| openaire: EC/FP7/307315/EU//SOLARXWhile it is well known that copper impurities can be relatively easily gettered from the silicon bulk to the phosphorus or boron-doped surface layers, it has remained unclear how thermally stable the gettering actually is. In this work, we show experimentally that a typical rapid thermal anneal (RTA, a few seconds at 800 °C) used commonly in the semiconductor and photovoltaic industries is sufficient to release a significant amount of Cu species from the phosphorus-doped layer to the wafer bulk. This is enough to activate the so-called copper-related light-induced degradation (Cu-LID) which results in significant minority carrier lifetime degradation. We also show that the occurrence of Cu-LID in the wafe...
AbstractIn this contribution, we provide an insight into the light-induced degradation of multicryst...
Copper contamination causes minority carrier lifetime degradation in p-type silicon bulk under illum...
| openaire: EC/FP7/307315/EU//SOLARXAs photovoltaic (PV) device architectures advance, they turn mor...
The presence of copper (Cu) contamination is known to cause relevant light-induced degradation (Cu-L...
Copper is a common impurity in photovoltaic silicon. While reported to precipitate instantly in n-ty...
In silicon-based devices copper (Cu) contamination is the cause of a variety of adverse effects, one...
Light-induced degradation (LID) is a deleterious effect in crystalline silicon, which is considered ...
Copper is a harmful metal impurity that significantly impacts the performance of silicon-based devic...
The presence of copper impurities is known to deteriorate the bulk minority carrier lifetime of sili...
| openaire: EC/FP7/307315/EU//SOLARXBoth multicrystalline and Czochralski (Cz) silicon substrates ar...
avaa käsikirjoitus, kun julkaistuLight-induced degradation (LID) can occur in crystalline silicon (S...
In addition to boron and oxygen, copper is also known to cause light-induced degradation (LID) in si...
The presence of copper impurities is known to deteriorate the bulk minority carrier lifetime of sili...
The presence of copper contamination is known to cause strong light-induced degradation (Cu-LID) in ...
Although light-induced degradation (LID) in crystalline silicon is attributed to the formation of bo...
AbstractIn this contribution, we provide an insight into the light-induced degradation of multicryst...
Copper contamination causes minority carrier lifetime degradation in p-type silicon bulk under illum...
| openaire: EC/FP7/307315/EU//SOLARXAs photovoltaic (PV) device architectures advance, they turn mor...
The presence of copper (Cu) contamination is known to cause relevant light-induced degradation (Cu-L...
Copper is a common impurity in photovoltaic silicon. While reported to precipitate instantly in n-ty...
In silicon-based devices copper (Cu) contamination is the cause of a variety of adverse effects, one...
Light-induced degradation (LID) is a deleterious effect in crystalline silicon, which is considered ...
Copper is a harmful metal impurity that significantly impacts the performance of silicon-based devic...
The presence of copper impurities is known to deteriorate the bulk minority carrier lifetime of sili...
| openaire: EC/FP7/307315/EU//SOLARXBoth multicrystalline and Czochralski (Cz) silicon substrates ar...
avaa käsikirjoitus, kun julkaistuLight-induced degradation (LID) can occur in crystalline silicon (S...
In addition to boron and oxygen, copper is also known to cause light-induced degradation (LID) in si...
The presence of copper impurities is known to deteriorate the bulk minority carrier lifetime of sili...
The presence of copper contamination is known to cause strong light-induced degradation (Cu-LID) in ...
Although light-induced degradation (LID) in crystalline silicon is attributed to the formation of bo...
AbstractIn this contribution, we provide an insight into the light-induced degradation of multicryst...
Copper contamination causes minority carrier lifetime degradation in p-type silicon bulk under illum...
| openaire: EC/FP7/307315/EU//SOLARXAs photovoltaic (PV) device architectures advance, they turn mor...