(ε-caprolactone) and Poly(ε-caprolactone)/LiClO<sub>4</sub> Complexes Investigated by Dielectric Relaxation Spectroscopy.
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- Journal of Polymer Research, 2013, v. 20, n. 12, p. 1, doi. 10.1007/s10965-013-0312-4
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Effect of varying lithium perchlorate salt concentration on electrochemical and physical properties of polymer gel electrolytes containing heat-resistant poly(methyl methacrylate) and succinonitrile.
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- Journal of Applied Electrochemistry, 2024, v. 54, n. 5, p. 1033, doi. 10.1007/s10800-023-02014-7
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Performance and reliability of cellulose acetate-based gel electrolyte for electrochromic devices.
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- Journal of Applied Electrochemistry, 2016, v. 46, n. 5, p. 575, doi. 10.1007/s10800-016-0918-4
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Novel electrospun polymer electrolytes incorporated with Keggin‐type hetero polyoxometalate fillers as solvent‐free electrolytes for lithium ion batteries.
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- Polymer International, 2020, v. 69, n. 8, p. 675, doi. 10.1002/pi.6001
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Synthesis of borate ester-grafted carboxylated acrylonitrile butadiene rubber and its use as electron acceptor to dissolve lithium perchlorate.
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- Polymer International, 2016, v. 65, n. 4, p. 446, doi. 10.1002/pi.5075
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A practical approach for generation of WO3-based flexible electrochromic devices.
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- Journal of Solid State Electrochemistry, 2020, v. 24, n. 4, p. 1057, doi. 10.1007/s10008-020-04588-0
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