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dc.contributor.authorStylianakis, Minas M.*
dc.date.accessioned2021-02-11T21:48:52Z
dc.date.available2021-02-11T21:48:52Z
dc.date.issued2020*
dc.date.submitted2020-06-09 16:38:57*
dc.identifier46003*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/55348
dc.description.abstractDuring the last decade, novel graphene related materials (GRMs), perovskites, as well as metal oxides and other metal nanostructures have received the interest of the scientific community. Due to their extraordinary physical, optical, thermal, and electrical properties, which are correlated with their 2D ultrathin atomic layer structure, large interlayer distance, ease of functionalization, and bandgap tunability, these nanomaterials have been applied in the development or the improvement of innovative optoelectronic applications, as well as the expansion of theoretical studies and simulations in the fast-growing fields of energy (photovoltaics, energy storage, fuel cells, hydrogen storage, catalysis, etc.), electronics, photonics, spintronics, and sensing devices. The continuous nanostructure-based applications development has provided the ability to significantly improve existing products and to explore the design of materials and devices with novel functionalities. This book demonstrates some of the most recent trends and advances in the interdisciplinary field of optoelectronics. Most articles focus on light emitting diodes (LEDs) and solar cells (SCs), including organic, inorganic, and hybrid configurations, whereas the rest address photodetectors, transistors, and other well-known dynamic optoelectronic devices. In this context, this exceptional collection of articles is directed at a broad scientific audience of chemists, materials scientists, physicists, and engineers, with the goals of highlighting the potential of innovative optoelectronic applications incorporating nanostructures and inspiring their realization.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.othergraphene oxide*
dc.subject.othertextured silicon solar cells*
dc.subject.othern/a*
dc.subject.otherhigh-efficiency*
dc.subject.otherCdTe microdots*
dc.subject.otherpiezo-phototronic effect*
dc.subject.otherelectromagnetically induced transparency effect*
dc.subject.otherwaveguide photons*
dc.subject.otherlight output power*
dc.subject.otherhole injection*
dc.subject.otherternary organic solar cells*
dc.subject.otherUV LEDs*
dc.subject.othercathodoluminescence*
dc.subject.otherV-pits*
dc.subject.otherquantum confinement effect*
dc.subject.othernano-grating*
dc.subject.othermetamaterials*
dc.subject.otherGa2O3*
dc.subject.othertunneling*
dc.subject.othertransmittance*
dc.subject.othergraphene ink*
dc.subject.otherperovskite solar cells*
dc.subject.othercounter electrode*
dc.subject.othernucleation layer*
dc.subject.otherAg film*
dc.subject.otherAlGaN-based ultraviolet light-emitting diode*
dc.subject.othercolor-conversion efficiency*
dc.subject.otherPeLEDs*
dc.subject.otherphotoelectric performance*
dc.subject.otherphotocurrent*
dc.subject.othercharge transfer*
dc.subject.otherdouble-layer ITO*
dc.subject.othergreen LED*
dc.subject.otherliquid crystals*
dc.subject.otherphotovoltaics*
dc.subject.otherelectrowetting*
dc.subject.otheroxidation*
dc.subject.otherFowler–Nordheim*
dc.subject.otherfield emission*
dc.subject.otherexcitation wavelength*
dc.subject.otherfunctionalization*
dc.subject.otherquantum dots*
dc.subject.othergold split-ring*
dc.subject.othercascade effect*
dc.subject.othererbium*
dc.subject.othertransparent conductive electrode*
dc.subject.othercompact*
dc.subject.otherplasmon resonance*
dc.subject.otherair-processed*
dc.subject.otherFDTD*
dc.subject.otherprism-structured sidewall*
dc.subject.othersheet resistance*
dc.subject.otherGaN*
dc.subject.otherTi porous film*
dc.subject.otherstability*
dc.subject.otherflip-chip mini-LED*
dc.subject.otherflexible substrate*
dc.subject.otheractively tunable nanodevices*
dc.subject.othergreen LEDs*
dc.subject.othermetasurfaces*
dc.subject.otherantireflective coating (ARC)*
dc.subject.otherNiCo2S4 nanotubes*
dc.subject.otherInN/p-GaN heterojunction*
dc.subject.otherInGaN/GaN superlattice*
dc.subject.otherOAB*
dc.subject.othergraded indium composition*
dc.subject.otherplasmonics*
dc.subject.otherpolymer composites*
dc.subject.otherphotomultiplication*
dc.subject.othercold cathode*
dc.subject.othersolvent*
dc.subject.othersolar cells*
dc.subject.othercontrollable synthesis*
dc.subject.othertunable absorbers*
dc.subject.otherinterface*
dc.subject.othergraphene*
dc.subject.othersilicon transistor*
dc.subject.othercolorimetry*
dc.subject.otherlight extraction*
dc.subject.otherreduced graphene oxide*
dc.subject.otherpinhole pattern*
dc.subject.otherindium nanoparticles (In NPs)*
dc.subject.othergraphene split-ring*
dc.subject.otherorganic solar cell*
dc.subject.otherlight-emitting diode*
dc.subject.otherorganic*
dc.subject.otherplasmonic forward scattering*
dc.subject.othersmooth*
dc.subject.othersubwavelength metal grating*
dc.subject.otherperovskite*
dc.subject.otherphotoluminescence*
dc.subject.othermid infrared*
dc.subject.otherpolarization analyzer*
dc.subject.othertransparent electrode*
dc.subject.otherexternal quantum efficiency*
dc.subject.otherLED*
dc.subject.otherlight-emitting diodes*
dc.subject.otherphotodetector*
dc.subject.otherp-type InGaN*
dc.subject.otherquantum efficiency*
dc.subject.other2D perovskite*
dc.subject.otherquantum dot*
dc.subject.otherorthogonal polarization*
dc.subject.othercurrent spreading*
dc.subject.otherlocalized surface plasmon*
dc.subject.otherSchottky barrier*
dc.titleOptoelectronic Nanodevices*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-697-3*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039286966*
oapen.relation.isbn9783039286973*
oapen.pages338*
oapen.edition1st*


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