
Photovoltaic Device Design and Development for Performance Enhancement
Semiconductor Solar cell design vol II
LAP Lambert Academic Publishing
Published on 8. May 2026
Book
Paperback/Softback
140 pages
978-620-9-90229-1 (ISBN)
Description
This book deliberates a comprehensive understanding into the design, modelling, and performance enhancement of next-generation photovoltaic devices. The book systematically optimizes antireflection layer materials and thicknesses, demonstrating that ZnO material achieves a superior power conversion efficiency in contrast to other existing options due to its exceptional refractive index matching and thermal stability. A novel electron transport layer architecture employing Sn-doped TiO¿-coated ZnO nanorods is developed, yielding significant efficiency improvements to around 30% while employing perovskite solar cells. The work further provides a comparative analysis of graphene-based Schottky junction solar cells on GaAs and silicon substrates, achieving enhanced efficiencies under AM1.5G illumination. Additionally, the design of high-efficiency PERC cells utilizing SiO¿, Si¿N¿, and Al¿O¿ passivation layers are also explored which attains a fill factor of 80.71% and efficiency of 23.82%. Collectively, this research offers valuable design guidelines and optimization strategies for developing cost-effective, high-performance solar cells for terrestrial applications.
More details
Language
English
Dimensions
Height: 220 mm
Width: 150 mm
Thickness: 9 mm
Weight
227 gr
ISBN-13
978-620-9-90229-1 (9786209902291)
Schweitzer Classification
Persons
Dr. L. Kholee Phimu received his PhD from NIT Mizoram and is presently working at MIT, Manipur.Dr. Kh. Jolson Singh is presently Associate Professor in ECE at MIT, Manipur.Prof. (Dr.) Rudra S. Dhar, PhD from University of Waterloo, Canada is presently Professor in ECE at NIT Mizoram. He focuses on Solar photovoltaics, Nanoelectronic device physics.