Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and aluminum oxide (Al2O3) have been shown to yield state-of-the-art passivation of n-type crystalline silicon surfaces. The distinguishing aspect of this novel passivation stack is the very conductive nature of the passivating ZnO layer. In this work, it is demonstrated that such a stack can provide additional functionalities relevant for silicon solar cells. Specifically, it is shown that the conductive and transparent stacks can passivate textured and n+-diffused silicon surfaces and that they can form an Ohmic contact to n+ -diffused surfaces with a low contact resistivity, provided the ZnO is Al-doped. The Al2O3 capping layer has previously...
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...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
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...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
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...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
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...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
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...