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Dissertations / Theses on the topic 'Organic Light-Emitting Devices (OLEDs)'

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1

Yu, Xiaoming. "Organic light emitting diodes (OLEDs) for lighting /." View abstract or full-text, 2009. http://library.ust.hk/cgi/db/thesis.pl?ECED%202009%20YU.

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2

Li, Gang. "Organic Light-Emitting Devices (OLEDS) and Their Optically Detected Magnetic Resonance (ODMR)." Washington, D.C. : Oak Ridge, Tenn. : United States. Dept. of Energy. Office of Science ; distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, 2003. http://www.osti.gov/servlets/purl/822052-lwZpPL/native/.

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Thesis (Ph.D.); Submitted to Iowa State Univ., Ames, IA (US); 12 Dec 2003.<br>Published through the Information Bridge: DOE Scientific and Technical Information. "IS-T 2100" Gang Li. 12/12/2003. Report is also available in paper and microfiche from NTIS.
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3

LEGNANI, CRISTIANO. "PRODUCTION AND CHARACTERIZATION OF ORGANIC LIGHT EMITTING DEVICES (OLEDS) BASED ON SUPRAMOLECULAR COMPLEXES." PONTIFÍCIA UNIVERSIDADE CATÓLICA DO RIO DE JANEIRO, 2006. http://www.maxwell.vrac.puc-rio.br/Busca_etds.php?strSecao=resultado&nrSeq=9350@1.

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REDE DE NANOTECNOLOGIA MOLECULAR E DE INTERFACES<br>Neste trabalho são apresentados os resultados da produção e caracterização de novos dispositivos orgânicos eletroluminescentes (OLEDs), que podem ser divididos idealmente em três grupos. O primeiro composto pelos OLEDs que utilizam os distirilbenzenos (DSBs) como camada eletroluminescente. Os DSBs são sistemas utilizados em química supramolecular como pontes para transferência de carga. No segundo colocamos os OLEDs baseados em 2; 6 - bis(dietanolamina) - 4; 8 - dipiperidinopirimida (5; 4-d) pirimidina (DIP), que é uma droga amplam
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4

Jokinen, K. (Karoliina). "Color tuning of organic light emitting devices." Doctoral thesis, Oulun yliopisto, 2017. http://urn.fi/urn:isbn:9789526215891.

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Abstract This thesis reports the investigation of color tuning of two types of organic light emitting devices, transistors (OLETs) and diodes (OLEDs). Voltage tunable two color light emission was demonstrated for OLETs. For OLEDs, two kinds of color tuning methods were presented. For these, color tuning was realized using thermal annealing which changes the light emission color of the devices permanently. The two color light emission of the OLETs, employing a three-layer heterostructure device configuration, occurs in red and green. The device structure was first utilized for producing red lig
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5

張志泉 and Chi-chuen Cecil Cheung. "Design, fabrication and characterization of organic thin filmdevices (OLEDs and OTFTs) based on Pt(II) complexes." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2007. http://hub.hku.hk/bib/B39559038.

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6

Cheung, Chi-chuen Cecil. "Design, fabrication and characterization of organic thin film devices (OLEDs and OTFTs) based on Pt(II) complexes." Click to view the E-thesis via HKUTO, 2007. http://sunzi.lib.hku.hk/HKUTO/record/B39559038.

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7

Zhou, Zhaoqun. "Combinatorial fabrication & studies of small molecular organic light emitting devices (OLEDs) and structurally integrated OLED-based chemical and biological sensors." [Ames, Iowa : Iowa State University], 2007.

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8

Vladimir, Shuster. "Phenazine: A Building Block for Multinuclear and Heterometallic Complexes, Where the Ligand Acts as an Electron Acceptor and Radical Abstractor." Thèse, Université d'Ottawa / University of Ottawa, 2013. http://hdl.handle.net/10393/24234.

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Over the past decade, intensive academic and commercial interests have been paid on compounds possessing photochemical properties, namely for their preparation, chemical properties, high efficiency and potential low-cost. Compounds having intense photochemical properties gained great interest due to wide range of potential applications. The sensitizers are one of the key components for high power-conversion efficiency in the dye sensitized solar cells (DSSCs). They are the core components in the organic light-emitting devices (OLEDs) due to their ability to emit light with the wavelengths larg
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9

Bhandari, Nikhil K. "Use of Hole and Electron Impeding layers to Improve the Efficiency of Organic Light Emitting Diodes." University of Cincinnati / OhioLINK, 2009. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1242850256.

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10

Sahin, Tiras Kevser. "Magnetic field effect and other spectroscopies of organic semiconductor and hybrid organic-inorganic perovskite devices." Diss., University of Iowa, 2018. https://ir.uiowa.edu/etd/6495.

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This thesis consists of three main studies: magnetic field effects in thermally activated delayed fluorescent (TADF) organic light emitting diodes (OLEDs), magnetic field effects in bipolar and unipolar polythiophene (P3HT) devices and a study of hybrid organic/inorganic perovskite devices. Spin-dependent transport and recombination processes of spin-pair species have been detected by magnetic field effect (MFE) technique in carbon-based semi- conductor devices. Magneto-electroluminescence (MEL) and magneto-conductivity have been measured as a function of the applied magnetic field, B, in ligh
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11

Apicella, Fernandez Sergio. "Surface energy modification of metal oxide to enhance electron injection in light-emitting devices : charge balance in hybrid OLEDs and OLETs." Thesis, Högskolan i Gävle, Avdelningen för elektronik, matematik och naturvetenskap, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-25097.

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Organic semiconductors (OSCs) present an electron mobility lower by several orders of magnitude than the hole mobility, giving rise to an electron-hole charge imbalance in organic devices such as organic light-emitting diodes (OLEDs) and organic light-emitting transistors (OLETs). In this thesis project, I tried to achieve an efficient electron transport and injection properties in opto-electronic devices, using inorganic n-type metal oxides (MOs) instead of organic n-type materials and a polyethyleneimine ethoxylated (PEIE) thin layer as electron transport (ETLs) and injection layers (EILs),
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12

Brückner, R., V. G. Lyssenko, S. Hofmann, and K. Leo. "Lasing of Tamm states in highly efficient organic devices based on small-molecule organic semiconductors." Royal Society of Chemistry, 2014. https://tud.qucosa.de/id/qucosa%3A36129.

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We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) lasers and organic light-emitting diodes (OLEDs). We find that the introduction of metals into the cavities leads to additional Tamm-plasmon polariton modes, while the corrugation of metal contacts, such as perforated m-size holes or a periodic array of metal stripes, leads to 2D confinement of the cavity modes, which in turn reduces the lasing threshold in MCs. Furthermore, we elucidate light loss mechanisms in OLEDs and reveal how external dielectric layers and periodic gratings can be used to enha
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13

Ràfols, Ribé Joan. "Organic vapour-deposited stable glasses: from fundamental thermal properties to high-performance organic light-emitting diodes." Doctoral thesis, Universitat Autònoma de Barcelona, 2017. http://hdl.handle.net/10803/457956.

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La deposició física de vapor ha sorgit recentment com una ruta alternativa per preparar vidres d’un ampli ventall d'estabilitats, juntament amb altres característiques. Concretament, ha fet possible l’obtenció de vidres amb propietats que superen les dels vidres convencionals i que, d’altra manera, requeririen temps de desenes a diversos milers d'anys de refredament lent o envelliment. És per aquesta raó que aquests vidres s’anomenen vidres de gran estabilitat o bé vidres ultraestables. S’ha demostrat com, per a moltes molècules orgàniques i bones formadores de vidre, la temperatura de dipòsi
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14

Fung, Ka Man. "Injection characteristics of transport layers in PIN OLED." HKBU Institutional Repository, 2012. https://repository.hkbu.edu.hk/etd_ra/1448.

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15

Vengasandra, Srikanth G. "Studies on high power ultrasonic microembossing and organic light emitting diodes (OLEDs) for the creation of lab-on-CD devices for sensor related applications." [Ames, Iowa : Iowa State University], 2009. http://gateway.proquest.com/openurl?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&res_dat=xri:pqdiss&rft_dat=xri:pqdiss:3396981.

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16

Kim, Ji Young. "Charge distribution in multi-emissive layer OLED." HKBU Institutional Repository, 2016. https://repository.hkbu.edu.hk/etd_oa/273.

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Organic light-emitting diodes (OLEDs) have been considered as the future lighting and display system and rapidly growing since 1987. It has been already used in many commercial applications such as OLED televisions, cell phone displays, and lighting systems. The OLED has higher luminous efficiency and extremely thinner layer compare to any other lighting devices, also it has flexibility and self-emission. However, there are still some drawbacks for the device performances such as lifetime especially on blue organic films, cost of manufacturing process, and moisture that we need to work on befo
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17

VOHRA, VARUN. "Multilevel organization of hybrid materials based on zeolite L crystals for light emitting devices applications." Doctoral thesis, Università degli Studi di Milano-Bicocca, 2009. http://hdl.handle.net/10281/7549.

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Zeolite L has been shown to be a successful host material for preparing a large variety of inorganic/organic hybrids. The channel entrances of the zeolite L are of a diameter of 0,71 nm and therefore, by tuning the size and the shape of the organic guest, one can make those guests enter one by one due to size restrictions. Once in the channels, well chosen dye molecules stay separated one from another which leads to a higher photoluminescence quantum yield. A challenge concerning such host guest compounds is to be able to optically or electronically address the dye inside the zeolite channel
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18

Santos, Gerson dos. "Estudo de dispositivos orgânicos emissores de luz empregando complexos de terras raras e de metais de transição." Universidade de São Paulo, 2008. http://www.teses.usp.br/teses/disponiveis/3/3140/tde-16042009-144608/.

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Neste trabalho foram projetados, fabricados e caracterizados funcionalmente dispositivos eletroluminescentes empregando complexos de Terras Raras (TR) e de Metais de Transição (MT) tanto como em filmes finos termicamente evaporados quanto formados através da técnica de spin-coating. O estudo foi iniciado com os complexos de TRs (especificamente o complexo de Európio e de Térbio) com filmes termicamente evaporados, com vistas à análise da eficiência externa dos dispositivos em função do ligante principal (CL). Desta análise observou-se que a particular estrutura química do CL resulta em diferen
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19

Dias, Rodrigo Coura. "Fabricação e caracterização de células eletroquímicas emissoras de luz (LECs)." Universidade Federal de Juiz de Fora (UFJF), 2017. https://repositorio.ufjf.br/jspui/handle/ufjf/6056.

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Submitted by Geandra Rodrigues (geandrar@gmail.com) on 2018-01-09T14:16:49Z No. of bitstreams: 1 rodrigocouradias.pdf: 2508131 bytes, checksum: a85f5360d98ae17dab9812e3e61a46cd (MD5)<br>Approved for entry into archive by Adriana Oliveira (adriana.oliveira@ufjf.edu.br) on 2018-01-23T11:19:39Z (GMT) No. of bitstreams: 1 rodrigocouradias.pdf: 2508131 bytes, checksum: a85f5360d98ae17dab9812e3e61a46cd (MD5)<br>Made available in DSpace on 2018-01-23T11:19:39Z (GMT). No. of bitstreams: 1 rodrigocouradias.pdf: 2508131 bytes, checksum: a85f5360d98ae17dab9812e3e61a46cd (MD5) Previous issue date: 2017-
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20

Schwab, Tobias. "Top-Emitting OLEDs." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-157992.

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In the last decades, investigations of organic light-emitting diodes (OLEDs) have tackled several key challenges of this lighting technology and have brought the electron to photon conversion efficiency close to unity. However, currently only 20% to 30% of the photons can typically be extracted from OLED structures, as total internal reflection traps the major amount of the generated light inside the devices. This work focuses on the optimization of the optical properties of top-emitting OLEDs, in which the emission is directed away from the substrate. In this case, opaque materials, e.g. a
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21

Wang, Yan. "Highly flexible top-emitting phosphorescent organic light emitting diodes (OLEDs)." Thesis, University of British Columbia, 2014. http://hdl.handle.net/2429/50921.

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Organic Light Emitting Diodes (OLEDs) have become attractive for flat panel display industry, with applications ranging from mobile phone screens to TVs. They have several advantages over inorganic LEDs such as high contrast ratio, wide viewing angle, faster response time, scalable large area processing and most importantly mechanical flexibility. OLEDs on flexible substrates can endure certain level of mechanical deformation such as bending, rolling or folding without disruption of the performance. The current demonstrated flexibility for OLEDs is up to a few centimeters or millimeters bendin
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22

Najafabadi, Ehsan. "Stacked inverted top-emitting white organic light-emitting diodes." Diss., Georgia Institute of Technology, 2014. http://hdl.handle.net/1853/52990.

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The majority of research on Organic Light-Emitting Diodes (OLEDs) has focused on a top-cathode, conventional bottom-emitting architecture. Yet bottom-cathode, inverted top-emitting OLEDs offer some advantages from an applications point of view. In this thesis, the development of high performance green electroluminescent inverted top-emitting diodes is first presented. The challenges in producing an inverted structure are discussed and the advantages of high efficiency inverted top-emitting OLEDs are provided. Next, the transition to a stacked architecture with separate orange and blue emitting
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23

Darade, Balasaheb S. "Hole-Confining Concept for Blue Organic Light Emitting Diode." University of Cincinnati / OhioLINK, 2011. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1321370334.

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24

Selvaranjan, Selvadurai. "Processable molecular lanthanide chelates for organic light emitting diodes (OLEDs)." Thesis, London South Bank University, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.618667.

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25

Blades, Christopher David James. "Simulation of organic light emitting devices." Thesis, University of Bath, 2000. https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.760747.

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26

Dinh, Vincent Vinh. "Degradation in organic light emitting devices /." For electronic version search Digital dissertations database. Restricted to UC campuses. Access is free to UC campus dissertations, 2003. http://uclibs.org/PID/11984.

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27

Jami, Avinash. "Fused-Molecular Systems for Organic Light Emitting Diodes." TopSCHOLAR®, 2015. http://digitalcommons.wku.edu/theses/1543.

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Organic light emitting diodes (OLEDs) are electronic devices made by sandwitching organic light emissive materials between two electrodes. When voltage is applied across the two conductors, a bright light is generated. The color of the emitting light depends on the band gap of the semiconducting material. The work described here focuses on designing and synthesizing narrow band gap molecular systems derived from fused-arene derivatives for producing organic blue light emitting diodes. Three molecular systems derived from anthracene, pyrene, and carbazole, were designed and synthesized. Two mol
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28

LI, WEIXIN. "A HYBRID DEVICE APPROACH TO HIGH PERFORMANCE IN ORGANIC LIGHT-EMITTING DIODES." University of Cincinnati / OhioLINK, 2006. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1148051195.

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29

Krautz, Danny [Verfasser]. "Hybrid organic-inorganic structures for solution processed organic light emitting diodes (OLEDs) / Danny Krautz." Wuppertal : Universitätsbibliothek Wuppertal, 2014. http://d-nb.info/1053771452/34.

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30

Stevenson, Stuart G. "Dendrimer light-emitting diodes." Thesis, St Andrews, 2008. http://hdl.handle.net/10023/581.

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31

Hui, Kwun-nam. "Device optimization studies of organic light emitting devices." Click to view the E-thesis via HKUTO, 2005. http://sunzi.lib.hku.hk/hkuto/record/B36578484.

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32

Hui, Kwun-nam, and 許冠南. "Device optimization studies of organic light emitting devices." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2005. http://hub.hku.hk/bib/B36578484.

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33

Fischer, Axel, Thomas Koprucki, Annegret Glitzky, et al. "OLEDs: Light-emitting thin film thermistors revealing advanced selfheating effects." SPIE, 2015. https://tud.qucosa.de/id/qucosa%3A35054.

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Large area OLEDs show pronounced Joule self-heating at high brightness. This heating induces brightness inhomogeneities, drastically increasing beyond a certain current level. We discuss this behavior considering 'S'-shaped negative differential resistance upon self-heating, even allowing for 'switched-back' regions where the luminance finally decreases (Fischer et al., Adv. Funct. Mater. 2014, 24, 3367). By using a multi-physics simulation the device characteristics can be modeled, resulting in a comprehensive understanding of the problem. Here, we present results for an OLED lighting panel c
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34

Yang, Han-Jen 1979. "Fabrication and characterization of white light emission organic light-emitting devices." Thesis, McGill University, 2006. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=99123.

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Organic light emitting devices (OLED) based on small molecule materials capable of white light emission have been fabricated and electrical and optical performance of devices was characterized. The fabricated OLEDs utilize one hole transport material, N, N'-diphenyl-N, N'-bis(3-methylphenyl)-1, 1'-biphenyl-4, 4'-diamine [TPD], and three light emitting materials including 4, 4'-bis(2, 2'-diphenylvinyl)-1, 1'-biphenyl [DPVBi], Tris-(1-phenylisoquinolinato-N) iridium (III) [Ir(piq)3], and tris-(8-hydroxyquinoline) aluminium [Alq3] to achieve the color blending close to the white light. The overal
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35

BUCCHERI, NUNZIO FRANCESCO. "Design and synthesis of small molecules for NIR-operating light emitting and sensing devices." Doctoral thesis, Università degli Studi di Milano-Bicocca, 2016. http://hdl.handle.net/10281/105354.

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Organic chemistry of dyes and pigments offers a large number of synthetic tools for the production of innovative compounds to match the requirements of modern materials science. Near-infrared portion of the spectrum (700-2500 nm) is of particular interest, with application in bioimaging, photodynamic therapy, night vision, telecommunications and sensors. Among the thousands of different organic structure present in the literature, organic complexes of neutral tetrahedral boron (III), subphthalocyanine, squaraines and rare-earths complexes show attractive spectroscopic and chemical behavior suc
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36

Perez-Bolivar, Cesar A. "Synthesis and Studies of Materials for Organic Light-Emitting Diodes." Bowling Green State University / OhioLINK, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=bgsu1272652295.

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37

Lee, Ka Man. "Multicolor organic light-emitting devices based on hydroxyquinoline complexes." HKBU Institutional Repository, 2001. http://repository.hkbu.edu.hk/etd_ra/336.

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38

Lam, Ching Shan. "Iridium-based organometallic electrophosphors for organic light-emitting devices." HKBU Institutional Repository, 2009. http://repository.hkbu.edu.hk/etd_ra/1069.

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39

Bronstein, Hugo. "Electrophosphorescent materials for use in organic light emitting devices." Thesis, Imperial College London, 2009. http://hdl.handle.net/10044/1/11225.

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40

Tomita, Yuto. "Alternative transparent electrodes for organic light emitting diodes." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2009. http://nbn-resolving.de/urn:nbn:de:bsz:14-ds-1236711483222-35217.

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Solid state lighting is a new environmentally friendly light source. So far, light emitting diodes (LEDs) and organic LEDs (OLEDs) have been presented as candidates with potentially high efficiency. Recent advances of OLEDs in device architecture, light-out coupling, and materials have ensured high efficiency, exceeding that of incandescent light bulbs. In contrast to conventional point source LEDs, OLEDs distribute light throughout the surface area and are not restricted by their size. Additionally, OLEDs are expected to reach sufficient stability in the near future. The remaining challenge f
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41

Chen, Haiying. "Study on materials for organic light-emitting diodes /." View abstract or full-text, 2003. http://library.ust.hk/cgi/db/thesis.pl?ELEC%202003%20CHEN.

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42

Tomita, Yuto. "Alternative transparent electrodes for organic light emitting diodes." Doctoral thesis, Technische Universität Dresden, 2008. https://tud.qucosa.de/id/qucosa%3A23806.

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Solid state lighting is a new environmentally friendly light source. So far, light emitting diodes (LEDs) and organic LEDs (OLEDs) have been presented as candidates with potentially high efficiency. Recent advances of OLEDs in device architecture, light-out coupling, and materials have ensured high efficiency, exceeding that of incandescent light bulbs. In contrast to conventional point source LEDs, OLEDs distribute light throughout the surface area and are not restricted by their size. Additionally, OLEDs are expected to reach sufficient stability in the near future. The remaining challenge f
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43

Aprano, Salvatore. "OLED devices optimization for lighting application." Doctoral thesis, Universita degli studi di Salerno, 2017. http://hdl.handle.net/10556/2596.

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2015 - 2016<br>In this work a potential new OLED application is presented: a large-area purple OLED for horticultural application, which combines red and blue light emissions in a unique device. The main issue of this thesis is to demonstrate the effectiveness of the proposed OLED structure by using theoretical models created during the three years of the Ph.D. studies and applied to commercial materials. The core of this dissertation is the third chapter, where the reader is brought to the optimization of the final purple OLED structure after several experiments, which confirm either the
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44

Ho, John C. 1980. "Improving the external extraction efficiency of organic light emitting devices." Thesis, Massachusetts Institute of Technology, 2004. http://hdl.handle.net/1721.1/28396.

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Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2004.<br>Includes bibliographical references (p. 54-55).<br>Over the last decade Organic Light Emitting Device (OLED) technology has matured, progressing to the point where state-of-the-art OLEDs can demonstrate external extraction efficiencies that surpass those of fluorescent lights. Additionally, OLEDs have the benefits over conventional display and lighting technologies of large viewing angles and mechanical flexibility. However, in order to become a commercially viable, widely ad
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45

Choudhury, Bhaskar. "Organic light emitting devices (OLEDs) and structurally integrated photoluminescence based chemical and biological sensors excited by OLEDs /." 2005.

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46

Martins, João Pedro Freitas. "Desenvolvimento e estudo de novos materiais para aplicação em OLEDs." Master's thesis, 2013. http://hdl.handle.net/10316/25096.

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Neste projecto foram sintetizados e caracterizados novos compostos de coordenação org ânicos com lantanídeos, que possuem propriedades ópticas radiativas indicadas para aplicação em camadas emissoras de OLEDs. Os lantanídeos utilizados foram o Euró- pio, Térbio e Túlio. Foi possível observar foto-luminescência para três compostos de coordenação com Európio e quatro de Térbio. A emissão de luz vermelha por parte dos compostos de Európio foi conseguida coordenando-o com beta-dicetonatos e fenantrolinas. Já os compostos de Térbio, não mostraram a mesma tendência, tendo de ser coordenados c
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47

Abdelmalek, Mina. "Investigating the Factors Governing the Efficiency and the Electroluminescence Stability in Simplified Phosphorescent Organic Light-Emitting Devices Utilizing One Material for Both Hole Transport and Emitter Host." Thesis, 2013. http://hdl.handle.net/10012/8080.

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Organic Light-Emitting Devices (OLEDs) have reached industrial maturity in display technology, since OLEDs provide salient advantages such as high brightness, fast response, wide viewing angle, mechanical flexibility, and low cost manufacturing. Due to the ability of electroluminescence (EL) from triplet excited states as well as singlet excited states, phosphorescent OLEDs (PHOLEDs) have a potential to achieve 100% internal quantum efficiency. Therefore, PHOLEDs can offer a competitive external quantum efficiency. However, the operational stability of PHOLEDs is relatively poor. Several mecha
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48

Wang, Qi. "Investigation of Electroluminescence Degradation in Anthracene-based Organic Light-Emitting Devices." Thesis, 2010. http://hdl.handle.net/10012/5542.

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Organic light-emitting devices (OLEDs) have attracted significant attention because of their unique advantages for flat panel display applications. However, the relatively limited electroluminescence (EL) stability of blue emitting OLEDs continues to limit the commercialization of full color OLED displays. In most cases, the decrease in EL efficiency is also accompanied by a loss in blue color purity. Thus, the understanding of the degradation mechanisms of both the EL efficiency loss and color purity loss and the corresponding solutions to device degradation are required. In this thesis, ele
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49

Shiv, Kumar *. "Fluoranthene-Based Materials for Non-Doped Blue Organic Light-Emitting Diodes." Thesis, 2015. http://etd.iisc.ac.in/handle/2005/3547.

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The organic light-emitting diode (OLED) technology is emerging to be the future technology of choice for thin, flexible and efficient display and lighting panels and is a potential competitor for the existing flat panel display technologies, like liquid crystal display (LCD) and plasma display panel (PDP). OLEDs display is already making their way from both lab and industry research to display market and the pace of development of laboratory OLED design into a commercial product is very impressive. The OLED display offers several advantages over other display technologies, such as low power co
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Shiv, Kumar *. "Fluoranthene-Based Materials for Non-Doped Blue Organic Light-Emitting Diodes." Thesis, 2015. http://etd.iisc.ernet.in/2005/3547.

Full text
Abstract:
The organic light-emitting diode (OLED) technology is emerging to be the future technology of choice for thin, flexible and efficient display and lighting panels and is a potential competitor for the existing flat panel display technologies, like liquid crystal display (LCD) and plasma display panel (PDP). OLEDs display is already making their way from both lab and industry research to display market and the pace of development of laboratory OLED design into a commercial product is very impressive. The OLED display offers several advantages over other display technologies, such as low power co
APA, Harvard, Vancouver, ISO, and other styles
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