AbstractEfficiencies above 19% have been achieved by many PV manufacturers by applying different selective emitter technologies on p-type CZ silicon wafers with screen printed aluminium back-surface field which limits the voltage of the cell to below 640mV. In order to overcome this limit, in this paper, laser doping technology was applied into both surfaces of commercial grade p-type silicon wafer passivated with dielectric layer to form a pseudo solar cell structure with standard laser-doped selective emitter on the front and local back-surface field. This paper studies the passivation and thermal property of the dielectric layer. Post deposition annealing is investigated by measuring the minority carrier effective lifetime and implied Vo...
Laser-induced selective Si doping and simultaneous ablation of a dielectric passivation layer is a p...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
This paper shows an innovative and low temperature fabrication technology for crystalline silicon (c...
AbstractEfficiencies above 19% have been achieved by many PV manufacturers by applying different sel...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
To enable photovoltaics (PV) to become a leading source of energy in a low-carbon future, the cost o...
To reach the goal of grid parity, the cost of crystalline solar cells need to be reduced considerabl...
Technologies that could further improve commercial silicon solar cell cost effectiveness are explore...
Screen printed solar cell technology has dominated the photovoltaic (PV) industry for the past coupl...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
AbstractThis paper shows an innovative and low temperature fabrication technology for crystalline si...
We report on the development of a laser doping process for the formation of a local back surface fie...
n-Type silicon as base material offers a great potential for highly efficient solar cells. In this w...
Laser-induced selective Si doping and simultaneous ablation of a dielectric passivation layer is a p...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
This paper shows an innovative and low temperature fabrication technology for crystalline silicon (c...
AbstractEfficiencies above 19% have been achieved by many PV manufacturers by applying different sel...
This thesis examines two different ways to improve the performance of single sided laser-doped solar...
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
To enable photovoltaics (PV) to become a leading source of energy in a low-carbon future, the cost o...
To reach the goal of grid parity, the cost of crystalline solar cells need to be reduced considerabl...
Technologies that could further improve commercial silicon solar cell cost effectiveness are explore...
Screen printed solar cell technology has dominated the photovoltaic (PV) industry for the past coupl...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
The use of laser doping in the solar cell industry has recently led to the commercialisation of seve...
AbstractThis paper shows an innovative and low temperature fabrication technology for crystalline si...
We report on the development of a laser doping process for the formation of a local back surface fie...
n-Type silicon as base material offers a great potential for highly efficient solar cells. In this w...
Laser-induced selective Si doping and simultaneous ablation of a dielectric passivation layer is a p...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
This paper shows an innovative and low temperature fabrication technology for crystalline silicon (c...