Development of carrier selective contacts for crystalline silicon solar cells has been recently of great interest towards the further expansion of silicon photovoltaics. The use of new electron and hole selective layers has opened an array of possibilities due to the low-cost processing and non-doping contacts. Here, a non-doped heterojunction silicon solar cell without the use of any intrinsic amorphous silicon is fabricated using Deoxyribonucleic acid (DNA) as the electron transport layer (ETL) and transition metal V2O5 as the hole transport layer (HTL). The deposition and characterization of the DNA films on crystalline silicon have been studied, the films have shown a n -type behaviour with a work function of 3.42 eV and a contact resis...
Within the photovoltaic industry, a lot of research is done in order to minimize losses which are cr...
Solar cells rely on the efficient generation of electrons and holes and the subsequent collection of...
AbstractIn this work, a back junction solar cell design is explored for n-type crystalline silicon b...
This is the peer reviewed version of the following article: Tom, T. [et al.]. Deoxyribonucleic acid-...
This chapter redefines silicon-based solar cells by introducing the concept of charge-carrier select...
Deoxyribonucleic acid (DNA) was successfully incorporated as a nanolayer between the bottom indium t...
Copyright © 2018 John Wiley & Sons, Ltd. In this work, the ATOM (intrinsic a-Si:H/TiO x /low work...
In this work, the ATOM (intrinsic a-Si:H/TiOx/low work function metal) structure is investigated to ...
A salient characteristic of solar cells is their ability to subject photo-generated electrons and ho...
In this work, the ATOM (intrinsic a-Si:H/TiOx/low work function metal) structure is investigated to ...
A new solution processable electron transport material (ETM) is introduced for use in photovoltaic d...
Carrier-selective and passivating SiOx/TiOy heterocontacts are an attractive alternative to conventi...
In the last years, novel materials for the formation of electron-selective contacts on n-type crysta...
We examine two different silicon solar cell designs featuring full-area electron-selective contacts ...
The selectivity parameter S10 of titanium oxide (TiOx)-based selective contacts on n-type silicon is...
Within the photovoltaic industry, a lot of research is done in order to minimize losses which are cr...
Solar cells rely on the efficient generation of electrons and holes and the subsequent collection of...
AbstractIn this work, a back junction solar cell design is explored for n-type crystalline silicon b...
This is the peer reviewed version of the following article: Tom, T. [et al.]. Deoxyribonucleic acid-...
This chapter redefines silicon-based solar cells by introducing the concept of charge-carrier select...
Deoxyribonucleic acid (DNA) was successfully incorporated as a nanolayer between the bottom indium t...
Copyright © 2018 John Wiley & Sons, Ltd. In this work, the ATOM (intrinsic a-Si:H/TiO x /low work...
In this work, the ATOM (intrinsic a-Si:H/TiOx/low work function metal) structure is investigated to ...
A salient characteristic of solar cells is their ability to subject photo-generated electrons and ho...
In this work, the ATOM (intrinsic a-Si:H/TiOx/low work function metal) structure is investigated to ...
A new solution processable electron transport material (ETM) is introduced for use in photovoltaic d...
Carrier-selective and passivating SiOx/TiOy heterocontacts are an attractive alternative to conventi...
In the last years, novel materials for the formation of electron-selective contacts on n-type crysta...
We examine two different silicon solar cell designs featuring full-area electron-selective contacts ...
The selectivity parameter S10 of titanium oxide (TiOx)-based selective contacts on n-type silicon is...
Within the photovoltaic industry, a lot of research is done in order to minimize losses which are cr...
Solar cells rely on the efficient generation of electrons and holes and the subsequent collection of...
AbstractIn this work, a back junction solar cell design is explored for n-type crystalline silicon b...