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Large scale synthesis of ordered silver nanoparticles for superhydrophobic and anti-icing application

机译:超疏水和防冰应用的有序银纳米粒子的大规模合成

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An optimized reduction of silver ions in presence of ethylene glycol (EG) and polyvinylpyrrolidone (PVP) produced colloidal silver nanoparticles in the solution. This colloidal solution has been spin-coated on glass substrates, annealed, and finally coated with thin films of polytetrafluoroethylene (PTFE) by plasma sputtering. AFM studies show that the size of the as-deposited silver nanoparticles is ~60 nm and it increases with the duration of annealing. However, UV-Vis investigation reveals that particle size initially increases with the time of annealing then starts reducing. This contradictory observation is due to the oxidation of silver and the present investigation confirms that the larger particles seen on AFM images are actually silver oxides rather than silver per se. Silver nanoparticles annealed at different duration were coated with PTFE. The resulting samples showed a decrease in hydrophobicity with annealing time. This observation is explained by assuming that the spherical silver nanoparticles are partially embedded onto the smooth surface used as substrate.
机译:在乙二醇(例如)和聚乙烯基吡咯烷酮(PVP)存在下的银离子的优化还原在溶液中产生胶体银纳米颗粒。该胶体溶液在玻璃基板上旋涂,退火,最后通过等离子体溅射用聚四氟乙烯(PTFE)的薄膜涂覆。 AFM研究表明,沉积的银纳米颗粒的尺寸为约60nm,随着退火的持续时间增加。然而,UV-Vis研究表明,粒度最初随着退火的时间而增加,然后开始还原。这种矛盾的观察是由于银的氧化和本研究证实,AFM图像上观察到的较大颗粒实际上是氧化银本身。在不同持续时间内退火的银纳米粒子用PTFE涂覆。所得样品显示出退火时间的疏水性降低。通过假设球形银纳米颗粒部分地嵌入到用作衬底的光滑表面上,解释该观察。

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