Scinovex
articleTop 10% cited

Detailed Balance Limit of Efficiency of<i>p-n</i>Junction Solar Cells

Journal of Applied Physics · 1961 · Vol. 32(3) · pp. 510–519

Abstract

In order to find an upper theoretical limit for the efficiency of p-n junction solar energy converters, a limiting efficiency, called the detailed balance limit of efficiency, has been calculated for an ideal case in which the only recombination mechanism of hole-electron pairs is radiative as required by the principle of detailed balance. The efficiency is also calculated for the case in which radiative recombination is only a fixed fraction fc of the total recombination, the rest being nonradiative. Efficiencies at the matched loads have been calculated with band gap and fc as parameters, the sun and cell being assumed to be blackbodies with temperatures of 6000°K and 300°K, respectively. The maximum efficiency is found to be 30% for an energy gap of 1.1 ev and fc = 1. Actual junctions do not obey the predicted current-voltage relationship, and reasons for the difference and its relevance to efficiency are discussed.

solar cell performance optimizationSilicon and Solar Cell TechnologiesPhotovoltaic System Optimization TechniquesDetailed balanceRadiative transferBand gapPhysicsEnergy conversion efficiencyLimit (mathematics)Spontaneous emissionEnergy balanceRecombinationAtomic physics
Citations
12,706
FWCI
9.21
field-weighted impact
References
25
Percentile
98%
vs. same field & year
Citations per year
Cited by
The case for organic photovoltaics
RSC Advances · 2013 · 505 citations
Stability of perovskite solar cells
Solar Energy Materials and Solar Cells · 2016 · 962 citations
A critical review on tin halide perovskite solar cells
Journal of Materials Chemistry A · 2017 · 581 citations
Advances in Perovskite Solar Cells
Advanced Science · 2016 · 619 citations
Perovskites: The Emergence of a New Era for Low-Cost, High-Efficiency Solar Cells
The Journal of Physical Chemistry Letters · 2013 · 2,900 citations
Limiting efficiencies for photovoltaic energy conversion in multigap systems
Solar Energy Materials and Solar Cells · 1996 · 479 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.