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Effects of carbon concentration on high-hardness plasma-polymer-fluorocarbon film deposited by mid-range frequency sputtering

机译:碳浓度对中频溅射沉积高硬度等离子聚合物氟碳薄膜的影响

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摘要

We propose a method for fabricating high-hardness plasma-polymer-fluorocarbon (PPFC) thin films with controllable optical and surface properties via manipulation of the target composition design and sputtering power density. The carbon/polytetrafluoroethylene (PTFE) composite polymeric material targets with the low electrical resistance were prepared by press-molding using a mechanically mixed powder of PTFE, carbon nanotubes, and graphite. The composite targets showed electrical sheet resistances of 0.1–100 Ω/sq. PPFC thin films were deposited by mid-range frequency (MF) sputtering at power densities within 0.62~4.92 W/cm2. The maximum surface hardness of the PPFC thin film was 4.75 GPa, which was 21.6 times higher than that of fluorocarbon thin film sputtered from PTFE under the same conditions. With the increase of the carbon concentration in the target, the carbon cross-linking density of the PPFC thin film increased but the fluorine concentration decreased. The concentration of fluorine in the PPFC thin films grew with increasing sputtering power density. The MF sputtered carbon-rich PPFC thin films are controllable with physical properties of optical transmittance, surface hardness and surface water repellency which could be applied as protective layers for transparent flexible devices.
机译:我们提出了一种通过控制目标成分设计和溅射功率密度来制造具有可控光学和表面特性的高硬度等离子聚合物碳氟化合物(PPFC)薄膜的方法。具有低电阻的碳/聚四氟乙烯(PTFE)复合聚合物材料靶是通过使用PTFE,碳纳米管和石墨的机械混合粉末压模制备的。复合靶材的薄层电阻为0.1–100Ω/ sq。通过中频溅射在功率密度在0.62〜4.92 W / cm 2 范围内沉积PPFC薄膜。 PPFC薄膜的最大表面硬度为4.75 GPa,是相同条件下由PTFE溅射的碳氟化合物薄膜的21.6倍。随着靶中碳浓度的增加,PPFC薄膜的碳交联密度增加,但氟浓度降低。 PPFC薄膜中的氟浓度随着溅射功率密度的增加而增加。 MF溅射的富碳PPFC薄膜具有可控的光学透射率,表面硬度和表面防水性等物理特性,可以用作透明柔性器件的保护层。

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