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首页> 外文期刊>Journal of nanoscience and nanotechnology >Numerical Simulation and Fabrication of Silicon Sheet via Spin Casting
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Numerical Simulation and Fabrication of Silicon Sheet via Spin Casting

机译:旋转铸造硅片的数值模拟与制备

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A spin-casting process for fabricating polycrystalline silicon sheets for use as solar cell wafers is proposed, and the parameters that control the sheet thickness are investigated. A numerical study of the fluidity of molten silicon indicates that the formation of thin silicon sheets without a mold and via spin casting is feasible. The faster the rotation speed of graphite mold, the thinner the thickness of sheet. After the spread of the molten silicon to cover the graphite mold with rotation speed of above 500 rpm, the solidification has to start. Silicon sheets can be produced by using the centrifugal force under appropriate experimental conditions. The spin-cast sheet had a vertical columnar microstructure due to the normal heat extraction to the substrate, and the sheet lifetime varied from 0.1 μS to 0.3 μS measured by using the microwave photoconductance decay (MW-PCD) to confirm that the spin-cast silicon sheet is applicable to photovoltaics.
机译:提出了一种旋转浇铸工艺,该工艺用于制造用作太阳能电池晶片的多晶硅片,并研究了控制片厚度的参数。熔融硅流动性的数值研究表明,无需模具和通过旋铸形成薄硅片是可行的。石墨模具的旋转速度越快,片材的厚度越薄。在熔融硅以高于500 rpm的转速散布以覆盖石墨模具后,必须开始固化。可以通过在适当的实验条件下利用离心力来生产硅片。旋涂片材由于向基板的正常散热而具有垂直的柱状微观结构,并且通过使用微波光电导衰减(MW-PCD)测得的片材寿命在0.1μS到0.3μS之间变化,以确认旋涂硅片适用于光伏。

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