The overall goal of this research is to improve fundamental understanding of the hydrogen passivation of defects in low-cost silicon and the fabrication of high-efficiency solar cells on thin crystalline silicon through low-cost technology development. A novel method was developed to estimate the flux of hydrogen, released from amorphous silicon nitride film, into the silicon. Rapid-firing-induced higher flux of hydrogen was found to be important for higher defect passivation. This was followed by the fabrication of solar cell efficiencies of ~ 17% on low-cost, planar cast multicrystalline silicon. Solar cell efficiencies and lifetime enhancement in the top, middle, and bottom regions of cast multicrystalline silicon ingots were explained o...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
The purpose of this thesis is to improve electronic quality of polycrystalline silicon thin film sol...
While photovoltaics hold much promise as a sustainable electricity source, continued cost reduction ...
The overall goal of this research is to improve fundamental understanding of the hydrogen passivatio...
Photovoltaics (PV) offers a unique opportunity to solve energy and environmental problems simultaneo...
It has been predicted that due to the population growth the energy demand is increasing faster and f...
textTo make solar energy mainstream, lower-cost and more efficient power generation is key. A lot of...
The objective of this research is to achieve low-cost high-efficiency commercial-ready passivated em...
The application of the novel solar energy is one of the possible solutions for satisfying human’s in...
The objective of this research is to achieve low-cost high-efficiency (> 23%) commercial-ready bifac...
Presented at the 14th International Photovoltaic Science and Engineering Conference; Chulalongkorn U...
Passivating silicon solar cell surfaces is critical to fabricating very high efficiency and low cost...
Sandia National Laboratories (SNL) conducts pioneering research and development in Micro-Electro-Mec...
In polycrystalline silicon (pc-Si) thin-film solar cells, defect passivation is critical to device p...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
The purpose of this thesis is to improve electronic quality of polycrystalline silicon thin film sol...
While photovoltaics hold much promise as a sustainable electricity source, continued cost reduction ...
The overall goal of this research is to improve fundamental understanding of the hydrogen passivatio...
Photovoltaics (PV) offers a unique opportunity to solve energy and environmental problems simultaneo...
It has been predicted that due to the population growth the energy demand is increasing faster and f...
textTo make solar energy mainstream, lower-cost and more efficient power generation is key. A lot of...
The objective of this research is to achieve low-cost high-efficiency commercial-ready passivated em...
The application of the novel solar energy is one of the possible solutions for satisfying human’s in...
The objective of this research is to achieve low-cost high-efficiency (> 23%) commercial-ready bifac...
Presented at the 14th International Photovoltaic Science and Engineering Conference; Chulalongkorn U...
Passivating silicon solar cell surfaces is critical to fabricating very high efficiency and low cost...
Sandia National Laboratories (SNL) conducts pioneering research and development in Micro-Electro-Mec...
In polycrystalline silicon (pc-Si) thin-film solar cells, defect passivation is critical to device p...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
The purpose of this thesis is to improve electronic quality of polycrystalline silicon thin film sol...
While photovoltaics hold much promise as a sustainable electricity source, continued cost reduction ...