scholarly journals Soft X-ray absorption spectroscopy investigation of the surface chemistry and treatments of copper indium gallium diselenide (CIGS)

2017 ◽  
Vol 160 ◽  
pp. 390-397
Author(s):  
Craig Schwartz ◽  
Dennis Nordlund ◽  
Dimosthenis Sokaras ◽  
Miguel Contreras ◽  
Tsu-Chien Weng ◽  
...  
2013 ◽  
Vol 760-762 ◽  
pp. 732-735
Author(s):  
Xiu Chun Guo ◽  
Wen Hui Zhou

A facile solution method for the synthesis of single-crystal copper indium gallium diselenide (CIGS) nanotubes was developed by using anodic aluminum oxide (AAO) as morphology directing template and triethylenetetramine as both reducing agent and effective chelating agent. The crystal structure, morphology, elemental composition of the as-obtained CIGS nanotubes were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and transmission electron microscopy (TEM). The as-obtained CIGS nanotubes have a diameter about 200 nm and a thickness of 30 nm. The proposed synthesis strategy developed in this work may be used as a general process for other metal chalcogenides nanotubes and may have a bright application prospects in high efficiency, yet low cost photovoltaic areas in the future.


2013 ◽  
Vol 1538 ◽  
pp. 45-50 ◽  
Author(s):  
Sreejith Karthikeyan ◽  
Kushagra Nagaich ◽  
Arthur E Hill ◽  
Richard D Pilkington ◽  
Stephen A Campbell

ABSTRACTPulsed d.c Magnetron Sputtering (PdcMS) has been investigated for the first time to study the deposition of copper indium gallium diselenide (CIGS) thin films for photovoltaic applications. Pulsing the d.c. in the mid frequency region enhances the ion intensity and enables long term arc-free operation for the deposition of high resistivity materials such as CIGS. It has the potential to produce films with good crystallinity, even at low substrate temperatures. However, the technique has not generally been applied to the absorber layers for photovoltaic applications. The growth of stoichiometric p-type CIGS with the desired electro-optical properties has always been a challenge, particularly over large areas, and has involved multiple steps often including a dangerous selenization process to compensate for selenium vacancies. The films deposited by PdcMS had a nearly ideal composition (Cu0.75In0.88Ga0.12Se2) as deposited at substrate temperatures ranging from no intentional heating to 400 °C. The films were found to be very dense and pin-hole free. The stoichiometry was independent of heating during the deposition, but the grain size increased with substrate temperature, reaching about ∼ 150 nm at 400 °C. Hot probe analysis showed that the layers were p-type. The physical, structural and optical properties of these films were analyzed using SEM, EDX, XRD, and UV-VIS-NIR spectroscopy. The material characteristics suggest that these films can be used for solar cell applications. This novel ion enhanced single step low temperature deposition technique may have a critical role in flexible and tandem solar cell applications compared to other conventional techniques which require higher temperatures.


2020 ◽  
Vol MA2020-01 (19) ◽  
pp. 1201-1201
Author(s):  
Meltem Yilmaz ◽  
Albertus Denny Handoko ◽  
Ivan P Parkin ◽  
Gopinathan Sankar

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