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EXPERIMENTAL EVIDENCE FOR THE DOMINANCE OF VUV PHOTONS IN REMOTE HYDROGEN PLASMA TREATMENTS

机译:远程氢等离子体处理中VUV光子优势的实验证据

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The flux of vacuum ultraviolet (VUV) and ultraviolet (UV) photons from a hydrogen plasma was detected by fluorescence measurements of sodium salicylate sheets with and without a MgF_2 window. In order to expose the samples to the same photon flux in all experiments, the power input to the microwave plasma source was adjusted. Polyethylene (PE), polypropylene (PP), and polystyrene (PS) were treated with VUV radiation or with a remote hydrogen plasma. The mass loss and the CH-absorption loss were recorded by in situ quartz crystal micro balance and by in situ IR reflection absorption spectroscopy, respectively. The VUV irradiation and plasma treatment caused similar effects in the case of PE, PP showed an increased polymer ablation in plasma treatments, and for PS a negligible loss in mass and CH absorption was detected in plasma and VUV treatments.
机译:通过荧光测量和没有MgF_2窗口的荧光测量来检测来自氢等离子体的真空紫外(VUV)和紫外(UV)光子的焊剂。为了在所有实验中将样品暴露于相同的光子通量,调节到微波等离子体源的功率。用VUV辐射或使用远程氢等离子体处理聚乙烯(PE),聚丙烯(PP)和聚苯乙烯(PS)。通过原位石英晶微观平衡和原位红外反射吸收光谱记录质量损失和CH吸收损失。 VUV辐照和等离子体处理在PE的情况下引起了类似的效果,PP在血浆处理中显示出增加的聚合物消融,对于PS在血浆和VUV处理中检测到可忽略的质量和CH吸收损失。

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