Search Results - "Harry W. Rollins"
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Fluorinated phosphazene co-solvents for improved thermal and safety performance in lithium-ion battery electrolytes
Published in Journal of power sources (01-10-2014)“…The safety of lithium-ion batteries is coming under increased scrutiny as they are being adopted for large format applications especially in the vehicle…”
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High-temperature sulfuric acid decomposition over complex metal oxide catalysts
Published in International journal of hydrogen energy (01-05-2009)“…Activity and stability of FeTiO 3, MnTiO 3, NiFe 2O 4, CuFe 2O 4, NiCr 2O 4, 2CuO·Cr 2O 3, CuO and Fe 2O 3 for the atmospheric decomposition of concentrated…”
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Journal Article Conference Proceeding -
3
Hybrid phosphazene anodes for energy storage applications
Published in Journal of power sources (01-12-2014)“…The use of hybrid cyclic phosphazene polymer/graphite anodes, where the phosphazene serves as distributed loci for Li deposition, has been investigated…”
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4
Activated carbon catalysts for the production of hydrogen via the sulfur–iodine thermochemical water splitting cycle
Published in International journal of hydrogen energy (01-05-2009)“…Seven activated carbon catalysts obtained from a variety of raw material sources and preparation methods were examined for their catalytic activity to…”
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Journal Article Conference Proceeding -
5
Preparations of Nickel, Cobalt, and Iron Nanoparticles through the Rapid Expansion of Supercritical Fluid Solutions (RESS) and Chemical Reduction
Published in Chemistry of materials (01-01-1999)“…Nanoscale materials have attracted a great deal of attention for their interesting chemical and physical properties and potential technological applications…”
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Phosphoranimines containing cationic N-imidazolinium moieties
Published in Inorganica Chimica Acta (01-09-2017)“…Cationic N-imidazolinium phosphoranimines were synthesized by the Staudinger, where one was isolated as an atmospherically stable, room temperature ionic…”
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7
Unsaturated phosphazenes as co-solvents for lithium-ion battery electrolytes
Published in Journal of power sources (01-01-2015)“…This paper covers the synthesis and use of a related family of cyclic phosphazene solvents containing terminal unsaturations that are being considered as…”
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8
Use of phosphoranimines to reduce organic carbonate content in Li-ion battery electrolytes
Published in Electrochimica acta (10-08-2016)“…The use of phosphoranimines (PAs), a class of linear, monomeric phosphazenes, as electrolytes for Li-ion battery applications has been investigated as a route…”
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9
Effect of surface acoustic waves on the catalytic decomposition of ethanol employing a comb transducer for ultrasonic generation
Published in Ultrasonics sonochemistry (01-04-2006)“…The effect of surface acoustic waves, generated on a silver catalyst using a comb transducer, on the catalytic decomposition of ethanol is examined. The comb…”
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10
Strong Optical Limiting of Silver-Containing Nanocrystalline Particles in Stable Suspensions
Published in The journal of physical chemistry. B (07-01-1999)“…Metal and metal sulfide nanoparticles are prepared using a method that is based on the rapid expansion of supercritical fluid solution (RESS) into a liquid…”
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11
Protein-Protected Nanoparticles from Rapid Expansion of Supercritical Solution into Aqueous Solution
Published in The journal of physical chemistry. B (31-10-2002)“…Nanocrystalline silver particles were prepared via a supercritical fluid processing technique RESOLV (Rapid Expansion of a Supercritical Solution into a Liquid…”
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12
Nanoscale Cavities for Nanoparticles in Perfluorinated Ionomer Membranes
Published in Langmuir (17-10-2000)“…The preparation and characterization of nanoscale silver sulfide and silver particles in Nafion and perfluorinated sulfonimide ionomer membranes are reported…”
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13
Preparation of polymer-protected semiconductor nanoparticles through the rapid expansion of supercritical fluid solution
Published in Chemical physics letters (22-05-1998)“…Poly( N-vinyl-2-pyrrolidone)-stabilized semiconductor cadmium sulfide nanoparticles with an average particle size of ∼33 Å were prepared by using a new method…”
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14
Thermal Lensing in a Supercritical Water Medium
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (25-01-2007)“…A pulsed, two-beam, thermal lensing experiment was performed to determine the concentration of aqueous solutes above the critical point of water. Despite a…”
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15
Holmium nitrate complexation with tri- n-butyl phosphate in supercritical carbon dioxide
Published in The Journal of supercritical fluids (01-12-2005)“…Holmium nitrate pentahydrate was reacted with tri- n-butyl phosphate in supercritical carbon dioxide at 308 K. The products of the complexation reaction were…”
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Radiation-induced dry reforming: A negative emission process
Published in Journal of cleaner production (01-12-2023)Get full text
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Radiation-induced dry reforming: A negative emission process
Published in Journal of cleaner production (30-10-2023)“…The reaction between the most abundant greenhouse gases (GHG) to produce hydrogen might represent the most powerful and effective decarbonizing opportunity, if…”
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18
Efficient Photodimerization Reaction of Anthracene in Supercritical Carbon Dioxide
Published in Journal of organic chemistry (17-10-1997)“…The photodimerization reaction of anthracene in supercritical CO2 was studied systematically at different CO2 densities. Unlike in normal liquid solvents, the…”
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19
The effect of moisture content on retention of fluorocarbon tracers on sand
Published in Geothermics (01-02-2005)“…Several fluorocarbon compounds have been evaluated as geothermal tracers in sand column tests using damp, dry, and untreated ‘washed sea sand’. Fluorocarbons…”
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20
Fluorescence spectroscopic probing of two distinctive microenvironments in perfluorinated ionomer membranes
Published in Journal of photochemistry and photobiology. A, Chemistry. (01-09-1999)“…Ethidium bromide was used as fluorescent molecular probe in the understanding of structural properties of Nafion, Dow Chemical, and sulfonimide ionomer…”
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