A silicon crusher uses a gas stream as an intermediary to produce fine fragments with minimal surface contamination.
A closed-loop system recycles trichlorosilane and hydrogen chloride through fluidized bed and hydrogenation reactors.
Clamped packaging bags prevent gas adhesion on polycrystalline silicon surfaces, reducing carbon impurities during heat-sealing.
Alternating polycrystalline layers with varying crystal grain sizes reduce mechanical strain in semiconductor components.
Chemical vapor deposition coats silicon particles with carbon to prevent aggregation in lithium-ion battery anodes.
Wet classification removes undersized particles from jet milled silicon powder, enabling homogeneous carbon coating and reducing electrode cracking.
Segmented distributor openings direct carrier gas near reactor walls to minimize silicon deposition on fluidized bed surfaces.
A MgSiSn alloy features voids lined with silicon layers to scatter phonons and reduce thermal conductivity.