The influence of different black silicon (b-Si) front side textures prepared by inductively coupled reactive ion etching (ICP-RIE) on the performance of back-contacted back silicon heterojunction (BCB-SHJ) solar cells is investigated in detail regarding their optical performance, black silicon surface passivation and internal quantum efficiency. Under optimized conditions the effective minority carrier lifetime measured on black silicon surfaces passivated with Al2O3 can be higher than lifetimes measured for the SiO2/SiNx passivation stack used in the reference cells with standard KOH textures. However, to outperform the electrical current of silicon back-contact cells, the black silicon back-contact cell process needs to be optimized with ...
The performance of n-type silicon back-contact back-junction (BC-BJ) solar cells under the illuminat...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
| openaire: EC/FP7/307315/EU//SOLARXLight and elevated-temperature induced degradation (LeTID) is cu...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
Black silicon (bSi) is promising for integration into silicon solar cell fabrication flow due to its...
This work compares the back side passivation quality of bifacial silicon (Si) solar cells with boron...
This work compares the back side passivation quality of bifacial silicon (Si) solar cells with boron...
This work demonstrates the high potential of Al2O3 passivated black silicon in high-efficiency inter...
Black silicon (b-Si) reduces drastically light reflectance in the front side of c-Si solar cells to ...
We report on significant progress towards the application of reactive ion etched (RIE) black silicon...
Back surface passivation is a well-known method to reduce carrier recombination and hence improves t...
Back surface passivation is a well-known method to reduce carrier recombination and hence improves t...
Different etching times are used to etch silicon wafers. Effects of surface morphology on wafer mino...
The performance of n-type silicon back-contact back-junction (BC-BJ) solar cells under the illuminat...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
| openaire: EC/FP7/307315/EU//SOLARXLight and elevated-temperature induced degradation (LeTID) is cu...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
Black silicon (bSi) is promising for integration into silicon solar cell fabrication flow due to its...
This work compares the back side passivation quality of bifacial silicon (Si) solar cells with boron...
This work compares the back side passivation quality of bifacial silicon (Si) solar cells with boron...
This work demonstrates the high potential of Al2O3 passivated black silicon in high-efficiency inter...
Black silicon (b-Si) reduces drastically light reflectance in the front side of c-Si solar cells to ...
We report on significant progress towards the application of reactive ion etched (RIE) black silicon...
Back surface passivation is a well-known method to reduce carrier recombination and hence improves t...
Back surface passivation is a well-known method to reduce carrier recombination and hence improves t...
Different etching times are used to etch silicon wafers. Effects of surface morphology on wafer mino...
The performance of n-type silicon back-contact back-junction (BC-BJ) solar cells under the illuminat...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
| openaire: EC/FP7/307315/EU//SOLARXLight and elevated-temperature induced degradation (LeTID) is cu...