Wafer-based crystalline silicon (c-Si) solar cells currently dominate the photovoltaic (PV) market with high-thermal budget (T > 700 ∘C) architectures (e.g. i-PERC and PERT). However, also low-thermal (T < 250 ∘C) budget heterojunction architecture holds the potential to become mainstream owing to the achievable high efficiency and the relatively simple lithography-free process. A typical heterojunction c-Si solar cell is indeed based on textured n-type and high bulk lifetime wafer. Its front and rear sides are passivated with less than 10-nm thick intrinsic (i) hydrogenated amorphous silicon (a-Si:H) and front and rear side coated with less than 10-nm thick doped a-Si:H layers. Finally, transparent conductive oxide (TCO) and metal at...
Our progress in amorphous crystalline silicon a Si H c Si heterojunction solar cell technology and...
In this work, we focus on the optimization of small-area n +np+ n-type silicon solar cells featuring...
Conventional crystalline silicon (c-Si) diffused P/N junction solar cells remain the large...
The researchers extensively studied the effects of annealing or thermal history of cell process on t...
We present an overview that summarizes recent developments in amorphous crystalline silicon a Si H ...
Crystalline silicon (c-Si) solar cells that are well-established technologies have already achieved ...
The challenge of developing photovoltaic PV technology to a cost competitive alternative for estab...
In this work we show how the heterostructure technology can have a chance in the challenge of interd...
To improve the conversion efficiency of c-Si solar cells, it is crucial to quench the recombination ...
Photovoltaic (PV) technology offers an economic and sustainable solution to the challenge of increas...
We study an amorphous/crystalline silicon heterojunction (Si HJ) as a back contact in industrial sta...
Subject Number 2 Crystalline Silicon Solar Cells and Materials Technology Development and opti...
The amorphous/crystalline silicon heterojunction solar cell fascinated the researchers since the be...
We present the optimization and characterization of heterojunction solar cells consisting of an amor...
Photovoltaic devices based on amorphous silicon/crystalline silicon (a-Si:H/c-Si) heterojunction int...
Our progress in amorphous crystalline silicon a Si H c Si heterojunction solar cell technology and...
In this work, we focus on the optimization of small-area n +np+ n-type silicon solar cells featuring...
Conventional crystalline silicon (c-Si) diffused P/N junction solar cells remain the large...
The researchers extensively studied the effects of annealing or thermal history of cell process on t...
We present an overview that summarizes recent developments in amorphous crystalline silicon a Si H ...
Crystalline silicon (c-Si) solar cells that are well-established technologies have already achieved ...
The challenge of developing photovoltaic PV technology to a cost competitive alternative for estab...
In this work we show how the heterostructure technology can have a chance in the challenge of interd...
To improve the conversion efficiency of c-Si solar cells, it is crucial to quench the recombination ...
Photovoltaic (PV) technology offers an economic and sustainable solution to the challenge of increas...
We study an amorphous/crystalline silicon heterojunction (Si HJ) as a back contact in industrial sta...
Subject Number 2 Crystalline Silicon Solar Cells and Materials Technology Development and opti...
The amorphous/crystalline silicon heterojunction solar cell fascinated the researchers since the be...
We present the optimization and characterization of heterojunction solar cells consisting of an amor...
Photovoltaic devices based on amorphous silicon/crystalline silicon (a-Si:H/c-Si) heterojunction int...
Our progress in amorphous crystalline silicon a Si H c Si heterojunction solar cell technology and...
In this work, we focus on the optimization of small-area n +np+ n-type silicon solar cells featuring...
Conventional crystalline silicon (c-Si) diffused P/N junction solar cells remain the large...