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Progress in Polymer Science, ISSN 0079-6700, 06/2013, Volume 38, Issue 6, pp. 963 - 991
Journal Article
Polymer, ISSN 0032-3861, 11/2007, Volume 48, Issue 23, pp. 6913 - 6922
In this paper the effects of 13 material and operating parameters on electrospun fiber diameters are determined by varying the parameter values in an... 
Electrospinning | Nanofiber | Polymer jet | POLYMER SCIENCE | MOLECULAR-WEIGHT | POLYAMIDE-6 FIBERS | POLYSTYRENE FIBERS | FIELD | nanofiber | polymer jet | EMITTING ELECTRODE POLARITY | ELECTRICALLY FORCED JETS | SOLVENTS | electrospinning | POLYMER-SOLUTIONS | POLY(ETHYLENE OXIDE) | MORPHOLOGY | Models | Polymers | Mechanical engineering | Analysis | Humidity | Fibers
Journal Article
Polymer Engineering & Science, ISSN 0032-3888, 06/2008, Volume 48, Issue 6, pp. 1168 - 1176
Electrospinning of several polyamides, PA6, PA66, PA612, PA614, PA1012, and PA1014, having different chain compositions and lengths of diacid and diamine... 
AVERAGE FIBER DIAMETER | NYLON-6 | ENGINEERING, CHEMICAL | NANOCOMPOSITES | POLYMER SCIENCE | ULTRATHIN | POLYANILINE | WEBS | JETS | POLYMER NANOFIBRES | MORPHOLOGY | EMITTING ELECTRODE POLARITY | Equipment and supplies | Filtration | Chemical properties | Polyamides | Production processes | Materials science | Polymers | Spinning | Electrostatics
Journal Article
Polymer, ISSN 0032-3861, 10/2007, Volume 48, Issue 22, pp. 6617 - 6621
Polyamides with long hydrocarbon chains, e.g. PA11 and PA12, are generally dissolved in phenolic or fluoric solvents that prevent these polymers from being... 
Electrospinning | Polyamide | Nanofiber | AVERAGE FIBER DIAMETER | NYLON-6 | MATS | POLYMER SCIENCE | TRANSPORT-PROPERTIES | OIL | NANOFIBERS | electrospinning | nanofiber | polyamide | MORPHOLOGY | EMITTING ELECTRODE POLARITY | Raman spectroscopy | Polyamides | Formic acid | Organic acids
Journal Article
Materials Research, ISSN 1516-1439, 2009, Volume 12, Issue 2, pp. 181 - 190
Polyamide 66 (PA66) nanofibers of different molecular weights were obtained by electrospinning of formic acid solutions. An ionic salt, NaCl, was also added to... 
Characterization | Electrospinning | Nanofiber | Polyamide 66 | AVERAGE FIBER DIAMETER | NYLON-6 | MATS | polyamide 66 | electrospinning | MATERIALS SCIENCE, MULTIDISCIPLINARY | nanofiber | characterization | MORPHOLOGY | EMITTING ELECTRODE POLARITY
Journal Article
e-Polymers, ISSN 2197-4586, 12/2007, Volume 7, Issue 1, pp. 1204 - 1222
Protein material resulting from chemical free steam explosion of wool was mixed in different proportion with polyamide 6 in formic acid. The viscosity of the... 
AVERAGE FIBER DIAMETER | NYLON-6 | NANOCOMPOSITES | POLYMER SCIENCE | NANOFIBERS | KERATIN | POLYMER | MORPHOLOGY | SOLVENT | EMITTING ELECTRODE POLARITY
Journal Article
Applied Physics Express, ISSN 1882-0778, 09/2015, Volume 8, Issue 9, p. 95202
A simple top electrode preparation process, employing continuous graphene oxide films as electrode supporting layers, was adopted to fabricate a ZnO nanorod... 
LIGHT-EMITTING-DIODES | RESOLVED CATHODOLUMINESCENCE | PHYSICS, APPLIED
Journal Article
POLIMEROS-CIENCIA E TECNOLOGIA, ISSN 0104-1428, 12/2011, Volume 21, Issue 5, pp. 398 - 408
The search for polymeric fibers with diameters in the scale of nanometers has been the great objective of researchers and industry, since these fibers have... 
EXFOLIATION | Clay | POLYMER SCIENCE | TRANSPORT-PROPERTIES | Electrospinning | SILICATE NANOCOMPOSITES | POLY(VINYL ALCOHOL) | BLOWN FILMS | EMITTING ELECTRODE POLARITY | NYLON-6 | FIBERS | PA66 | Nanocomposites | Polyamide 66 | Nanofibers | MORPHOLOGY
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 06/2018, Volume 750, p. 811
Microcrystalline and nanocrystalline Cu/Cr pseudo-alloy electrodes were prepared from elemental powders using high-energy ball milling and spark plasma... 
Grain boundaries | Interrupters | Ball milling | Electric sparks | Damage prevention | Electric resistance | Electrodes | Polarity | Electron emission | Copper | Electron bombardment | Electric arcs | Melts | Scattering | Electrode materials | Spark plasma sintering | Nanocrystals | Morphology | Electric arc melting | Chromium | Organic light emitting diodes | Irradiation | Microstructure | Cathodes | Electrons
Journal Article
Energies, ISSN 1996-1073, 2018, Volume 11, Issue 5, p. 1149
Ionic wind cooling for electronic elements is a relevant research field. In order to study the cooling performance of ionic wind on a Light Emitting Diode... 
Ionic wind | LED | Cooling | Electrode | Heat sink | Corona discharge | electrode | ionic wind | TRANSFER ENHANCEMENT | ENERGY & FUELS | heat sink | cooling | corona discharge | Temperature | Wind velocity | Ions | Light emitting diodes | Stellar coronas | Velocity | Windpowered generators | Electrodes | Heat | Heating | Polarity | Needles | Heat transfer | Cylinders
Journal Article
Current Applied Physics, ISSN 1567-1739, 2011, Volume 11, Issue 5, pp. 1192 - 1196
We have investigated motion of fullerene particles in isotropic and anisotropic dielectric medium for the purpose of application of the particles in electronic... 
Dielectrophoretic force | Fullerene colloidals | Electronic paper-like display | PHYSICS, APPLIED | FIELD | MATERIALS SCIENCE, MULTIDISCIPLINARY | LIGHT-EMITTING DEVICES | LIQUID-CRYSTAL | Anisotropy | Analysis | Electrodes | Direct current | Fullerenes | Electronics | Polarity | Terminals | Silicones | 물리학
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 01/2013, Volume 57, Issue 1, pp. 285 - 291
This study employs ionic wind to augment heat transfer of a LED mounted on a substrate. The size of the LED chip is 0.9 mm × 0.9 mm with a nominal power of 1... 
Ionic wind | LED | Natural convection | Electrohydrodynamics | SYSTEM | HEAT-TRANSFER | THERMAL MANAGEMENT | FLOW | ENGINEERING, MECHANICAL | PRESSURE | MECHANICS | THERMODYNAMICS | PLATE | TO-PLANE CORONA | Fluid dynamics | Light-emitting diodes
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 01/2013, Volume 57, Issue 1, pp. 285 - 291
This study employs ionic wind to augment heat transfer of a LED mounted on a substrate. The size of the LED chip is 0.9 mm X 0.9 mm with a nominal power of 1... 
Electrodes | Electric potential | Alignment | Thermal resistance | Wind power generation | Grounds | Light-emitting diodes | Heat transfer
Journal Article