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  1. Research Outputs

Ag/mgo nanoparticles via gas aggregation nanocluster source for perovskite solar cell engineering

Academic Article
Publication Date:
2021
Short description:
Ag/mgo nanoparticles via gas aggregation nanocluster source for perovskite solar cell engineering / Caleffi, M.; Mariani, P.; Bertoni, G.; Paolicelli, G.; Pasquali, L.; Agresti, A.; Pescetelli, S.; Carlo, A. D.; De Renzi, V.; D'Addato, S.. - In: MATERIALS. - ISSN 1996-1944. - 14:19(2021), pp. 5507-5526. [10.3390/ma14195507]
abstract:
Nanocluster aggregation sources based on magnetron-sputtering represent precise and versatile means to deposit a controlled quantity of metal nanoparticles at selected interfaces. In this work, we exploit this methodology to produce Ag/MgO nanoparticles (NPs) and deposit them on a glass/FTO/TiO2 substrate, which constitutes the mesoscopic front electrode of a monolithic perovskite-based solar cell (PSC). Herein, the Ag NP growth through magnetron sputtering and gas aggregation, subsequently covered with MgO ultrathin layers, is fully characterized in terms of structural and morphological properties while thermal stability and endurance against air-induced oxidation are demonstrated in accordance with PSC manufacturing processes. Finally, once the NP coverage is optimized, the Ag/MgO engineered PSCs demonstrate an overall increase of 5% in terms of device power conversion efficiencies (up to 17.8%).
Iris type:
Articolo su rivista
Keywords:
Ag; Gas aggregation nanocluster source; Localized surface plasmon resonance; MgO; Nanoparticles; Perovskite solar cells
List of contributors:
Caleffi, M.; Mariani, P.; Bertoni, G.; Paolicelli, G.; Pasquali, L.; Agresti, A.; Pescetelli, S.; Carlo, A. D.; De Renzi, V.; D'Addato, S.
Authors of the University:
D'ADDATO Sergio
DE RENZI Valentina
PASQUALI Luca
Handle:
https://iris.unimore.it/handle/11380/1253836
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1253836/365072/AgNPperovskitematerials.pdf
Published in:
MATERIALS
Journal
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