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Single layers

L. Bar, G.M. Daalmans, R BartheL, L. Feichland, M. Selent, M. Kiilml, D. Uhl Single layer and integrated YBCO gradtometer coupled SQLJIDs Supercond. Sci. TechnoL 9 (1996) A87-A91... [Pg.304]

The basic assumption is that the Langmuir equation applies to each layer, with the added postulate that for the first layer the heat of adsorption Q may have some special value, whereas for all succeeding layers, it is equal to Qu, the heat of condensation of the liquid adsorbate. A furfter assumption is that evaporation and condensation can occur only from or on exposed surfaces. As illustrated in Fig. XVII-9, the picture is one of portions of uncovered surface 5o, of surface covered by a single layer 5, by a double-layer 52. and so on.f The condition for equilibrium is taken to be that the amount of each type of surface reaches a steady-state value with respect to the next-deeper one. Thus for 5o... [Pg.619]

Molecular adsorbates usually cover a substrate with a single layer, after which the surface becomes passive with respect to fiirther adsorption. The actual saturation coverage varies from system to system, and is often detenumed by the strength of the repulsive interactions between neighbouring adsorbates. Some molecules will remain intact upon adsorption, while others will adsorb dissociatively. This is often a frinction of the surface temperature and composition. There are also often multiple adsorption states, in which the stronger, more tightly bound states fill first, and the more weakly bound states fill last. The factors that control adsorbate behaviour depend on the complex interactions between adsorbates and the substrate, and between the adsorbates themselves. [Pg.294]

Fig. 7. Schematic of light emitting diodes (a) single-layer device (b) single heteiostmctuie (c) double heteiostmctuie. Fig. 7. Schematic of light emitting diodes (a) single-layer device (b) single heteiostmctuie (c) double heteiostmctuie.
Single layer OLEDs have been fabricated with a variety of emitter molecules and conjugated polymers such as poly(phenylene vinylene) (PPV). [Pg.243]

Fig. 10. Typical design for single-layer photovoltaic device. Fig. 10. Typical design for single-layer photovoltaic device.
Sound-Isolating Constructions. Although some materials are used alone in single-layer constmctions for sound-isolating purposes, most sound-isolating constmctions contain two or more parts, frequentiy separated by an airspace. [Pg.317]

The similarity of M0S2 to graphite has been noted. Like elemental carbon, which has been found to form nanotubular stmctures, M0S2 has also been found to form nested stmctures upon exposure to the electron beam in an electron microscope (23). Moreover, M0S2 displays a variety of intercalation reactions typical of layered materials. Single-layer M0S2 has been successfully prepared and manipulated (22). [Pg.472]

Antireflection coatings are used over the silicon surface which, without the coating, reflects ca 35% of incident sunlight. A typical coating consists of a single layer of a transparent dielectric material with a refractive index of ca 2, which is between the index of siUcon and ait or cover material. Materials such as titanium dioxide, tantalum pentoxide, Ta20, or siUcon nitride, Si N, ca 0.08-p.m thick are common. The coating and a physically textured... [Pg.470]

In most coatiag operatioas a single layer is coated. Whea more than one layer must be appHed one can make multiple passes, or use tandem coaters where the next layer is appHed at another coatiag statioa ioimediately foUowiag the dryer sectioa for the previous layer, or a multilayer coatiag statioa can be used. Slot, extmsion, sHde, and curtain coaters are used to apply multiple layers simultaneously. SHde and curtain coaters can apply an unlimited number of layers simultaneously, whereas slot and extmsion coaters are limited by the complexity of the die internals. [Pg.304]

Fig. 2. Schematics of (a) single-layer photoreceptor, where the + signs represent the corona-deposited charge, D the photoconductor, and 1 the conductive substrate and (b), the CdS Sej (Katsuragawa) photoreceptor, where D represents the insulating layer, the CdS Sej, and I the... Fig. 2. Schematics of (a) single-layer photoreceptor, where the + signs represent the corona-deposited charge, D the photoconductor, and 1 the conductive substrate and (b), the CdS Sej (Katsuragawa) photoreceptor, where D represents the insulating layer, the CdS Sej, and I the...
Blown film is made similarly to blow-molded articles the molten resia is extmded coatiauously as a parisoa, which is blowa to form a coatiauous film cyliader. This cyliader can be roUed up as a two-layer stmcture or sHt to form one large or two smaller single layers. [Pg.263]

FIG. 25-17 Schematic flowsheet illustrating the individual elements of an open, single-layer hiofilter system. Particulate filtration and/or temperature adjustment is often combined with the equipment to adjust gas humidity content. [Pg.2192]

In moving catalyst basket reactors, the flow regime is ill-defined and the contact between catalyst and gas can be poor even if well-mixed conditions for the fluid phase are achieved. Perhaps the most successful representative of this category is the Carberry reactor (1964, 1966). Even in this model only a single layer of catalyst can be charged in the cruciform catalyst basket because the fluid flows in a radial direction outward and... [Pg.45]


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See also in sourсe #XX -- [ Pg.75 , Pg.79 , Pg.87 , Pg.114 ]




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Adsorption Isotherm for a Single Layer

Adsorption isotherm single layer

Bond Orientational Order in a Single Smectic Layer and Hexatic Phase

Bread single layered

Carrier single layer devices

Columnar epithelial cells single layer

Crystallite, single, layer

Double-layer at single crystals

Fabrication of Single-Layer Passive Elastomeric Electronics

Gradient-Index Single-Layer Dielectric Films

Graphene single-layer

Hollow fiber membrane single-layer asymmetric

Layer Stratification in Single Component Cryogenic Liquid with Boil-off at 1 bar

Light single-layer polymer

Mass Transfer in Liquid Food from a Single Layer Package

Nanotubes single-layer

Organic single-layer

Packaging Single layer

Photoconductor, single layer

Photoreceptors single layer

Polymer white light-emitting devices with single emission layer

Prepreg layer lamination single

Reflection of Radiation at Planar Interface Covered by Single Layer

Resist single-layer

Silver layers single-layer devices

Single Aromatic Layer

Single boundary layer

Single compound layer short conclusions

Single crystals double-layer

Single fluorite-type layers

Single layer LED

Single layer adsorption

Single layer cells

Single layer fabrics

Single layer lattice silicates

Single layer package

Single molecule/particle layer

Single oxides, surface and passive layers

Single perovskite layers

Single prepreg layer

Single rock-salt-type layers

Single-Layer Composite Films

Single-Layer Films

Single-Layer LED Based on PPP-Type Polymers

Single-Layer Polymer Cells

Single-Layered Configurations

Single-crystal surfaces double-layer capacity

Single-electrode thin layer technique

Single-layer AR coating

Single-layer LEDs from

Single-layer OLEDs

Single-layer asymmetric hollow-fiber

Single-layer blown films

Single-layer borocarbides

Single-layer coatings

Single-layer design

Single-layer devices

Single-layer diode

Single-layer hard carbons

Single-layer inhibited films

Single-layer photoreceptor

Single-layer polymer device

Single-layer potential

Single-layer resist , role

Single-layer resist based

Single-layer resist systems

Single-layer resists

Single-layer systems

Single-layer walls

Single-layer waveguides

Single-layer-type devices

Single-layered garments

Single-polymer layer

Solar cells single layer

Surface from single 2D layers to finite slab

Surface single layer

Two-Dimensional Development on Single Layers

Ultrathin single-layer

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