Transparent conductive oxides are commonplace in many PV technologies but have not been applied to III-V multijunction solar cells so far. In this paper, we analyze the current performance of the latest generation of these materials and study the potential advantages of their use in III-V multijunction solar cells via simulations and experiments. Calculations show that a number of conductive oxides have potential for improving the performance of these devices by boosting the lateral conductance of the emitter without significant optical losses. Initial experimental results reveal that there exist a number of practical challenges to be overcome to reach the improvements predicted by theory
Silicon heterojunction (SHJ) solar cells, the transparent conductive oxide (TCO) layers used are des...
Today?s thin-film solar cells could not function without transparent conducting oxides (TCOs). TCOs ...
In this work, we discuss the results of a 2-dimensional numerical device simulation study concerning...
Transparent conductive oxides are commonplace in many PV technologies but have not been applied to I...
THESIS 10000In the present thesis deposition and characterization of transparent conducting oxides (...
International audienceThis contribution is the second part of a presentation of transparent conducti...
International audienceThis contribution, based on literature review, presents a general overview of ...
International audienceThis study explores the needed properties of Transparent Conductive Oxides (TC...
The effect of transparent conductive oxide (TCO) on the performance of compact-layer free perovskite...
In this paper, we begin by discussing the historical background of transparent conducting oxides and...
Dye-sensitised solar cells are suitable for use as a top cell in a tandem solar cell structure, with...
The performance of thin-film solar cells is critically dependent upon the effective operation of tra...
High mobility transparent conducting oxide (HMTCO) materials (mobilityN60 cm2 V−1 s−1) have a high t...
As an alternative to common thin-film solar cells based on CdTe and CIGS, III-V-based devices could ...
Silicon heterojunction (SHJ) solar cells, the transparent conductive oxide (TCO) layers used are des...
Today?s thin-film solar cells could not function without transparent conducting oxides (TCOs). TCOs ...
In this work, we discuss the results of a 2-dimensional numerical device simulation study concerning...
Transparent conductive oxides are commonplace in many PV technologies but have not been applied to I...
THESIS 10000In the present thesis deposition and characterization of transparent conducting oxides (...
International audienceThis contribution is the second part of a presentation of transparent conducti...
International audienceThis contribution, based on literature review, presents a general overview of ...
International audienceThis study explores the needed properties of Transparent Conductive Oxides (TC...
The effect of transparent conductive oxide (TCO) on the performance of compact-layer free perovskite...
In this paper, we begin by discussing the historical background of transparent conducting oxides and...
Dye-sensitised solar cells are suitable for use as a top cell in a tandem solar cell structure, with...
The performance of thin-film solar cells is critically dependent upon the effective operation of tra...
High mobility transparent conducting oxide (HMTCO) materials (mobilityN60 cm2 V−1 s−1) have a high t...
As an alternative to common thin-film solar cells based on CdTe and CIGS, III-V-based devices could ...
Silicon heterojunction (SHJ) solar cells, the transparent conductive oxide (TCO) layers used are des...
Today?s thin-film solar cells could not function without transparent conducting oxides (TCOs). TCOs ...
In this work, we discuss the results of a 2-dimensional numerical device simulation study concerning...