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Robust water repellent ZnO nanorod array by Swift Heavy Ion Irradiation: Effect of Electronic Excitation Induced Local Chemical State Modification

机译:swift重离子辐照稳健防水ZnO纳米棒阵列:电子激发诱导局部化学状态修饰的影响

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摘要

Tailoring the surface properties by varying the chemistry and roughness could be of interest for self-cleaning applications. We demonstrate the transformation of hydrophobic ZnO Nano rod (NR) array into superhydrophobic nature by changing the local chemical state and without altering the surface roughness by swift heavy ion (SHI) irradiation. The aligned ZnO NR arrays were irradiated using 150 MeV Ag ions with different fluences from 5E10 to 3E12 ions/cm. The observed static water contact angles of ZnO NRs samples were 103° ± 3°, 152° ± 4°,161° ± 3°, 164° ± 2°, 167° ± 2°,154 ± 3° and 151° ± 2° for the pristine, ion fluencies of 1E11, 3E11, 5E11, 7E11, 1E12 and 3E12 ions cm, respectively. The change in local surface chemistry via formation of surface oxygen related defects due to electronic excitations induced by ion irradiation determine the water dewetting properties. It is found that surface oxygen related defects could be tuned by varying the fluence of the SHIs. Durability tests show that the SHI induced surface oxygen-deficient ZnO NRs have the stable superhydrophobic behavior for more than a year.
机译:通过改变化学性质和粗糙度来调整表面性质对于自清洁应用可能是令人感兴趣的。我们展示了通过改变局部化学状态并且不通过快速重离子(SHI)照射改变表面粗糙度的方法,将疏水性ZnO纳米棒(NR)阵列转变为超疏水性。使用150 MeV Ag离子以5E10到3E12离子/ cm的不同通量辐照对准的ZnO NR阵列。 ZnO NRs样品观察到的静态水接触角为103°±3°,152°±4°,161°±3°,164°±2°,167°±2°,154±3°和151°±2对于原始离子,离子通量分别为1E11、3E11、5E11、7E11、1E12和3E12离子厘米。由于离子辐照引起的电子激发,通过形成表面氧相关缺陷而引起的局部表面化学变化决定了水的去湿性能。发现可以通过改变SHI的能量密度来调整与表面氧有关的缺陷。耐久性测试表明,SHI诱导的表面缺氧ZnO NR具有超过一年的稳定超疏水行为。

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