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Alexander, Paul, Jr.

Publications and source records attributed to Alexander, Paul, Jr..

Forming n/p Junctions With An Excimer Laser

Compact equipment yields high-quality solar cells. Computer controls pulses of excimer laser and movement of silcon wafer. Mirrors direct laser beam to wafer. Lenses focus beam to small spot on surface. Process suitable for silicon made by dendritic-web-growth process.

Alexander, Paul, Jr.

Ink-Jet Printer Forms Solar-Cell Contacts

Contacts formed in controllable patterns with metal-based inks. System forms upper metal contact patterns on silicon photovoltaic cells. Uses metallo-organic ink, decomposes when heated, leaving behind metallic, electrically conductive residue in printed area.

Alexander, Paul, Jr.

Forming Solar-Cell Junctions By Flash Diffusion

Modified fabrication process simultaneously forms front and back junctions of silicon photovoltaic cells. With flash diffusion, junctions formed in 10 to 20 seconds. Cost reductions of 25 to 30 percent expected with modified process. Devices produced have performance equal to or better than cells made by conventional diffusion.

Alexander, Paul, Jr.

Liquid-Dopant Fabrication of Solar Cells

Liquid dopants and liquid masks used to produce front and back junctions of solar cells. Resulting cells equal in efficiency to those fabricated by more-expensive gaseous-diffusion technique.

Alexander, Paul, Jr.