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首页> 外文期刊>Journal of Applied Polymer Science >Silicone elastomers with controlled surface composition using argon or hydrogen plasma treatment
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Silicone elastomers with controlled surface composition using argon or hydrogen plasma treatment

机译:使用氩气或氢等离子体处理的具有可控表面组成的有机硅弹性体

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Plasma treatment of poly(dimethyl siloxane) (PDMS) leads to changes in the surface composition that can be followed by X-ray photoelectron spectroscopy (XPS). Prolonged plasma treatment in argon or hydrogen leads to an increase in oxygen, a decrease in carbon, and only minor changes in the silicon content. The extent of the change in elemental composition is dependent on the plasma conditions (e.g., the power and pressure during the treatment). We have determined how these parameters influence the surface composition of PDMS exposed to argon and hydrogen microwave plasma as a function of treatment time. A model has been developed describing the extent of change in surface composition under different plasma conditions. The power had a large impact on the rate of change in elemental surface composition, whereas the pressure had only a minor influence. We show that the rate of change in elemental composition can be described by one factor common for all treatments and one factor specific for each plasma condition of power, pressure, and gas. Using this model we can determine the plasma parameters and treatment time to obtain any desired extent of surface modification. (C) 2003 Wiley Periodicals, Inc. [References: 10]
机译:聚二甲基硅氧烷(PDMS)的等离子体处理会导致表面组成发生变化,然后可以通过X射线光电子能谱(XPS)进行跟踪。长时间在氩气或氢气中进行等离子体处理会导致氧气增加,碳减少以及硅含量仅有微小变化。元素组成变化的程度取决于血浆条件(例如治疗期间的功率和压力)。我们已经确定了这些参数如何影响作为处理时间的函数的暴露于氩气和氢气微波等离子体中的PDMS的表面成分。已经开发出描述不同等离子体条件下表面组成变化程度的模型。功率对元素表面组成的变化速率影响很大,而压力仅影响很小。我们表明,元素成分的变化速率可以用所有处理中共有的一个因素和功率,压力和气体的每种等离子体条件所特有的一个因素来描述。使用该模型,我们可以确定血浆参数和处理时间,以获得任何所需程度的表面改性。 (C)2003 Wiley Periodicals,Inc. [参考:10]

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