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In amorphous silicon this long range order is not present.
The first thin film technology to be extensively developed and manufactured was amorphous silicon.
The liquid crystal in most monitors is a material called amorphous silicon glass.
This step became necessary since evaporated, amorphous silicon did break at oxide steps.
Amorphous silicon semiconductors have become the basis of many technologies and industries.
This innovation was possible due to the introduction of the amorphous silicon solar cell in a watch movement.
Moreover, not all the atoms within amorphous silicon are fourfold coordinated.
The over 400,000 panels are of amorphous silicon thin-film photovoltaic technology.
It uses a thin film of amorphous silicon sandwiched between two pieces of glass.
This light induced degradation is the major disadvantage of amorphous silicon as a photovoltaic material.
A third method for crystallizing amorphous silicon is the use of thermal plasma jet.
This can potentially increase the light efficiency of solar cells made with amorphous silicon carbide layers.
Conventionally, amorphous silicon thin films are most common.
The efficiency of an amorphous silicon solar cell typically drops during the first six months of operation.
Amorphous silicon has no long-range periodic order.
The group's patent also lists several other semiconductor multijunction compositions in addition to amorphous silicon.
Amorphous silicon (a-Si) is a popular solar cell material owing to its low cost and ease of production.
Typically, amorphous silicon thin-film cells use a p-i-n structure.
Most solar-powered consumer products, including watches, calculators and even tricycles, are made with small amorphous silicon cells.
Stacking one or more thinner layers of amorphous silicon together with other materials to form a multijunction solar cell.
The model made by the Sharp Electronics Corporation uses an amorphous silicon technology and can copy only one line at a time.
Monocrystalline is opposed to amorphous silicon, in which the atomic order is limited to short range order only.
Annealing the amorphous silicon at a few hundred degrees Celsius for a few hours reverses the effect.
Amorphous silicon (a-Si) is the non-crystalline allotropic form of silicon.
The application of amorphous silicon to photovoltaics as a standalone material is somewhat limited by its inferior electronic properties.
The material used for multilayer systems is a bilayer of alternating elements, commonly Ni/Al, Al/Ti or Ti/a-Si.
Astronergy is one of the first in the world, and the first Chinese company, to bring mass production of second-generation amorphous silicon/microcrystalline silicon tandem junction thin film technology (a-Si/uc-Si) to market.