Reducing indium consumption, which is related to the transparent conductive oxide (TCO) use, is a key challenge for scaling up silicon heterojunction (SHJ) solar cell technology to terawatt level. In this work, we developed bifacial SHJ solar cells with reduced TCO thickness. We present three types of In2O3-based TCOs, tin-, fluorine-, and tungsten-doped In2O3 (ITO, IFO, and IWO), whose thickness has been optimally minimized. These are promising TCOs, respectively, from post-transition metal doping, anionic doping, and transition metal doping and exhibit different opto-electrical properties. We performed optical simulations and electrical investigations with varied TCO thicknesses. The results indicate that (i) reducing TCO thickness could ...
Silicon based heterojunction (SHJ) solar cells show high efficiency enabled through excellent passiv...
Broadband transparent conductive oxide layers with high electron mobility (μe) are essential to furt...
Well suited and reliable values of the optical and electrical properties of thin indium tin oxide (I...
Reducing indium consumption, which is related to the transparent conductive oxide (TCO) use, is a ke...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
International audienceThis study explores the needed properties of Transparent Conductive Oxides (TC...
Silicon heterojunction (SHJ) solar cells, the transparent conductive oxide (TCO) layers used are des...
In order to compensate the insufficient conductance of heterojunction thin films, transparent conduc...
Silicon Heterojunction has become a promising technology to substitute passivated emitter and rear c...
The front transparent conductive oxide layer is a source of significant optical and electrical losse...
International audienceThis study aims at understanding and optimizing the properties of transparent ...
A key to solar cells with lower environmental impact is higher efficiency and reduced material usage...
When designing silicon heterojunction SHJ solar cells with a rear emitter RE configuration the r...
One of the challenges in fabricating high‐performance n‐type silicon heterojunction (SHJ) solar cell...
We demonstrate silicon heterojunction solar cells with microscale effectively transparent front cont...
Silicon based heterojunction (SHJ) solar cells show high efficiency enabled through excellent passiv...
Broadband transparent conductive oxide layers with high electron mobility (μe) are essential to furt...
Well suited and reliable values of the optical and electrical properties of thin indium tin oxide (I...
Reducing indium consumption, which is related to the transparent conductive oxide (TCO) use, is a ke...
In the efficiency-driven photovoltaic (PV) industry, the market dominating crystalline silicon (c-Si...
International audienceThis study explores the needed properties of Transparent Conductive Oxides (TC...
Silicon heterojunction (SHJ) solar cells, the transparent conductive oxide (TCO) layers used are des...
In order to compensate the insufficient conductance of heterojunction thin films, transparent conduc...
Silicon Heterojunction has become a promising technology to substitute passivated emitter and rear c...
The front transparent conductive oxide layer is a source of significant optical and electrical losse...
International audienceThis study aims at understanding and optimizing the properties of transparent ...
A key to solar cells with lower environmental impact is higher efficiency and reduced material usage...
When designing silicon heterojunction SHJ solar cells with a rear emitter RE configuration the r...
One of the challenges in fabricating high‐performance n‐type silicon heterojunction (SHJ) solar cell...
We demonstrate silicon heterojunction solar cells with microscale effectively transparent front cont...
Silicon based heterojunction (SHJ) solar cells show high efficiency enabled through excellent passiv...
Broadband transparent conductive oxide layers with high electron mobility (μe) are essential to furt...
Well suited and reliable values of the optical and electrical properties of thin indium tin oxide (I...