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Robust photothermal anti-icing/deicing via flexible CMDSP carbon nanotube films

机译:通过柔性CMDSP碳纳米管薄膜实现坚固的光热防冰/除冰

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摘要

Photothermal anti-icing/deicing technology is an environmentally friendly surface technology that can be applied to the surface of aircraft, vehicles or ships. However, it is still a huge challenge to develop a strong and stable flexible film that can efficiently convert light to heat. Here, based on a simple electrochemical method to construct a zinc oxide (ZnO) nanoneedles structure on the surface of the carbon nanotube film, a film with the function of condensed micro-droplet self-propelling (CMDSP) was successfully prepared. The prepared film has excellent light absorption capacity and high energy transfer efficiency (76.71). The film has strong photothermal anti-icing/deicing performance. Under 4406 Lux light irradiation, even under low temperature conditions of -5 degrees C, the icing delay time exceeds 4 h. This novel characteristic is attributed to the CMDSP function on the surface and the ultra-fast evaporation mechanism, which can remove water droplets on the surface as quickly as possible. This function helps to design energy-saving equipment that requires high-power heating and deicing.
机译:光热防冰/除冰技术是一种环保的表面技术,可应用于飞机、车辆或船舶的表面。然而,开发一种能够有效地将光转化为热的坚固稳定的柔性薄膜仍然是一个巨大的挑战。本文基于简单的电化学方法在碳纳米管薄膜表面构建氧化锌(ZnO)纳米针结构,成功制备了一种具有凝聚微液滴自推进(CMDSP)功能的薄膜。制备的薄膜具有优异的吸光能力和较高的能量传递效率(76.71%)。该膜具有很强的光热防冰/除冰性能。在4406 Lux光照射下,即使在-5°C的低温条件下,结冰延迟时间也超过4 h。这种新颖的特性归功于表面的CMDSP功能和超快的蒸发机制,可以尽快去除表面的水滴。此功能有助于设计需要大功率加热和除冰的节能设备。

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