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Subsurface Structures of Monocrystalline Silicon Generated by Nanogrinding

Key Engineering Materials, 2008
This paper reports the effect of nanogrinding conditions on the formation of subsurface structures of monocrystalline silicon (100) substrates. It was found that the amorphization and the transformation of high pressure phases were related to the grit depth of cut employed in nanogrinding.
Huang, Han   +4 more
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Novel monocrystalline silicon micromirrors for maskless lithography

Sensors and Actuators A: Physical, 2007
A novel monocrystalline silicon micromirror structure for improving image fidelity in laser pattern generators is presented. Analytical and finite element analysis of the structure as well as an outline of a fabrication scheme to realize the structure are given.
M. Bring, P. Enoksson
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Monocrystalline Silicon Solar Cells

2021
Monocrystalline silicon based solar cells have the attributes that includes elemental semiconductor nature and balancing properties making it extensively applicable in the field of microelectronics. Silicon based solar cells make about 90% of today’s photovoltaic technology.
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Determination Of The Elastic Temperature Coefficients Of Monocrystalline Silicon

Proceedings of the International Solid-State Sensors and Actuators Conference - TRANSDUCERS '95, 2005
More accurate sets of linear (first order) elastic temperature coefficients are presented for monocrystalline silicon of a low-doped p-type silicon (p = 4 cm) and high-doped n-type silicon (p = 0.05 cm).
Bourgeois, C.   +4 more
openaire   +2 more sources

Surface model of formation of silicon nitride on monocrystalline silicon

Applied Surface Science, 2002
We present a model for the formation of silicon nitride on monocrystalline Si(1 0 0)-(2 x 1) at 300 K using gaseous ammonia (NH3) as nitridation reagent. FT-IR was used to identify surface species. From crystallographic and thermodynamic considerations the model shows the different steps of formation of Si3N4 and the chemical species formed during this
Sassi, Zina   +3 more
openaire   +2 more sources

Heterojunctions on monocrystalline silicon

1993
Transparent low resistivity CdS films have been evaporated on p-Si and n-p Si monocrystalline substrates to form heterojunction solar cells. Electrical and optical properties are investigated by I-V, C-V and quantum efficiency measurements. By comparing to conventional n-p Si cells, it is found that CdS/n-p Si configuration has the advantage of ...
openaire   +1 more source

Thin monocrystalline silicon solar cells

IEEE Transactions on Electron Devices, 1999
One of the most effective approaches for a cost reduction of crystalline silicon solar cells is the better utilization of the crystals by cutting thinner wafers. However, such thin silicon wafers must have sufficient mechanical strength to maintain a high mechanical yield in cell and module manufacturing.
K.A. Munzer   +3 more
openaire   +1 more source

Nanotwinning in monocrystalline silicon upon nanoscratching

Scripta Materialia, 2011
Nanoscratching-induced deformation in monocrystaline silicon is found to depend on the loading conditions. Molecular dynamics simulations reveal that amorphous phase transformation and nanotwins are the two major mechanisms. At a relatively low scratching depth, amorphous transformation occurs on the surface; however, when the scratching depth is ...
Kausala Mylvaganam, L.C. Zhang
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Polymorphous/Crystalline Silicon Heterojunction Solar Cells:Optimization on Monocrystalline Silicon

2007
23rd European Photovoltaic Solar Energy Conference and Exhibition, 1-5 September 2008, Valencia, Spain; 1696 ...
Ribeyron, P.J.   +7 more
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Slow Ion Channeling in Monocrystalline Silicon

Physics of the Solid State, 2020
The profiles of the distribution of Si+ ions over the depth of single-crystal silicon were calculated by the molecular dynamics method. The inelastic energy losses during deceleration are determined within the electron density functional theory. The factors affecting the ion channeling process are analyzed.
openaire   +1 more source

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