The book addresses the problem of passivation at the surface of crystalline silicon solar cells. More specifically, it reports on a high-throughput, industrially compatible deposition method for Al2O3, enabling its application to commercial solar cells. One of the main focus is on the analysis of the physics of Al2O3 as a passivating dielectric for silicon surfaces. This is accomplished through a comprehensive study, which moves from the particular, the case of aluminium oxide on silicon, to the general, the physics of surface recombination, and is able to connect theory with practice, highlighting relevant commercial applications
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
Chapter 4 gives a summary composed from [1], and consistent with more general overview papers [2,3]....
In the present thesis, different aspects of the silicon surface passivation provided by aluminum oxi...
The book addresses the problem of passivation at the surface of crystalline silicon solar cells. Mor...
AbstractThe surface passivation properties of aluminium oxide (Al2O3) on crystalline Si are compared...
The surface passivation properties of aluminium oxide (Al 2O 3) on crystalline Si are compared with ...
AbstractThe surface passivation properties of aluminium oxide (Al2O3) on crystalline Si are compared...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
Thin layers of aluminum oxide (Al2O3) are highly relevant for various high-efficiency silicon solar ...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The next generation of industrial silicon solar cells aims at efficiencies of 20% and above. To achi...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The next generation of industrial silicon solar cells aims at efficiencies of 20% and above. To achi...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
Chapter 4 gives a summary composed from [1], and consistent with more general overview papers [2,3]....
In the present thesis, different aspects of the silicon surface passivation provided by aluminum oxi...
The book addresses the problem of passivation at the surface of crystalline silicon solar cells. Mor...
AbstractThe surface passivation properties of aluminium oxide (Al2O3) on crystalline Si are compared...
The surface passivation properties of aluminium oxide (Al 2O 3) on crystalline Si are compared with ...
AbstractThe surface passivation properties of aluminium oxide (Al2O3) on crystalline Si are compared...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
Thin layers of aluminum oxide (Al2O3) are highly relevant for various high-efficiency silicon solar ...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The next generation of industrial silicon solar cells aims at efficiencies of 20% and above. To achi...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The next generation of industrial silicon solar cells aims at efficiencies of 20% and above. To achi...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
Chapter 4 gives a summary composed from [1], and consistent with more general overview papers [2,3]....
In the present thesis, different aspects of the silicon surface passivation provided by aluminum oxi...