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首页> 外文期刊>Progress in photovoltaics >Anti-reflection and hydrophobic characteristics of M-PDMS based moth-eye nano-patterns on protection glass of photowoltaic systems
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Anti-reflection and hydrophobic characteristics of M-PDMS based moth-eye nano-patterns on protection glass of photowoltaic systems

机译:基于M-PDMS的蛾眼纳米图案在光晶体系防护玻璃上的抗反射和疏水特性

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摘要

To maximize the incident light, moth-eye nano-patterns were formed on a glass plate that was used as the protection glass for photovoltaic systems. These moth-eye nano-patterns were formed using a nano-imprint lithography process and increased the transmittance of the glass plate by minimizing the reflection of light at the surface. After the formation of the moth-eye nano-patterns, the surface was coated with a trichloro-silane based self-assembled monolayer in order to create a hydrophobic surface because the hydrophobic surface induced a self-cleaning effect. The transmittance of the glass plate increased from 91 to 94% at wavelength of 500 nm after the moth-eye structure was introduced. Thus, the short circuit current (J_(SC)) of the I-V characteristics and the charged capacity of the photovoltaic system increased up to 6% after replacing the conventional protection glass with the moth-eye nano-patterned glass. The durability of the moth-eye nano-patterns was evaluated with respect to an acidic environment, high temperatures and UV irradiation. From these evaluation results, the values of the transmittance and contact angle did not decrease after the nano-patterns were soaked in sulfuric acid solutions with a pH of 2.0 for 48 h, exposed to a temperature of 120°C for 48 h, and irradiated 10 times with UV light for 4h.
机译:为了使入射光最大化,在用作光伏系统保护玻璃的玻璃板上形成了蛾眼纳米图案。这些蛾眼纳米图案是使用纳米压印光刻工艺形成的,通过最小化表面的光反射来增加玻璃板的透射率。在形成蛾眼纳米图案之后,该表面涂覆有基于三氯硅烷的自组装单层以产生疏水性表面,因为疏水性表面诱导了自清洁作用。引入蛾眼结构后,在500 nm波长下,玻璃板的透射率从91%增至94%。因此,在用蛾眼纳米图案玻璃代替传统的保护玻璃后,具有I-V特性的短路电流(J_(SC))和光伏系统的充电容量增加至6%。相对于酸性环境,高温和紫外线照射评价了蛾眼纳米图案的耐久性。根据这些评价结果,将纳米图案在pH为2.0的硫酸溶液中浸泡48小时,在120℃的温度下暴露48小时后,透射率和接触角的值均未降低。用紫外线照射10次,持续4h。

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