Search results for " Crystals"

showing 7 items of 237 documents

Experimental Observation of a Large Low-Frequency Band Gap in a Polymer Waveguide

2018

The quest for large and low-frequency band gaps is one of the principal objectives pursued in a number of engineering applications, ranging from noise absorption to vibration control, and to seismic wave abatement. For this purpose, a plethora of complex architectures (including multiphase materials) and multiphysics approaches have been proposed in the past, often involving difficulties in their practical realization. To address the issue of proposing a material design that enables large band gaps using a simple configuration, in this study we propose an easy-to-manufacture design able to open large, low-frequency complete Lamb band gaps exploiting a suitable arrangement of masses and stif…

scanning laser Doppler vibrometerAbsorption (acoustics)Materials scienceBand gapAcousticsMaterials Science (miscellaneous)Vibration control02 engineering and technologyLow frequencyLamb band gaplcsh:Technology01 natural sciencesNoise (electronics)finite element simulationsLamb wavesphononic crystals and metamaterials; Lamb band gap; guided waves; finite element simulations; scanning laser Doppler vibrometer0103 physical sciencesCenter frequency010306 general physicsComputingMilieux_MISCELLANEOUS[PHYS]Physics [physics]guided waveslcsh:TIsotropyFinite element simulations; Guided waves; Lamb band gap; Phononic crystals and metamaterials; Scanning laser Doppler vibrometerphononic crystals and metamaterials021001 nanoscience & nanotechnology0210 nano-technology
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Fabrication of 3-D phononic crystals for thermal transport management

2016

Thermal transport is an important physical phenomenon, and it has recently become even more relevant for the reduction of energy losses and the increase of efficiency in novel devices based on thermoelectricity [1]. Significant reduction of thermal conduction was recently achieved by coherent modification of phonon modes [2], with the help of periodic phononic crystal structures. However, currently the experimental studies have only been performed for two-dimensional (2-D) nanostructures. Theoretically, the magnitude of control of thermal transport should be even stronger in three-dimensional (3-D) phononic crystal structures. For that reason, the question arises how to fabricate the desire…

self-assemblyNIS tunnel junctionsphononic crystalssingle-step vertical depositionfononit
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Ionic self assembly in the design of fluorinated ionic liquid crystals (ILCs)

2011

Ionic liquid crystals are a class of compounds containing anions and cations, that combine the properties of liquid crystals and ionic liquids[1]. In the conventional design of ionic liquid crystalline compounds, an ionic core is connected with mesogenic groups via chemical covalent bonding . Alternatively, in ionic compounds, strong electrostatic interactions between cation and anion can be used to build up liquid crystalline order at supramolecular level. This general approach, called ionic self-assembly (ISA), allows one to create ionic phases and mesophases with highly organized supramolecular order [2]. In this context, a new series of fluorinated ionic liquids (ILs) and ionic liquid c…

self-assemblySettore CHIM/06 - Chimica Organicaionic liquid crystalsIonic Liquid Crystals oxadiazolyl-pyridine fluorinated
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Friction and Heat Transfer in Membrane Distillation Channels: An Experimental Study on Conventional and Novel Spacers

2022

The results of an experimental investigation on pressure drop and heat transfer in spacer-filled plane channels, which are representative of Membrane Distillation units, are presented and discussed. Local and mean heat transfer coefficients were obtained by using Thermochromic Liquid Crystals and Digital Image Processing. The performances of a novel spacer geometry, consisting of spheres that are connected by cylindrical rods, and are hereafter named spheres spacers, were compared with those of more conventional woven and overlapped spacers at equal values of the Reynolds number Re (in the range ~150 to ~2500), the pitch-to-channel height ratio, the flow attack angle and the thermal boundar…

spacer-filled channelSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciProcess Chemistry and Technologyheat transferChemical Engineering (miscellaneous)Membrane distillationFiltration and Separationspheres spacermembrane distillation; heat transfer; pressure drop; spacer-filled channel; spheres spacer; thermochromic liquid crystalsthermochromic liquid crystalsSettore ING-IND/19 - Impianti Nuclearipressure dropMembranes
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Crystal structure and Hirshfeld surface analysis of [N(CH3)4][2,2′-Fe(1,7-closo-C2B9H11)2]

2017

Abstract This work investigates the meta -ferrabis(dicarbollide) anion that was isolated as salt of tetramethylammonium. The structure of the obtained crystal consisted of discrete [2,2′-Fe(1,7- closo -C 2 B 9 H 11 ) 2 ] − anions and disordered [N(CH 3 ) 4 ] + cations. The anion had a considerable chemical stability ensured by ionic and Van der Waals interactions. Thus, Hirshfeld surfaces and fingerprint plot were used to visualize, explore, and quantify intermolecular interactions in the crystal lattice of the title compound. This investigation proved that close contacts were dominated by H⋯H interactions.

structures: crystalsIonic bondingCrystal structure010402 general chemistrychemistry01 natural sciencesBiochemistryIonInorganic ChemistryCrystalchemistry.chemical_compoundsymbols.namesakeComputational chemistrymeta-carboraneMaterials ChemistryPhysical and Theoretical Chemistryta116x-ray crystallographyTetramethylammoniummetallabis(dicarbollide)010405 organic chemistryOrganic ChemistryIntermolecular forcex-ray technology0104 chemical sciencesCrystallographydihydrogen bondschemistrysymbolsChemical stabilityvan der Waals forceHirshfeld studyJournal of Organometallic Chemistry
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Электронные процессы и дефекты в ионных кристаллах. Выпуск 6

1977

Ионные кристаллыJonu kristāliIonic crystalsЛюминесценция:NATURAL SCIENCES::Physics::Atomic and molecular physics [Research Subject Categories]КристаллыРадиационные процессыМонокристаллыMolekulārā fizikaЭлектронно-ионные процессы
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Электронные и ионные процессы в ионных кристаллах. Выпуск 7

1979

Ионные кристаллыJonu kristāliIonic crystalsЛюминесценция:NATURAL SCIENCES::Physics::Atomic and molecular physics [Research Subject Categories]КристаллыЭлектронно-ионные процессыРадиолюминесценция
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