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Design and optimization of hole collectors based on nc-SiO<inf>x</inf>:H for high-efficiency silicon heterojunction solar cells
ArticleAbstract: Low activation energy (Ea) and wide bandgap (Eg) are essential for (p)-contacts to achieve effectivePalabras claves:Activation energy (E ) a, Contact resistivity (ρ ) c, Hydrogenated nanocrystalline silicon oxide (nc-SiO :H) x, Interface treatment, optoelectrical properties, Silicon heterojunction (SHJ)Autores:Han C., Isabella O., Mazzarella L., Paul Procel, Weeber A., Yang G., Zeman M., Zhao Y.Fuentes:scopusFront and rear contact Si solar cells combining high and low thermal budget Si passivating contacts
ArticleAbstract: In this work we develop a rear emitter silicon solar cell integrating carrier-selective passivatingPalabras claves:Amorphous silicon, ion-implantation, Poly-silicon passivating contacts, Silicon solar cellsAutores:De Groot Y., Ge H., Isabella O., Limodio G., Mazzarella L., Paul Procel, Yang G., Zeman M.Fuentes:scopusHigh-efficiency black IBC c-Si solar cells with poly-Si as carrier-selective passivating contacts
ArticleAbstract: In this work, we present the application of poly-Si carrier-selective passivating contacts (CSPCs) aPalabras claves:Carrier selective passivating contact, IBC c-Si solar cells, Light in-coupling, Poly-siliconAutores:Guo P., Isabella O., Limodio G., Paul Procel, Weeber A., Yang G., Zeman M.Fuentes:scopusIntroducing a comprehensive physics-based modelling framework for tandem and other PV systems
ArticleAbstract: We introduce a novel simulation tool capable of calculating the energy yield of a PV system based onPalabras claves:Energy yield modelling, Operating temperature, Opto-electric device simulation, Pervoskite/silicon tandem, Specific yield, Tandem PV systemsAutores:Alcañiz A., Blom Y., El Din A.N., Etxebarria J.G., Goma E.G., Isabella O., Paul Procel, Santbergen R., Stark T., Tobon C.R., Vogt M.R., Wang Z., Zeman M., Ziar H.Fuentes:scopusWill SiO<inf>x</inf>-pinholes for SiO<inf>x</inf>/poly-Si passivating contact enhance the passivation quality?
ArticleAbstract: Passivating contacts based on poly-Si have enabled record-high c-Si solar cell efficiencies due to tPalabras claves:Enhanced passivation, Pinhole density, Poly-Si passivating Contacts, Thermal diffusion budgetAutores:Gram R., Han C., Isabella O., Mazzarella L., Paul Procel, Singh M., Yang G., Yao Z., Zeman M., Zhao Y.Fuentes:scopusRoom-temperature sputtered tungsten-doped indium oxide for improved current in silicon heterojunction solar cells
ArticleAbstract: The window layers limit the performance of silicon heterojunction (SHJ) solar cells with front and bPalabras claves:Improved near-infrared response, Room temperature transparent electrode, Silicon heterojunction solar cell, Tungsten-doped indium oxideAutores:Han C., Isabella O., Mazzarella L., Montes A., Paul Procel, Santbergen R., Yang G., Zeman M., Zhang X., Zhao Y.Fuentes:scopusTheoretical evaluation of contact stack for high efficiency IBC-SHJ solar cells
ArticleAbstract: In this work we present a theoretical analysis of charge carriers transport mechanisms in IBC-SHJ soPalabras claves:Fill Factor and passivation, IBC silicon heterojunction solar cell, Numerical simulations, Thin film silicon alloys, Transport mechanismsAutores:Isabella O., Paul Procel, Yang G., Zeman M.Fuentes:scopus