Search Results - "Deline, Vaughn R"
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Optimization of CIGS-Based PV Device through Antimony Doping
Published in Chemistry of materials (26-01-2010)Get full text
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Antimony assisted low-temperature processing of CuIn1-xGaxSe2-ySy solar cells
Published in Thin solid films (01-11-2010)Get full text
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Electrodeposited Cu2ZnSnSe4 thin film solar cell with 7% power conversion efficiency
Published in Progress in photovoltaics (01-01-2014)“…ABSTRACT High performance Cu2ZnSnSe4 (CZTSe) photovoltaic materials were synthesized by electrodeposition of metal stack precursors followed by selenization. A…”
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Defects in Cu(In,Ga)Se2 Chalcopyrite Semiconductors: A Comparative Study of Material Properties, Defect States, and Photovoltaic Performance
Published in Advanced energy materials (01-10-2011)“…Understanding defects in Cu(In,Ga)(Se,S)2 (CIGS), especially correlating changes in the film formation process with differences in material properties,…”
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5
Homogeneous Surface Oxidation of Organosilicates by Controlled Combustion of Adsorbed Fuels: A Facile Method for Low-Temperature Processing
Published in ACS applied materials & interfaces (25-09-2013)“…We have developed a method for the oxidation of organosilicate materials at temperatures considerably lower than those typically required for uncatalyzed…”
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Molecular-Controlled Fracture and Release of Templated Nanoporous Organosilicate Thin Films
Published in Advanced materials (Weinheim) (18-08-2008)“…Molecular interactions between templating porogen particles and the underlying substrate can be exploited to create a controlled release mechanism while…”
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Defects in Chalcopyrite Semiconductors: Defects in Cu(In,Ga)Se2 Chalcopyrite Semiconductors: A Comparative Study of Material Properties, Defect States, and Photovoltaic Performance (Adv. Energy Mater. 5/2011)
Published in Advanced energy materials (01-10-2011)“…David Mitzi and co‐workers have studied defects in Cu(In,Ga)Se2 (CIGS), intentionally induced with controlled processing, with both material and device…”
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Defects in Cu(In,Ga)Se 2 Chalcopyrite Semiconductors: A Comparative Study of Material Properties, Defect States, and Photovoltaic Performance
Published in Advanced energy materials (01-10-2011)“…Understanding defects in Cu(In,Ga)(Se,S) 2 (CIGS), especially correlating changes in the film formation process with differences in material properties,…”
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Post Porosity Plasma Protection: Scaling of Efficiency with Porosity
Published in Advanced functional materials (24-07-2012)“…Increasing the porosity of oxycarbosilane dielectrics is a key approach to lower the interconnect signal delay and thus enable manufacturing of lower power…”
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10
Electrodeposited Cu 2 ZnSnSe 4 thin film solar cell with 7% power conversion efficiency
Published in Progress in photovoltaics (01-01-2014)“…High performance Cu 2 ZnSnSe 4 (CZTSe) photovoltaic materials were synthesized by electrodeposition of metal stack precursors followed by selenization. A…”
Get full text
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11
Electrodeposited Cu sub(2)ZnSnSe sub(4) thin film solar cell with 7% power conversion efficiency
Published in Progress in photovoltaics (01-01-2014)“…High performance Cu sub(2)ZnSnSe sub(4) (CZTSe) photovoltaic materials were synthesized by electrodeposition of metal stack precursors followed by…”
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12
Antimony assisted low-temperature processing of CuIn1axGaxSe2aySy solar cells
Published in Thin solid films (01-11-2010)“…Application of the Sb-doping method to low-temperature (a[control][curren]400AC) processing of CuIn1axGaxSe2aySy (CIGS) solar cells is explored, using a…”
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Defects in Cu(In,Ga)Se sub(2) Chalcopyrite Semiconductors: A Comparative Study of Material Properties, Defect States, and Photovoltaic Performance
Published in Advanced energy materials (01-10-2011)“…Understanding defects in Cu(In,Ga)(Se,S) sub(2) (CIGS), especially correlating changes in the film formation process with differences in material properties,…”
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15
Antimony assisted low-temperature processing of CuIn 1 − x Ga xSe 2 − y S y solar cells
Published in Thin solid films (2010)“…Application of the Sb-doping method to low-temperature (≤ 400 °C) processing of CuIn 1 − x Ga xSe 2 − y S y (CIGS) solar cells is explored, using a…”
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