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Role of Hierarchical Protrusions in Water Repellent Superhydrophobic PTFE Surface Produced by Low Energy Ion Beam Irradiation

机译:分层凸起在低能离子束辐照产生的疏水超疏水PTFE表面中的作用

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摘要

The surface wettability of polytetrafluoroethylene (PTFE) was investigated with low energy Ar+ ion beam irradiation varied from 300 eV to 800 eV both at normal and oblique angle of incidence (0°–70°) and at a low irradiation time of few 10 s of seconds. A remarkable change in surface wettability was observed, surface became hydrophobic to superhydrophobic just at 800 eV energy and in 30 s time. A systematic increase in the contact angle was observed with increase in beam energy and irradiation time. For a given ion energy and a threshold irradiation time, the hierarchical protrusions developed that leads to the rolling and bouncing of water droplet even on the horizontal PTFE surface. For the above energy range, the rolling speed was found to be in the range of ~19–31 mm/s. This induced wetting behaviour due to ion irradiation leads to the Cassie-Baxter state as confirmed by the calculation of sliding angle, contact angle hysteresis (CAH) and surface free energy (SE). The CAH values were found to be reduced from 18° for untreated surface (SE ~ 20 mN/m) to 2° for 800 eV, 180 s irradiated surface (SE ~ 0.35 mN/m) at normal incidence.
机译:用低能Ar + 离子束辐照法研究了聚四氟乙烯(PTFE)的表面可湿性,该离子束在垂直和倾斜入射角(0°–70°)以及入射角为300 eV至800 eV的范围内变化。辐照时间短,仅为10秒的秒。观察到表面润湿性发生了显着变化,仅在800 eV的能量下和30s内,表面就变成了疏水性到超疏水性。随着束能量和照射时间的增加,观察到接触角的系统增加。对于给定的离子能量和阈值辐照时间,会形成分层的突起,即使在水平PTFE表面上,也会导致水滴的滚动和反弹。对于上述能量范围,发现轧制速度在〜19–31 mm / s的范围内。通过滑动角,接触角磁滞(CAH)和表面自由能(SE)的计算可以确认,这种由离子辐照引起的润湿行为导致了Cassie-Baxter状态。发现在正常入射下,CAH值从未处理表面的18°(SE〜20 mN / m)降低到800°eV,180 s辐照表面的SE°〜0.35 mN / m的2°。

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