Defect control in Cu(In,Ga)Se<sub>2</sub> (CIGS) materials, no matter what the defect type or density, is a significant issue, correlating directly to PV performance. These defects act as recombination centers and can be briefly categorized into interface recombination and Shockley–Read–Hall (SRH) recombination, both of which can lead to reduced PV performance. Here, we introduce an electrochemical passivation treatment for CIGS films that can lower the oxygen concentration at the CIGS surface as observed by X-ray photoelectron spectrometer analysis. Temperature-dependent <i>J–V</i> characteristics of CIGS solar cells reveal that interface recombination is suppressed and an improved rollover condition can be achieved following our electro...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...
The progress of Cu(In,Ga)S2 remains significantly limited mainly due to photovoltage (Voc) losses in...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...
Thin-film solar cells consist of several layers. The interfaces between these layers can provide cri...
The material supply to build renewable energy conversion systems needs to be considered from both a ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Copper-indium-gallium-diselenide (CIGS) thin-film solar cells suffer from high recombination losses ...
Interface quality plays a key role in solar cell applications. Interface recombination at the front ...
Interface quality plays a key role in solar cell applications. Interface recombination at the front ...
Several optoelectronic issues, such as recombination and poor optical absorption limit the power con...
The benefits of gallium (Ga) grading on Cu(In,Ga)Se2 (CIGS) solar cell performance are demonstrated ...
Copper indium gallium selenide (CIGS) solar cells, known for their high conversion efficiency, are d...
An optimization of band alignment at the p–n junction interface is realized on alcohol-based solutio...
Thin film solar cells based on polycrystalline absorbers have reached very high conversion efficienc...
Polycrystalline Cu(In,Ga)Se2 (CIGS) based thin-film solar cells achieve power-conversion efficiencie...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...
The progress of Cu(In,Ga)S2 remains significantly limited mainly due to photovoltage (Voc) losses in...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...
Thin-film solar cells consist of several layers. The interfaces between these layers can provide cri...
The material supply to build renewable energy conversion systems needs to be considered from both a ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Copper-indium-gallium-diselenide (CIGS) thin-film solar cells suffer from high recombination losses ...
Interface quality plays a key role in solar cell applications. Interface recombination at the front ...
Interface quality plays a key role in solar cell applications. Interface recombination at the front ...
Several optoelectronic issues, such as recombination and poor optical absorption limit the power con...
The benefits of gallium (Ga) grading on Cu(In,Ga)Se2 (CIGS) solar cell performance are demonstrated ...
Copper indium gallium selenide (CIGS) solar cells, known for their high conversion efficiency, are d...
An optimization of band alignment at the p–n junction interface is realized on alcohol-based solutio...
Thin film solar cells based on polycrystalline absorbers have reached very high conversion efficienc...
Polycrystalline Cu(In,Ga)Se2 (CIGS) based thin-film solar cells achieve power-conversion efficiencie...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...
The progress of Cu(In,Ga)S2 remains significantly limited mainly due to photovoltage (Voc) losses in...
An innovative rear contacting structure for copper indium gallium (di) selenide (CIGS) thin-film sol...