AbstractThe Hydrogenated silicon nitride (SiNx:H) using plasma enhanced chemical vapor deposition is widely used in photovoltaic industry as an antireflection coating and passivation layer. In the high temperature firing process, the SiNx:H film should not change the properties for its use as high quality surface layer in crystalline silicon solar cells. For optimizing surface layer in crystalline silicon solar cells, by varying gas mixture ratios (SiH4+NH3+N2, SiH4+NH3, SiH4+N2), the hydrogenated silicon nitride films were analyzed for its antireflection and surface passivation properties. The film deposited with the gas mixture of SiH4+NH3+N2 showed the best properties in before and after firing process conditions.The single crystalline s...
We use plasma-enhanced chemical vapour deposition to deposit silicon nitride (SiN_x) films at low te...
Two solar cell types are discussed in this thesis. Firstly, the Metal Wrap-Through cell, where the e...
High-quality surface passivation is essential for obtaining crystalline silicon (c-Si) solar cells w...
International audienceDense hydrogenated silicon nitride (SiNx:H) layers for photovoltaics are made ...
Different systems for the deposition of silicon nitride (SiN) as a passivating antireflection coatin...
This work demonstrates the efficient optical and passivation properties provided by hydrogenated sil...
The influence of a short high-temperature step, comparable to the so-called firing of the metalliz...
Amorphous silicon nitride (SiNx) is a widely studied alloy with many commercial applications. This t...
We present hydrogenated amorphous silicon nitride (a-SiNx:H) films for multicrystalline silicon (mc-...
Driven by the need for improvement of the economical competitiveness of photovoltaic energy, the fea...
The application of hot-wire (HW) CVD deposited silicon nitride (SiNx) as passivating anti-reflection...
Hydrogen plays a major role for passivation of silicon surfaces. The hydrogen needed for passivation...
The influence of a short high-temperature step, comparable to the so-called "firing" of the metalliz...
We present hydrogenated amorphous silicon nitride (a-SiNx:H) films for multicrystalline silicon (mc-...
Excellent and thermally stable surface passivation of SiNx:H grown using N2 and SiH4 as precursor ga...
We use plasma-enhanced chemical vapour deposition to deposit silicon nitride (SiN_x) films at low te...
Two solar cell types are discussed in this thesis. Firstly, the Metal Wrap-Through cell, where the e...
High-quality surface passivation is essential for obtaining crystalline silicon (c-Si) solar cells w...
International audienceDense hydrogenated silicon nitride (SiNx:H) layers for photovoltaics are made ...
Different systems for the deposition of silicon nitride (SiN) as a passivating antireflection coatin...
This work demonstrates the efficient optical and passivation properties provided by hydrogenated sil...
The influence of a short high-temperature step, comparable to the so-called firing of the metalliz...
Amorphous silicon nitride (SiNx) is a widely studied alloy with many commercial applications. This t...
We present hydrogenated amorphous silicon nitride (a-SiNx:H) films for multicrystalline silicon (mc-...
Driven by the need for improvement of the economical competitiveness of photovoltaic energy, the fea...
The application of hot-wire (HW) CVD deposited silicon nitride (SiNx) as passivating anti-reflection...
Hydrogen plays a major role for passivation of silicon surfaces. The hydrogen needed for passivation...
The influence of a short high-temperature step, comparable to the so-called "firing" of the metalliz...
We present hydrogenated amorphous silicon nitride (a-SiNx:H) films for multicrystalline silicon (mc-...
Excellent and thermally stable surface passivation of SiNx:H grown using N2 and SiH4 as precursor ga...
We use plasma-enhanced chemical vapour deposition to deposit silicon nitride (SiN_x) films at low te...
Two solar cell types are discussed in this thesis. Firstly, the Metal Wrap-Through cell, where the e...
High-quality surface passivation is essential for obtaining crystalline silicon (c-Si) solar cells w...