Laser-induced selective Si doping and simultaneous ablation of a dielectric passivation layer is a promising technology for the creation of efficient and cost-effective solar cells. In this paper, the electrical quality of emitters produced with a 532-nm continuous-wave laser will be discussed using elaborate analysis of quasi-steady-state photoconductance (QSSPC) measurements. It will be shown that these emitters cause good charge carrier shielding, which leads to emitter saturation current densities as low as 240 fA/cm2 for unpassivated surfaces. If an SiNx layer is present during laser doping, the emitter recombination increases by a factor of three. This detrimental effect is put down to the formation of microcavities within the recryst...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
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...
AbstractIn this paper, the laser induced defects that result from a picosecond laser ablation (wavel...
Laser firing processes have emerged as a technologically feasible approach for the fabrication of lo...
In this paper Laser Chemical Processing (LCP) is used for high local doping of selective emitters. I...
In this paper a detailed study on the electrical characteristics of Ni/Cu/Ag plated p-type Passivate...
To reach the goal of grid parity, the cost of crystalline solar cells need to be reduced considerabl...
In the industrial fabrication of silicon solar cells, lowly doped emitters offer an opportunity to i...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
In this work we report for the first time on the creation of thermal acceptors after laser irradiati...
Atomic hydrogen is widely used to passivate recombination active defects in silicon solar cells, yet...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
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...
AbstractIn this paper, the laser induced defects that result from a picosecond laser ablation (wavel...
Laser firing processes have emerged as a technologically feasible approach for the fabrication of lo...
In this paper Laser Chemical Processing (LCP) is used for high local doping of selective emitters. I...
In this paper a detailed study on the electrical characteristics of Ni/Cu/Ag plated p-type Passivate...
To reach the goal of grid parity, the cost of crystalline solar cells need to be reduced considerabl...
In the industrial fabrication of silicon solar cells, lowly doped emitters offer an opportunity to i...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
Laser doping from as-deposited CVD layers is a new and promising field for selective doping in solar...
This paper focuses on the analysis of local phosphorous laser doping in high-efficiency solar cells....
In this work we report for the first time on the creation of thermal acceptors after laser irradiati...
Atomic hydrogen is widely used to passivate recombination active defects in silicon solar cells, yet...
Selective laser doping is a versatile tool for the local adaption of doping profiles in a silicon su...
Advanced structures with localized contacts can enable high efficiency crystalline silicon solar cel...
AbstractEfficiencies above 19% have been achieved by many PV manufacturers by applying different sel...