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161
Ordered Mesoporous Slippery Silica Coatings on Photovoltaic Cover Glasses to Enhance Photocurrent with Sustainability for Large-Scale Applications
Published 2024“…Accordingly, the photocurrent increased by about 4.1% under 1 sun (100 mW cm<sup>–2</sup>) conditions. …”
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Ordered Mesoporous Slippery Silica Coatings on Photovoltaic Cover Glasses to Enhance Photocurrent with Sustainability for Large-Scale Applications
Published 2024“…Accordingly, the photocurrent increased by about 4.1% under 1 sun (100 mW cm<sup>–2</sup>) conditions. …”
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163
Ordered Mesoporous Slippery Silica Coatings on Photovoltaic Cover Glasses to Enhance Photocurrent with Sustainability for Large-Scale Applications
Published 2024“…Accordingly, the photocurrent increased by about 4.1% under 1 sun (100 mW cm<sup>–2</sup>) conditions. …”
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164
Ordered Mesoporous Slippery Silica Coatings on Photovoltaic Cover Glasses to Enhance Photocurrent with Sustainability for Large-Scale Applications
Published 2024“…Accordingly, the photocurrent increased by about 4.1% under 1 sun (100 mW cm<sup>–2</sup>) conditions. …”
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165
<i>G*</i>, <i>δ</i> and <i>G*</i>/sin<i>δ</i> at different temperatures.
Published 2024“…WER-EA with 0.44 eq/100g epoxy value (E44) performed best at low temperatures, with a maximum increase in <i>m</i> value of 39.4% and a maximum decrease in <i>S</i> value of 33.3% compared to the other two WER-EA. …”
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<i>J</i><sub><i>nr</i></sub> and <i>R</i> of different samples.
Published 2024“…WER-EA with 0.44 eq/100g epoxy value (E44) performed best at low temperatures, with a maximum increase in <i>m</i> value of 39.4% and a maximum decrease in <i>S</i> value of 33.3% compared to the other two WER-EA. …”
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<i>m</i> and <i>S</i> at different temperatures and dosages.
Published 2024“…WER-EA with 0.44 eq/100g epoxy value (E44) performed best at low temperatures, with a maximum increase in <i>m</i> value of 39.4% and a maximum decrease in <i>S</i> value of 33.3% compared to the other two WER-EA. …”
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