Understanding surface passivation arising from aluminium oxide (Al2O3) films is of significant relevance for silicon-based solar cells and devices that require negligible surface recombination. This study aims to understand the competing bulk and surface lifetime effects which occur during the activation of atomic layer deposited Al2O3. We demonstrate that maximum passivation is achieved on n- and p-type silicon with activation at ∼ 450 °C, irrespective of annealing ambient. Upon stripping the Al2O3 films and re-passivating the surface using a superacid-based technique, we find the bulk lifetime of float-zone and Czochralski silicon wafers degrade at annealing temperatures > 450 °C. By accounting for this bulk lifetime degradation, we demon...
The surface passivation of c-Si by atomic layer deposited (ALD) Al2O3 has recently gained considerab...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Understanding surface passivation arising from aluminium oxide (Al2O3) films is of significant relev...
Understanding surface passivation arising from aluminium oxide (Al2O3) films is of significant relev...
AbstractAl2O3 deposited using Atomic layer Deposition (ALD) technique is known as an excellent mater...
The surface passivation of c-Si by atomic layer deposited (ALD) Al2O3 has recently gained considerab...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
The effect of the native silicon oxide layer on the passivation properties of Al2O3 on p-type Si sur...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
The surface passivation of c-Si by atomic layer deposited (ALD) Al2O3 has recently gained considerab...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Understanding surface passivation arising from aluminium oxide (Al2O3) films is of significant relev...
Understanding surface passivation arising from aluminium oxide (Al2O3) films is of significant relev...
AbstractAl2O3 deposited using Atomic layer Deposition (ALD) technique is known as an excellent mater...
The surface passivation of c-Si by atomic layer deposited (ALD) Al2O3 has recently gained considerab...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
The effect of the native silicon oxide layer on the passivation properties of Al2O3 on p-type Si sur...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
The surface passivation of c-Si by atomic layer deposited (ALD) Al2O3 has recently gained considerab...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...
Passivation process is a key feature to improve the efficiency of silicon solar cells. So far, a 20n...