Titre : | Optimization of Cuprous Oxide (Cu2O) Heterojunction Solar Cells Using Silvaco TCAD |
Auteurs : | Manal Saad, Auteur ; Rami Boumaraf, Directeur de thèse |
Type de document : | Monographie imprimée |
Editeur : | Biskra [Algérie] : Faculté des Sciences Exactes et des Sciences de la Nature et de la Vie, Université Mohamed Khider, 2019 |
Format : | 1 vol. (60 p.): couv. ill. en coul / 29 cm |
Langues: | Français |
Sommaire : |
Table of Contents Acknowledgements .................................................................................................................. III Dedication ................................................................................................................................IV List of Figures ........................................................................................................................... V List of Tables...........................................................................................................................VII Abstract ................................................................................................................................. VIII .................................................................................................................................... VIIIالملخص General introduction................................................................................................................XII Chapter I Overview of The Principles of Solar Cells............................................................ 15 I.1 Introduction ..................................................................................................................... 16 I.2 Energy solar..................................................................................................................... 16 I.3 PN-Junction of solar cell ................................................................................................. 16 I.3.1 Transport properties .................................................................................................. 17 I.3.1.1 Drift..................................................................................................................... 17 I.3.1.2 Diffusion ............................................................................................................. 18 I.3.2 Conductivity.............................................................................................................. 19 I.3.3 Carrier generation and recombination....................................................................... 20 I.3.3.1 Generation........................................................................................................... 20 I.3.3.2 Recombination .................................................................................................... 21 I.3.3.2.1 Direct recombination .................................................................................... 21 I.3.3.2.2 Shockley–Read–Hall recombination ............................................................ 23 I.3.3.2.3 Auger recombination .................................................................................... 25 I.3.3.2.4 Surface recombination.................................................................................. 25 I.3.3.2.5 Trap-state recombination.............................................................................. 27 I.4 Equivalent circuit of solar cell......................................................................................... 27 I.5 PV Electrical characteristics of solar cell ........................................................................ 29 I.5.1 Short circuit current |
Disponibilité (1)
Cote | Support | Localisation | Statut |
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MPHY/489 | Mémoire master | bibliothèque sciences exactes | Consultable |