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Infrared spectroscopic study of thermal annealing effects of hydrocarbon species on a Si surface exposed to methane plasma

机译:红外光谱研究碳氢化合物在暴露于甲烷等离子体的Si表面上的热退火效应

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We have investigated the thermal annealing effects of hydrocarbon species on the methane-plasma exposed silicon surface, investigated by in situ infrared absorption spectroscopy (IRAs) in multiple internal reflection (MIR) geometry. The proportion of types of hydrocarbon species is not remarkably changed in the hydrocarbon network that consists of sp-, sp(2)-and sp(3)-CHX species by annealing at moderate temperatures. On the other hands, the proportion is drastically changed in the network that is mainly composed of sp(3)-CHX species by annealing at moderate temperatures. It suggests that excess CH3 species in the film is not stable against thermal annealing and would be converted to sp(3)-CH1-2 species by annealing at moderate temperatures. And the data also show that sp(2)-CH species is more stable against the thermal annealing than sp(3)-hydrocarbon species. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们已经研究了碳氢化合物种类对甲烷-等离子体暴露的硅表面的热退火效应,通过原位红外吸收光谱(IRA)在多重内反射(MIR)几何形状中进行了研究。通过在适当温度下退火,在由sp-,sp(2)-和sp(3)-CHX组成的烃网络中,烃种类类型的比例没有明显变化。另一方面,通过在中等温度下退火,该比例在主要由sp(3)-CHX物种组成的网络中急剧变化。这表明膜中过量的CH3对热退火不稳定,在中等温度下退火会转化为sp(3)-CH1-2。并且数据还显示,sp(2)-CH物种比sp(3)-烃物种对热退火更稳定。 (c)2005 Elsevier B.V.保留所有权利。

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