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首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Solid-state bonding of silicone elastomer to glass by vacuum oxygen plasma, atmospheric plasma, and vacuum ultraviolet light treatment
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Solid-state bonding of silicone elastomer to glass by vacuum oxygen plasma, atmospheric plasma, and vacuum ultraviolet light treatment

机译:通过真空氧等离子体,大气等离子体和真空紫外光处理将有机硅弹性体与玻璃固相结合

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摘要

We experimentally demonstrated that treating a silicone elastomer by a vacuum oxygen plasma, an atmospheric pressure plasma, and vacuum ultraviolet (VUV) radiation resulted in different surface modifications that gave different contact angles, contact angle aging, and bond strengths. The aim of this study was to assess whether high-throughput surface modification techniques of atmospheric pressure plasma and VUV radiation have the potential to replace conventional oxygen plasma modification. Four silicone elastomers with different hardnesses were used as specimens. The surfaces of all four silicone elastomers were successfully modified from hydrophobic to hydrophilic and they were also bonded to glass surfaces by the three surface modification techniques, although considerable variations were observed in the surface hydrophobicity and the bonding properties. The results clearly reveal that atmospheric pressure plasma and VUV treatment have the potential to replace conventional oxygen plasma treatment. In particular, VUV irradiation produced the most hydrophilic surface that was preserved for a long time. Thus, VUV irradiation is the most promising technique for realizing high-throughput surface modification and bonding of silicone elastomers.
机译:我们通过实验证明,通过真空氧等离子体,大气压等离子体和真空紫外线(VUV)辐射处理有机硅弹性体会导致不同的表面改性,从而产生不同的接触角,接触角老化和粘结强度。这项研究的目的是评估大气压等离子体和VUV辐射的高通量表面改性技术是否有潜力取代常规的氧等离子体改性。使用四种具有不同硬度的有机硅弹性体作为样品。所有四种有机硅弹性体的表面均成功地从疏水性改性为亲水性,并且还通过三种表面改性技术将其粘结至玻璃表面,尽管在表面疏水性和粘结性能方面观察到了相当大的变化。结果清楚地表明,大气压等离子体和VUV处理具有取代常规氧等离子体处理的潜力。特别是,VUV照射产生的亲水性最强的表面可以长时间保存。因此,VUV照射是实现有机硅弹性体的高通量表面改性和粘合的最有前途的技术。

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