For transparent front contacts of nanostructured silicon solar cells aluminum doped zinc oxide (ZnO:Al), deposited by atomic layer deposition (ALD), is investigated. For this purpose it is crucial that the ZnO:Al layer covers the nanostructures conformally. ZnO:Al deposition at a temperature of 225°C, compatible with the underlying solar cell structures, yields a resistivity of 1.2×10 -3 cm and 85% mean optical transmittance in the VIS-NIR range (<1300 nm). The complex dielectric function of the ALD-ZnO:Al is determined by fitting optical spectra with a multi-oscillator model. An investigation of the layer structure shows a preferential growth in the c-direction of the hexagonal ZnO crystal and 100-200 nm long wedge-shaped crystallites....
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...
A key factor to improve the performance of silicon heterojunction solar cells (SHJ) is increasing th...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
Transparent Conductive Oxide (TCO) films are widely used in optoelectronic devices, such as solar ce...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
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...
A key factor to improve the performance of silicon heterojunction solar cells (SHJ) is increasing th...
Stacks consisting of an ultrathin SiO2 coated with atomic-layer deposited (ALD) zinc oxide (ZnO) and...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
Recently, stacks consisting of an ultrathin SiO2 coated with atomic-layer-deposited (ALD) Al-doped z...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
Transparent Conductive Oxide (TCO) films are widely used in optoelectronic devices, such as solar ce...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
Here high-efficiency (above 21%) large-area silicon heterojunction solar cells with atomic layer dep...
We report on silicon heterojunction solar cells using textured aluminum doped zinc oxide (ZnO:Al) as...
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...
A key factor to improve the performance of silicon heterojunction solar cells (SHJ) is increasing th...