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Organic thin films

Polymer LEDs are similar to thin film organic molecular LEDs first reported in 1987 17). Organic molecular LEDs utilize thin films of small organic molecules rather than polymer films as the light-emitting layer. The films of small organic molecules are undoped and have electronic properties comparable to the polymer films used in polymer LEDs. In general, the device physics of polymer LEDs is... [Pg.180]

Reactions on the surface are interesting. The adsorptions of unsaturated organic molecules on the surface provide a means for fabricating well-ordered monolayer films. Thin film organic layers can be used for diverse applications such as chemical and biological sensors, computer displays, and molecular electronics. [Pg.37]

Abraham Ulman, Thin Films, Organic Thin Films and Surfaces Directions for the Nineties, Volume 20, 1995. [Pg.281]

As a class of n-type organic semiconductors, PBI derivatives have received considerable attention for a variety of applications [312, 313], for example, for organic or polymer light-emitting diodes (OLEDs and PLEDs) [314, 315], thin-film organic field-effect transistors (OFETs) [316, 317], solar cells [318, 319], and liquid crystals [320]. They are also interesting candidates for single-molecule device applications, such as sensors [321], molecular wires [322], or transistors [141]. [Pg.166]

Hamilton, M. Martin, S. Kanicki, J. 2004. Thin-film organic polymer phototransistors. IEEE Trans. Electron Dev. 51 855-877. [Pg.402]

In the last section, electron transfer between dendrimers in films was mentioned. This type of hopping is important in thin-film organic devices (see above). How do dendrimers behave in solution Are the paradigms the same Actually, they are not. [Pg.111]

Optical Mode Structure in Thin Film Organic Structures. Optimization of Bilayer Geometries... [Pg.251]

M.S. Yoo, B. Domercq, B. Kippelen, Efficient thin-film organic solar cells based on pentacene/C60 heterojunctions, Appl. Phys. Lett. 85 (2004) 5427-5429. [Pg.164]

The triplet-triplet interaction, postulated to explain increased quantum yield of thin film organic LEDs, has been well known in EF of organic single crystals [2,21,41], One of the most spectacular manifestation of this type excitonic interactions is spatial distribution of EL emission (see Sec. 3.3). Interestingly, the EL light output resulting from the free-trapped carrier recombination (Oel) with respect to that underlain by free carriers recombination (Oel) does not depend on the trap depth [2]... [Pg.10]

Light emission from a thin film organic LED is underlain by a complex combination of various electronic processes, one of them being charge injection and following it electrical current flowing through the device. [Pg.171]

Forrest, S.R. (2000) Active Optoelectronics using Thin-film Organic Semiconductors. IEEE]. Set Top. Quant. Electron., 6, 1072-1083. [Pg.326]

Assembly, Structure, and Performance of an Ultra-Thin Film Organic Field-Effect Transistor (OFET) Based on Substituted Oligothiophenes... [Pg.678]


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Adsorbed thin organic films, microscopy

Bottom gate organic thin-film transistor

Dielectric organic thin films

ER Measurements for Redox-active Thin Organic Films

Flat-panel displays, organic thin-film transistors

Flat-panel displays, organic thin-film transistors display technologies

Flexible Sensor Array for a Robotic Fingertip Using Organic Thin Film Transistors (OTFT) with Minimum Interconnects and Improved Noise Tolerance

Gas-Sensing Characteristics of Organic Thin-Film Transistors

Inkjet printed organic thin film transistors

Lithography fabricating organic thin-film

Optical Mode Structure in Thin Film Organic Structures Optimization of Bilayer Geometries

Organic Thin-film Transistors by OVPD

Organic films

Organic multilayer thin film deposition

Organic multilayer thin film deposition techniques

Organic polymer thin films

Organic solar cells thin film

Organic thin film transistors, molecular

Organic thin film transistors, molecular self-assembly

Organic thin film, permeation

Organic thin films, molecular

Organic thin films, molecular self-assembly

Organic thin films, production approaches

Organic thin-film transistor blend

Organic thin-film transistor bottom-contact

Organic thin-film transistor channels

Organic thin-film transistor charge transport

Organic thin-film transistor devices

Organic thin-film transistor doping effects

Organic thin-film transistor electrical performance

Organic thin-film transistor high mobility

Organic thin-film transistor insulating layers

Organic thin-film transistor mechanical flexibility

Organic thin-film transistor pentacene

Organic thin-film transistor structure

Organic thin-film transistors

Organic thin-film transistors configurations

Organic thin-film transistors hole mobilities

Organic thin-film transistors measurements

Organic thin-film transistors performance

Organic-based thin film transistors

Organized organic thin films

Organized organic thin films

Photoreactive Organic Thin Films

Photoreactive Organic Thin Films in the Light of Bound Electromagnetic

Potential control, thin organic films

Semiconducting organic thin films, electrical

Soft lithography for fabricating organic thin-film

Soft lithography for fabricating organic thin-film transistors

Thin Film Organic Photodiodes

Thin film solar cells, organic complexes

Thin film solar cells, organic polymers

Thin films organic molecules

Thin-film organic photovoltaic cells

Toward an Ab-initio Description of Organic Thin Film Growth

UV-visible Reflectance Spectroscopy of Thin Organic Films at Electrode Surfaces

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