Synergetic Triple Absorber Based High‐Efficiency Solar Cell Design

Author:

Gopila M1,Prabu R. Thandaiah2ORCID,Kumar ATA Kishore3,Kumar Atul4ORCID

Affiliation:

1. Department of EEE Sona College of Technology Salem 636005 India

2. Deaprtment of ECE Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, SIMATS, Saveetha University Chennai 602 105 India

3. Department of ECE, School of Engineering Mohan Babu University (Erstwhile Sree Vidya Nikethan Engineering College) Tirupati Andhra Pradesh 517102 India

4. Department of Electronics and Communications Engineering Koneru Lakshmaiah Education Foundation Greenfields, Vaddeswaram Guntur Andhra Pradesh 522502 India

Abstract

AbstractComputational analysis of triple absorber‐based solar cell structure is undertaken. This solar cell device configuration allows better utilization of the incident solar spectrum. Three different absorbers with a band gap in the range 1–1.5 eV are sandwiched between high‐doped p+ and n+ regions in descending order of electron affinity to form an energy‐matched multiple absorber device. A comprehensive analysis of key device parameters influencing performance, including band gap, conduction band alignment, interfacial defects, and thickness, is presented. The optimized triple absorber device shows beyond Shockley–Queisser limit (SQ limit) performance under the constraint of passivated interfaces with defect density below 1013 cm−2. Wide spectrum coverage leads to high short circuit current and an efficiency of 40.3%, which is higher than the SQ limit for single band gap solar cell.

Publisher

Wiley

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