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Influence of sub-10 nm anodic alumina nanowire morphology formed by two-step anodizing aluminum on water wettability and slipping behavior

机译:两步阳极氧化铝在水润湿性和滑倒行为上形成的亚10nm阳极氧化铝纳米线形态的影响

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The influence of the nanomorphology of alumina nanowires (ANWs) fabricated by a two-step anodizing process on the superhydrophobicity was investigated through advancing contact angle (ACA) and receding contact angle (RCA) measurements. Aluminum nanobowl specimens were anodized in pyrophosphoric acid to fabricate an ordered ANW structure with an average diameter of 7.1 nm, and the outermost surface of the ANWs was chemically bonded with fluorinated self-assembled monolayers. The growing ANWs bent immediately their own weight, and pyramidal ANW structures were formed as they joined the surrounding nanowires together. The ACA value increased with the number density of pyramidal ANW structures due to the reducing area fraction of ANWs, and an increased superhydrophobicity with a contact angle of approximately 165. was measured on the low-density pyramidal structure with a density of 8.1 x 10(11) m(-2). Additional anodizing led to complete nanowire bending; thus, the advancing contact angle decreased. The pyramidal nanowire structure exhibited a large slipping property with a contact angle hysteresis (CAH) 10 degrees, whereas the bent nanowire structure exhibited a decreased slipping property with a CAH 100 degrees. Superhydrophobic surfaces with opposite water slipping properties were demonstrated by a water dropping experiment.
机译:通过推进接触角(ACA)和去除接触角(RCA)测量,研究了通过两步阳极氧化过程制造的两步阳极氧化过程制造的氧化铝纳米线(ANWS)的影响。在焦磷酸中阳极氧化铝纳米管氧化物,以制造具有平均直径为7.1nm的有序的ANW结构,并且锚的最外表面与氟化自组装单层化学键合。越来越多的砧座立即弯曲它们自己的重量,并且形成金字塔·anw结构,因为它们在一起将周围纳米线连接在一起。由于减小的AnW的面积分数,锥形anw结构的数量密度增加,并且具有大约165的接触角的增加的超细纤维性。在低密度锥体结构上测量,密度为8.1 x 10( 11)m(-2)。额外的阳极氧化导致完全纳米线弯曲;因此,推进的接触角减少。金字塔纳米线结构具有带接触角滞后(CaH)<10度的大滑动性能,而弯曲的纳米线结构表现出具有CaH> 100度的降低的滑动性。通过水滴实验证明了具有相反水滑动性能的超疏水表面。

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