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Theory of Graded-Bandgap Thin-Film Solar Cells

Af: Akhlesh Lakhtakia, Peter B. Monk, Faiz Ahmad Engelsk Paperback

Theory of Graded-Bandgap Thin-Film Solar Cells

Af: Akhlesh Lakhtakia, Peter B. Monk, Faiz Ahmad Engelsk Paperback
Tjek vores konkurrenters priser
Thin-film solar cells are cheap and easy to manufacture but require improvements as their efficiencies are low compared to that of the commercially dominant crystalline-silicon solar cells. An optoelectronic model is formulated and implemented along with the differential evolution algorithm to assess the efficacy of grading the bandgap of the CIGS, CZTSSe, and AlGaAs photon-absorbing layer for optimizing the power-conversion efficiency of thin-film CIGS, CZTSSe, and AlGaAs solar cells, respectively, in the two-terminal single-junction format. Each thin-film solar cell is modeled as a photonic device as well as an electronic device. Solar cells with two (or more) photon-absorbing layers can also be handled using the optolelectronic model, whose results will stimulate experimental techniques for bandgap grading to enable ubiquitous small-scale harnessing of solar energy.
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Thin-film solar cells are cheap and easy to manufacture but require improvements as their efficiencies are low compared to that of the commercially dominant crystalline-silicon solar cells. An optoelectronic model is formulated and implemented along with the differential evolution algorithm to assess the efficacy of grading the bandgap of the CIGS, CZTSSe, and AlGaAs photon-absorbing layer for optimizing the power-conversion efficiency of thin-film CIGS, CZTSSe, and AlGaAs solar cells, respectively, in the two-terminal single-junction format. Each thin-film solar cell is modeled as a photonic device as well as an electronic device. Solar cells with two (or more) photon-absorbing layers can also be handled using the optolelectronic model, whose results will stimulate experimental techniques for bandgap grading to enable ubiquitous small-scale harnessing of solar energy.
Produktdetaljer
Sprog: Engelsk
Sider: 118
ISBN-13: 9783031008962
Indbinding: Paperback
Udgave:
ISBN-10: 3031008960
Udg. Dato: 24 aug 2021
Længde: 0mm
Bredde: 191mm
Højde: 235mm
Forlag: Springer International Publishing AG
Oplagsdato: 24 aug 2021
Forfatter(e) Akhlesh Lakhtakia, Peter B. Monk, Faiz Ahmad


Kategori Ingeniørvidenskab: generelt


ISBN-13 9783031008962


Sprog Engelsk


Indbinding Paperback


Sider 118


Udgave


Længde 0mm


Bredde 191mm


Højde 235mm


Udg. Dato 24 aug 2021


Oplagsdato 24 aug 2021


Forlag Springer International Publishing AG

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