Optimizing Quantum Dot Solar Cells: A Novel Multi-Parameter Framework for Enhanced Photovoltaic Performance

Authors

  • Rowan Robinson Professor
  • Adrian Davis PhD
  • Rowan Walker Associate Professor
  • Jesse Roberts Dr. Sc

Keywords:

Quantum Dot Solar Cells, Photovoltaic Efficiency, Multi-Parameter Optimization, Renewable Energy Systems, Material Properties, Fabrication Techniques, Energy Conversion, Sustainable Technology

Abstract

In this study, we present an advanced methodological optimization framework for quantum dot solar cells (QDSCs) aimed at enhancing their photovoltaic efficiency. The critical analysis focuses on the multi-parameter optimization of material properties and fabrication techniques, which are pivotal in addressing the challenges faced by this innovative energy conversion technology. We developed a simulation model that incorporates various quantum dot materials and their corresponding physical characteristics. Our findings reveal significant improvements in energy conversion efficiency, with optimal parameters leading to a remarkable increase in performance metrics. This framework not only contributes to the understanding of QDSC technology but also provides a robust tool for future research in the field of renewable energy systems.

Author Biographies

Rowan Robinson, Professor

Professor
Technische Universität München
Arcisstraße 21, 80333 München, Germany

Adrian Davis, PhD

PhD
Massachusetts Institute of Technology
77 Massachusetts Avenue, Cambridge, MA 02139, USA

Rowan Walker, Associate Professor

Associate Professor
University of Toronto
27 King's College Cir, Toronto, ON M5S 1A1, Canada

Jesse Roberts, Dr. Sc

Dr. Sc
University of New South Wales
Kensington, NSW 2052, Australia

References

Rahmanov, N., Guliyev, H., İbtahimov, F., & Mammadov, Z. (2024). Determination of optimal dimensions of hybrid AC/DC distributed generation system with renewable sources for autonomous power supply of remote locations. In E3S Web of Conferences (Vol. 584, p. 01020). EDP Sciences.

Hashimov, A. M., Babayeva, A. R., & Guliyev, H. B. (2019). Shunt reactors control algorithm using fuzzy sets theory. International Journal on Technical and Physical Problems of Engineering, 11(1), 10-15.

D. Satyanarayana, Sathyashree “A Three Level Architecture for Wireless Communication using LiFi”, in Recent Advances in Information and Communication Technology, Vol: 566, pp: 212- 221, Springer International Publishing, 2018 book. Print ISBN: 978-3-319-60662-0; Electronic ISBN: 978-3-319-60663-7; Book Series.

Satyanarayana, D. and Rao, S. V. (2011), “Fault-tolerant spanners for ad hoc networks” International Journal of Network Management, Vol: 22, Issue: 4, Pages: 311-329, July-2012, Wiley Publishers. https://doi.org/10.1002/nem.807

D. Satyanarayana, Sathyashree. S “Mobility Management in Voronoi based Cell Structure for Wireless networks”, IEEE proceedings for the International Conferences on Currents trends in Information Technology (CTIT), Pages: 204-208, Dubai, December-2013. DOI: 10.1109/CTIT.2013.6749504; INSPEC Accession Number: 14131032

Published

2025-12-24

Issue

Section

Articles