Titre : | Study of electron transport effect on perovskite solar cells using simulation |
Auteurs : | Selssabil Zerarka, Auteur ; Baya Seridji, 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, 2020 |
Format : | 1 vol. (69 p.) / 30 cm |
Langues: | Anglais |
Résumé : |
The electron transport layer (ETL) plays a vital role in extracting and transporting photogenerated electrons. To determine their impact on perovskite solar cell behaviourand performance, we have studied the effect of electron transport layer (ETL) using simulation program (SCAPS-1D).A simulationis carried out to study theeffect of different physical parameters such as thickness, doping concentration, defect density and interface trap density of ETM/Perovskite on the electrical properties of a solar cell (the short-circuit current density (Jsc), open-circuit voltage (Voc), fill factor (FF), and power conversion efficiency (PCE)),using TiO2 and ZnO as two types of electron transport material (ETM). It is also indicated that an increase in the thickness, donorconcentration, defect density and interface trap density of ETL/Perovskite may have a great effectonthe performance of solar cells. Another important result of this study isTiO2 has better conversion performance than ZnO material as electron transport layer |
Sommaire : |
Chapter 1. Technology of solar cells Chapter 2. Perovskite solar cell Chapter 3. Numerical simulation, results and discussion |
Disponibilité (1)
Cote | Support | Localisation | Statut |
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MPHY/527 | Mémoire master | bibliothèque sciences exactes | Consultable |