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| Description: | This presentation discusses research that reports a novel optofluidic solar concentration system based on electrowetting. In comparison with traditional silicon-based PV solar cells, the electrowetting-based self-tracking technology will generate ~70% higher green energy with a 50% cost reduction. |
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| Creation Date: | April 19, 2012 |
| Partner(s): |
UNT Honors College
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| Collection(s): |
UNT Scholarly Works
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| Usage: |
Total Uses: 19
Past 30 days: 3
Yesterday: 0
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| Creator (Author): |
Reilly, David
University of North Texas; Undergraduate Research Fellow |
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| Creator (Contributor): |
Cheng, Jiangtao
University of North Texas; Faculty Mentor; jiangtao.cheng@unt.edu |
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| Original Creation Date: | April 19, 2012 | |
| Description: | This presentation discusses research that reports a novel optofluidic solar concentration system based on electrowetting. In comparison with traditional silicon-based PV solar cells, the electrowetting-based self-tracking technology will generate ~70% higher green energy with a 50% cost reduction. |
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| Degree: |
Department:
Mechanical and Energy Engineering
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| Physical Description: |
14 p. |
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| Keyword(s): | electrowetting | solar power | Sodium Dodecyl Sulfate | solar cells | |
| Source: | Ninth Annual University Scholars Day, 2012, Denton, Texas, United States | |
| Contributor(s): |
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| Series Title: | University Scholars Day | |
| Partner: |
UNT Honors College
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| Collection: |
UNT Scholarly Works
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| Relation (Is Version Of): | Electrowetting Solar Cell, ark:/67531/metadc86183 | |
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| Resource Type: | Presentation | |
| Format: | Image | |
| Rights: |
Access:
Public
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