Graphene quantum dots (GQD) and edge-functionalized GQDs as hole transport materials in perovskite solar cells for producing renewable energy: a DFT and TD-DFT study

Author:

Kumar Anjan1ORCID,Sayyed M. I.23,Punina Diego4,Naranjo Eugenia5,Jácome Edwin6,Abdulameer Maha Khalid7,Albazoni Hamza Jasim8,Shariatinia Zahra9ORCID

Affiliation:

1. Department of Electronics and Communication Engineering, GLA University, Mathura-281406, India

2. Department of Physics, Faculty of Science, Isra University, Amman 11622, Jordan

3. Department of Nuclear Medicine Research, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman bin Faisal University (IAU), PO Box 1982, Dammam, 31441, Saudi Arabia

4. Facultad de Ciencias de la Ingeniería, Carrera Ingeniería Mecánica, Universidad Técnica Estatal de Quevedo (UTEQ), Quevedo, Ecuador

5. Facultad Mecánica, Escuela Superior Politécnica de Chimborazo (ESPOCH), Riobamba, 060155, Ecuador

6. Facultad de Mecánica, Escuela Superior Politécnica de Chimborazo (ESPOCH), Riobamba, 060155, Ecuador

7. Department of Radiology & Sonar Techniques, Al-Noor University College, Nineveh, Iraq

8. College of Nursing, National University of Science and Technology, Dhi Qar, Iraq

9. Department of Chemistry, Tehran Polytechnic, Amirkabir University of Technology, P.O. Box: 15875-4413, Tehran, Iran

Abstract

This study investigated the potential suitability of graphene quantum dots (GQD) and certain edge-functionalized GQDs (GQD-3Xs) as hole transport materials (HTMs) in perovskite solar cells (PSCs).

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference63 articles.

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4. Hole transport materials for perovskite solar cells: A computational study

5. National Renewable Energy Laboratory , Best research-cell efficiency chart , NREL , 2023 , https://www.nrel.gov/pv/cell-efficiency.html

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