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dc.creatorHamed, T A
dc.creatorAdamovic, N
dc.creatorAeberhard, U
dc.creatorAlonso-Alvarez, D
dc.creatorAmin-Akhlaghi, Z
dc.creatorAuf Der Maur, M
dc.creatorBeattie, N
dc.creatorBednar, N
dc.creatorBerland, K
dc.creatorBirner, S
dc.creatorCalifano, M
dc.creatorCapan, I
dc.creatorCerne, B
dc.creatorChilibon, I
dc.creatorConnolly, J P
dc.creatorJuan, F C
dc.creatorCoutinho, J
dc.creatorDavid, C
dc.creatorDeppert, K
dc.creatorDonchev, V
dc.creatorDrev, M
dc.creatorEhlen, B
dc.creatorEkins-Daukes, N
dc.creatorEven, J
dc.creatorFara, L
dc.creatorMarron, D F
dc.creatorGagliardi, A
dc.creatorGarrido, B
dc.creatorGianneta, V
dc.creatorGomes, M
dc.creatorGuillemoles, J.-F.
dc.creatorGuina, M
dc.creatorHalme, J
dc.creatorHocevar, M
dc.creatorJacak, L
dc.creatorJacak, W
dc.creatorJakšić, Zoran
dc.creatorJoseph, L K
dc.creatorKassavetis, S
dc.creatorKazukauskas, V
dc.creatorKleider, J.-P.
dc.creatorKluczyk, K
dc.creatorKopecek, R
dc.creatorKrasovec, U O
dc.creatorLazzari, J.-L.
dc.creatorLifshitz, E
dc.creatorLoncaric, M
dc.creatorMadsen, S P
dc.creatorVega, A M
dc.creatorMencaraglia, D
dc.creatorMessing, M E
dc.creatorArmando, F M
dc.creatorNassiopoulou, A G
dc.creatorNeijm, A
dc.creatorNemcsics, A
dc.creatorNeto, V
dc.creatorPedesseau, L
dc.creatorPersson, C
dc.creatorPetridis, K
dc.creatorPopescu, L
dc.creatorPucker, G
dc.creatorRadovanović, Jelena
dc.creatorRimada, J C
dc.creatorRistova, M
dc.creatorSavic, I
dc.creatorSavin, H
dc.creatorSendova-Vassileva, M
dc.creatorSengul, A
dc.creatorSilva, J
dc.creatorSteiner, U
dc.creatorStorch, J
dc.creatorStratakis, E
dc.creatorTao, S
dc.creatorTomanek, P
dc.creatorTomić, Stanko
dc.creatorTukiainen, A
dc.creatorTuran, R
dc.creatorUlloa, J M
dc.creatorWang, S
dc.creatorYuksel, F
dc.creatorZadny, J
dc.creatorZarbakhsh, J
dc.date.accessioned2019-05-31T08:51:41Z
dc.date.available2019-05-31T08:51:41Z
dc.date.issued2018
dc.identifier.issn2105-0716
dc.identifier.urihttp://cer.ihtm.bg.ac.rs/handle/123456789/2929
dc.description.abstractPhotovoltaics is amongst the most important technologies for renewable energy sources, and plays a key role in the development of a society with a smaller environmental footprint. Key parameters for solar cells are their energy conversion efficiency, their operating lifetime, and the cost of the energy obtained from a photovoltaic system compared to other sources. The optimization of these aspects involves the exploitation of new materials and development of novel solar cell concepts and designs. Both theoretical modeling and characterization of such devices require a comprehensive view including all scales from the atomic to the macroscopic and industrial scale. The different length scales of the electronic and optical degrees of freedoms specifically lead to an intrinsic need for multiscale simulation, which is accentuated in many advanced photovoltaics concepts including nanostructured regions. Therefore, multiscale modeling has found particular interest in the photovoltaics community, as a tool to advance the field beyond its current limits. In this article, we review the field of multiscale techniques applied to photovoltaics, and we discuss opportunities and remaining challenges. © T. Abu Hamed et al., published by EDP Sciences, 2018.
dc.publisherEDP Sciences
dc.relationCOST Action MP1406 “MultiscaleSolar.”
dc.rightsopenAccess
dc.sourceEPJ Photovoltaics
dc.subjectDevice simulations; Different length scale; Environmental footprints; Modelling and validation; Multi-scale modelling; Multi-scale simulation; Renewable energy source; Third generation photovoltaics
dc.subjectSolar power generation
dc.subjectSemiconductor materials
dc.subjectConversion efficiency
dc.subjectEnvironmental technology
dc.subjectNanostructured materials
dc.subjectNanostructures
dc.subjectPhotovoltaic cells
dc.subjectRenewable energy resources
dc.subjectSolar cells
dc.titleMultiscale in modelling and validation for solar photovoltaics
dc.typearticleen
dc.rights.licenseBY
dcterms.abstractТоманек, П; Заднy, Ј; Зарбакхсх, Ј; Уллоа, Ј М; Wанг, С; Yуксел, Ф; Тао, С; Копецек, Р; Клуцзyк, К; Клеидер, Ј.-П.; Хамед, Т A; Aдамовиц, Н; Aеберхард, У; Aлонсо-Aлварез, Д; Aмин-Aкхлагхи, З; Aуф Дер Маур, М; Беаттие, Н; Беднар, Н; Берланд, К; Бирнер, С; Цалифано, М; Цапан, И; Церне, Б; Цхилибон, И; Цонноллy, Ј П; Јуан, Ф Ц; Цоутинхо, Ј; Давид, Ц; Депперт, К; Донцхев, В; Древ, М; Ехлен, Б; Екинс-Даукес, Н; Евен, Ј; Фара, Л; Маррон, Д Ф; Гаглиарди, A; Гарридо, Б; Гианнета, В; Гомес, М; Гуиллемолес, Ј.-Ф.; Гуина, М; Халме, Ј; Хоцевар, М; Јацак, Л; Јацак, W; Јаксиц, З; Јосепх, Л К; Кассаветис, С; Казукаускас, В; Красовец, У О; Лаззари, Ј.-Л.; Лифсхитз, Е; Лонцариц, М; Мадсен, С П; Вега, A М; Менцараглиа, Д; Мессинг, М Е; Aрмандо, Ф М; Нассиопоулоу, A Г; Неијм, A; Немцсицс, A; Нето, В; Педессеау, Л; Перссон, Ц; Петридис, К; Попесцу, Л; Пуцкер, Г; Радовановић, Ј; Римада, Ј Ц; Ристова, М; Савиц, И; Савин, Х; Сендова-Вассилева, М; Сенгул, A; Силва, Ј; Стеинер, У; Сторцх, Ј; Стратакис, Е; Томић, С; Тукиаинен, A; Туран, Р; Мултисцале ин моделлинг анд валидатион фор солар пхотоволтаицс;
dc.rights.holderThe Authors
dc.citation.volume9
dc.identifier.doi10.1051/epjpv/2018008
dc.identifier.fulltexthttp://cer.ihtm.bg.ac.rs//bitstream/id/7109/pv180006.pdf
dc.identifier.scopus2-s2.0-85061203380
dc.identifier.wos000448848700001
dc.type.versionpublishedVersion


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