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Highly efficient narrow bandgap Cu(In,Ga)Se2 solar cells with enhanced open circuit voltage for tandem application
by
Zhang, Junjun
, Zhang, Yitian
, Liu, Xinxing
, Lin, Qianqian
, Li, Jianmin
, Zheng, Xue
, Gong, Junbo
, Li, Ruiming
, Yang, Chunlei
, Fang, Guojia
, Ma, Zengyang
, Xiao, Xudong
, Li, Weimin
in
140/58
/ 147/135
/ 639/301/299/946
/ 639/4077/909/4101/4096/946
/ Absorbers
/ Absorption spectra
/ Carrier recombination
/ Copper indium gallium selenides
/ Copper indium selenides
/ Diffusion layers
/ Efficiency
/ Energy gap
/ Gallium
/ Humanities and Social Sciences
/ multidisciplinary
/ Open circuit voltage
/ Photovoltaic cells
/ Photovoltaics
/ Recombination
/ Science
/ Science (multidisciplinary)
/ Solar cells
/ Voltage
2024
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Highly efficient narrow bandgap Cu(In,Ga)Se2 solar cells with enhanced open circuit voltage for tandem application
by
Zhang, Junjun
, Zhang, Yitian
, Liu, Xinxing
, Lin, Qianqian
, Li, Jianmin
, Zheng, Xue
, Gong, Junbo
, Li, Ruiming
, Yang, Chunlei
, Fang, Guojia
, Ma, Zengyang
, Xiao, Xudong
, Li, Weimin
in
140/58
/ 147/135
/ 639/301/299/946
/ 639/4077/909/4101/4096/946
/ Absorbers
/ Absorption spectra
/ Carrier recombination
/ Copper indium gallium selenides
/ Copper indium selenides
/ Diffusion layers
/ Efficiency
/ Energy gap
/ Gallium
/ Humanities and Social Sciences
/ multidisciplinary
/ Open circuit voltage
/ Photovoltaic cells
/ Photovoltaics
/ Recombination
/ Science
/ Science (multidisciplinary)
/ Solar cells
/ Voltage
2024
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Highly efficient narrow bandgap Cu(In,Ga)Se2 solar cells with enhanced open circuit voltage for tandem application
by
Zhang, Junjun
, Zhang, Yitian
, Liu, Xinxing
, Lin, Qianqian
, Li, Jianmin
, Zheng, Xue
, Gong, Junbo
, Li, Ruiming
, Yang, Chunlei
, Fang, Guojia
, Ma, Zengyang
, Xiao, Xudong
, Li, Weimin
in
140/58
/ 147/135
/ 639/301/299/946
/ 639/4077/909/4101/4096/946
/ Absorbers
/ Absorption spectra
/ Carrier recombination
/ Copper indium gallium selenides
/ Copper indium selenides
/ Diffusion layers
/ Efficiency
/ Energy gap
/ Gallium
/ Humanities and Social Sciences
/ multidisciplinary
/ Open circuit voltage
/ Photovoltaic cells
/ Photovoltaics
/ Recombination
/ Science
/ Science (multidisciplinary)
/ Solar cells
/ Voltage
2024
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Highly efficient narrow bandgap Cu(In,Ga)Se2 solar cells with enhanced open circuit voltage for tandem application
Journal Article
Highly efficient narrow bandgap Cu(In,Ga)Se2 solar cells with enhanced open circuit voltage for tandem application
2024
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Overview
Although an ideal bandgap matching with 0.96 eV and 1.62 eV for a double-junction tandem is hard to realize practically, among all mature photovoltaic systems, Cu(In,Ga)Se
2
(CIGSe) can provide the closest bandgap of 1.00 eV for the bottom sub-cell by adjusting its composition. However, pure CuInSe
2
(CISe) solar cell suffers strong interfacial carrier recombination. We hereby present approaches to introduce appropriate Ga gradients in both the back and front parts of absorber while maintaining the absorption spectrum close to CISe. With an appropriate front Ga gradient, the open circuit voltage can be enhanced by ~30 mV. With a pre-deposited CIGSe layer and a high copper excess deposition during absorber growth, the Ga diffusion can be well suppressed and a wide U-shaped Ga grading with a minimum bandgap of 1.01 eV has been created. Our optimized narrow-bandgap CIGSe solar cell has achieved a certified record PCE of 20.26%, with a record-low open circuit voltage deficit of 368 mV and a record-high contribution of 10% absolute efficiency to a four-terminal tandem. This work demonstrates the potential of controlling gallium diffusion to improve the performance of narrow bandgap CIGSe solar cells for tandem applications.
Pure CuInSe
2
solar cells suffer from strong interfacial carrier recombination. Here, the authors introduce a wide U-shaped double Ga grading with a minimum bandgap of 1.01 eV and achieve certified device efficiency of 20.26%, making it highly suitable for tandem solar cell applications.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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