A laboratory-scale reactor and a novel method for the atmospheric pressure chemical vapor deposition (APCVD) of SiO2-x films are developed. The deposited films are investigated to synthesize heterogeneously upon the substrate surface with the elimination of the so-called gas-phase reaction, hence preventing parasitic oxide particles upon the substrate surface and the reactor inner walls. The films are extensively inspected in terms of chemical and optical properties and utilized for crystalline silicon solar cell applications. Simple reactor design with low safety measures, a wide range of deposition rates, high film resilience, and stability for the intended applications are successfully achieved. The newly developed APCVD SiO2-x is proven...
Excellent surface passivation is a key feature of high-efficiency c-Si solar cell concepts. Manz AG ...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...
A laboratory-scale reactor and a novel method for the atmospheric pressure chemical vapor deposition...
A SiH4-free atmospheric pressure chemical vapor deposition (APCVD) technique was developed that prov...
AbstractA new process for deposition of silicon oxide films with excellent passivation properties wa...
Functional oxides are versatile materials that can simultaneously enable efficiency gains and cost r...
Atmospheric Pressure Plasma Jet (APPJ) is an alternative for wet processes used to make anti reflect...
AbstractAn innovative method to obtain antireflection and passivation coatings on p-type crystalline...
The potential of thin film photovoltaic technologies in supporting sustainable energy policies has l...
Using a high throughput, in-line atmosphere chemical vapor deposition (APCVD) tool, we have synthesi...
Using a high throughput, in-line atmosphere chemical vapor deposition (APCVD) tool, we have synthesi...
Passivated and locally rear contacted solar cell concepts are currently leaping forward towards indu...
High performance transparent conducting oxides (TCOs), havesignificance for optimising PV performanc...
The surface passivation of SiO2/Al 2O3 stacks prepared at low process temperatures was investigated ...
Excellent surface passivation is a key feature of high-efficiency c-Si solar cell concepts. Manz AG ...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...
A laboratory-scale reactor and a novel method for the atmospheric pressure chemical vapor deposition...
A SiH4-free atmospheric pressure chemical vapor deposition (APCVD) technique was developed that prov...
AbstractA new process for deposition of silicon oxide films with excellent passivation properties wa...
Functional oxides are versatile materials that can simultaneously enable efficiency gains and cost r...
Atmospheric Pressure Plasma Jet (APPJ) is an alternative for wet processes used to make anti reflect...
AbstractAn innovative method to obtain antireflection and passivation coatings on p-type crystalline...
The potential of thin film photovoltaic technologies in supporting sustainable energy policies has l...
Using a high throughput, in-line atmosphere chemical vapor deposition (APCVD) tool, we have synthesi...
Using a high throughput, in-line atmosphere chemical vapor deposition (APCVD) tool, we have synthesi...
Passivated and locally rear contacted solar cell concepts are currently leaping forward towards indu...
High performance transparent conducting oxides (TCOs), havesignificance for optimising PV performanc...
The surface passivation of SiO2/Al 2O3 stacks prepared at low process temperatures was investigated ...
Excellent surface passivation is a key feature of high-efficiency c-Si solar cell concepts. Manz AG ...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...
The constant energy consumption and world-wide demography expansion add to the potential risks of ec...