Отрывок: 5 mA / cm2 to 6 mA / cm2. Short circuit current gained its maximum value 6.7 mA / cm2, when nanoparticle size was 11 nm. When nanoparticle size was increased up to 21 nm, short circuit current gained its minimum value of 3.1 mA / cm2. In Chander’s experiments, it was observed alike our re- sults that short circuit current of dye-sensitized solar cell, which included gold nanoparticles, increased and de- creased like a wave when size of nanoparticle was in- creased [37]. Rat...
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dc.contributor.authorGulomov, J.-
dc.contributor.authorAliev, R.-
dc.contributor.authorGulomova, I.-
dc.date.accessioned2024-02-08 10:53:41-
dc.date.available2024-02-08 10:53:41-
dc.date.issued2022-10-
dc.identifierDspace\SGAU\20231229\107776ru
dc.identifier.citationGulomov J, Aliev R, Gulomova I. Size effect of gold nanoparticles on optical and electrical properties of plasmonic silicon solar cell. Computer Optics 2022; 46(5): 733-740. DOI: 10.18287/2412-6179-CO-1089.ru
dc.identifier.urihttps://dx.doi.org/10.18287/2412-6179-CO-1089-
dc.identifier.urihttp://repo.ssau.ru/handle/Zhurnal-Komputernaya-optika/Size-effect-of-gold-nanoparticles-on-optical-and-electrical-properties-of-plasmonic-silicon-solar-cell-107776-
dc.description.abstractOne of important tasks of the day is increasing the efficiency and decreasing the cost of the silicon solar cells. There is method of introducing of metal nanoparticles into solar cells to improve its absorption and reduce transmission as well as reflection coefficients. When metal nanoparticles are introduced into silicon solar cell, nanoplasmonic effect will occur. Nanoplasmonic effect lead to modification of light spectrum and generation of extra hot electrons. Nano-plasmonic effect strongly depends on size of nanoparticles. Therefore, in this paper, effect of gold nanoparticles size on properties of silicon solar cell has been studied by using simulation. Gold nanoparticles with sizes of 4 nm, 6 nm, 9 nm, 11 nm and 21 nm have been input into emitter region of silicon solar cell in order to use both of nanoplasmonic-electric and nanoplasmonic-optic effects for enhancing efficiency of silicon solar cell. Open circuit voltage didn't change when size of nanoparticles has been changed from 4 nm to 11 nm. It dropped by 0.017 V when size of nanoparticles was 21 nm. Short circuit current has been maximum 6.7 mA/cm2 at nanoparticle size of 11 nm and minimum 3.1 mA/cm2 at nanoparticle size of 21 nm. It has been found from obtained results that gold nanoparticle with size of 11 nm affected significantly on properties of silicon solar cell. Besides, thickness of silicon solar cell can be decreased without dropping of efficiency by introducing gold nanoparticles. Because, main part of photons is absorbed near to metal nanoparticles inputted region.ru
dc.description.sponsorshipThis work was supported by the Fundamental Research Project of Ministry of Innovative Development of the Republic of Uzbekistan (Project No. FZ-2020092973).ru
dc.language.isoenru
dc.publisherСамарский национальный исследовательский университетru
dc.relation.ispartofseries46;5-
dc.subjectsiliconru
dc.subjectnanoplasmonicsru
dc.subjectnanoparticleru
dc.subjectsolar cellru
dc.subjectsimulationru
dc.subjectgoldru
dc.titleSize effect of gold nanoparticles on optical and electrical properties of plasmonic silicon solar cellru
dc.typeArticleru
dc.textpart5 mA / cm2 to 6 mA / cm2. Short circuit current gained its maximum value 6.7 mA / cm2, when nanoparticle size was 11 nm. When nanoparticle size was increased up to 21 nm, short circuit current gained its minimum value of 3.1 mA / cm2. In Chander’s experiments, it was observed alike our re- sults that short circuit current of dye-sensitized solar cell, which included gold nanoparticles, increased and de- creased like a wave when size of nanoparticle was in- creased [37]. Rat...-
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