This study deals with the silicon surface passivation by thermal ALD deposited oxides bilayer of HfO2/Al2O3 as well as single layer of Al rich ZnO (AZO) in the form of ZnO and Al2O3 multilayers. A significant improvement in the effective minority carrier lifetime (tau(eff)similar to 1.3ms) of n-type Si is observed after deposition of HfO2(5nm)/Al2O3(5nm)/Si compared to that of the single layer Al2O3(10nm)/Si (similar to 0.6ms). Better surface passivation is due to a significant increase in the effective charge density in the bilayer system. Also, the sequence of the dielectric layers is found to play an important role in the quality and effectiveness of the passivation. Further, high tau(eff) (similar to 1.5ms) is also realized for p-type S...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Atomic-layer-deposited (ALD) aluminum oxide (Al2O3) has recently demonstrated an excellent surface p...
The evidence of good quality silicon surface passivation using thermal ALD deposited Al doped zinc o...
The evidence of good quality silicon surface passivation using thermal ALD deposited Al doped zinc o...
Field effect passivation of crystalline silicon surface is controlled by tailoring the built-in char...
AbstractWe have studied the surface passivation of p- and n-type silicon by thermal atomic layer dep...
In this work atomic layer deposition of Al2O3 and TiO2 has been used to obtain dielectric stacks for...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Atomic-layer-deposited (ALD) aluminum oxide (Al2O3) has recently demonstrated an excellent surface p...
The evidence of good quality silicon surface passivation using thermal ALD deposited Al doped zinc o...
The evidence of good quality silicon surface passivation using thermal ALD deposited Al doped zinc o...
Field effect passivation of crystalline silicon surface is controlled by tailoring the built-in char...
AbstractWe have studied the surface passivation of p- and n-type silicon by thermal atomic layer dep...
In this work atomic layer deposition of Al2O3 and TiO2 has been used to obtain dielectric stacks for...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
In silicon heterojunction solar cells, the main opportunities for efficiency gain lie in improvement...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Atomic-layer-deposited (ALD) aluminum oxide (Al2O3) has recently demonstrated an excellent surface p...