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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Morphology, Mechanical Stability, and Protective Properties of Ultrathin Gallium Oxide Coatings
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Morphology, Mechanical Stability, and Protective Properties of Ultrathin Gallium Oxide Coatings

机译:超薄氧化镓涂层的形貌,机械稳定性和防护性能

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摘要

Ultrathin gallium oxide. layers with a thickness of 2.8 +/- 0.2 nm were transferred from the surface of liquid gallium onto: solid substrates, including, conjugated polymer poly(3-hexylthiophene) (P3HT). The gallium oxide exhibits high mechanical stability, Withstanding normal pressures of up to 1 GPa in contact mode scanning force microscopy imaging. Moreover, it lowers the rate of photodegradation of P3HT by 4 orders of magnitude, as compared to uncovered P3HT. This allows us to estimate the upper limits for oxygen and water vapor transmission rates of 0.08 cm(3) m(-2) day(-1) and 0.06 mg m(-2) day(-1) respectively. Hence, similar to other highly functional coatings such as, graphene, ultrathin gallium oxide layers can be regarded as promising candidates for protective layers in flexible organic (opto-)electronics and photovoltaics because they offer permeation barrier functionalities in conjunction with high optical transparency.
机译:超薄氧化镓。将厚度为2.8 +/- 0.2 nm的有机层从液体镓的表面转移到:固体基质上,包括共轭聚合物聚(3-己基噻吩)(P3HT)。氧化镓具有很高的机械稳定性,在接触模式扫描力显微镜成像中可承受高达1 GPa的常压。此外,与未发现的P3HT相比,它将P3HT的光降解速率降低了4个数量级。这使我们能够估计氧气和水蒸气透过率的上限分别为0.08 cm(3)m(-2)day(-1)和0.06 mg m(-2)day(-1)。因此,类似于石墨烯之类的其他高功能涂层,超薄氧化镓层可被视为柔性有机(光电)电子和光伏产品中的保护层的有前途的候选者,因为它们具有渗透阻挡功能以及高光学透明性。

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