Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD
10.1002/pip.3097
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sg-nus-scholar.10635-1550402024-11-10T14:53:33Z Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD Nandakumar, Naomi Rodriguez, John Kluge, Thomas Grosse, Thomas Fondop, Lauretta Padhamnath, Pradeep Balaji, Nagarajan Koenig, Marcel Duttagupta, Shubham SOLAR ENERGY RESEARCH INST OF S'PORE Dr Naomi Nandakumar Science & Technology Technology Physical Sciences Energy & Fuels Materials Science, Multidisciplinary Physics, Applied Materials Science Physics industrial firing industrial process large-area passivated contacts PECVD screen-printed silicon wafer solar cells SI SOLAR-CELLS EFFICIENCY RECOMBINATION TRANSISTORS 10.1002/pip.3097 PROGRESS IN PHOTOVOLTAICS 27 2 107-112 2019-06-03T04:31:38Z 2019-06-03T04:31:38Z 2019-02-01 2019-06-03T01:36:35Z Article Nandakumar, Naomi, Rodriguez, John, Kluge, Thomas, Grosse, Thomas, Fondop, Lauretta, Padhamnath, Pradeep, Balaji, Nagarajan, Koenig, Marcel, Duttagupta, Shubham (2019-02-01). Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD. PROGRESS IN PHOTOVOLTAICS 27 (2) : 107-112. ScholarBank@NUS Repository. https://doi.org/10.1002/pip.3097 1062-7995 1099-159X https://scholarbank.nus.edu.sg/handle/10635/155040 en WILEY Elements |
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Science & Technology Technology Physical Sciences Energy & Fuels Materials Science, Multidisciplinary Physics, Applied Materials Science Physics industrial firing industrial process large-area passivated contacts PECVD screen-printed silicon wafer solar cells SI SOLAR-CELLS EFFICIENCY RECOMBINATION TRANSISTORS |
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Science & Technology Technology Physical Sciences Energy & Fuels Materials Science, Multidisciplinary Physics, Applied Materials Science Physics industrial firing industrial process large-area passivated contacts PECVD screen-printed silicon wafer solar cells SI SOLAR-CELLS EFFICIENCY RECOMBINATION TRANSISTORS Nandakumar, Naomi Rodriguez, John Kluge, Thomas Grosse, Thomas Fondop, Lauretta Padhamnath, Pradeep Balaji, Nagarajan Koenig, Marcel Duttagupta, Shubham Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
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10.1002/pip.3097 |
author2 |
SOLAR ENERGY RESEARCH INST OF S'PORE |
author_facet |
SOLAR ENERGY RESEARCH INST OF S'PORE Nandakumar, Naomi Rodriguez, John Kluge, Thomas Grosse, Thomas Fondop, Lauretta Padhamnath, Pradeep Balaji, Nagarajan Koenig, Marcel Duttagupta, Shubham |
format |
Article |
author |
Nandakumar, Naomi Rodriguez, John Kluge, Thomas Grosse, Thomas Fondop, Lauretta Padhamnath, Pradeep Balaji, Nagarajan Koenig, Marcel Duttagupta, Shubham |
author_sort |
Nandakumar, Naomi |
title |
Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
title_short |
Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
title_full |
Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
title_fullStr |
Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
title_full_unstemmed |
Approaching 23% with large-area monoPoly cells using screen-printed and fired rear passivating contacts fabricated by inline PECVD |
title_sort |
approaching 23% with large-area monopoly cells using screen-printed and fired rear passivating contacts fabricated by inline pecvd |
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WILEY |
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2019 |
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https://scholarbank.nus.edu.sg/handle/10635/155040 |
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1821208458555293696 |