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暴露于湿空气中的酚醛树脂表面重构:和频产生振动光谱研究。

Phenolic resin surface restructuring upon exposure to humid air: a sum frequency generation vibrational spectroscopic study.

机构信息

Department of Polymer Science, Nanjing University, Nanjing, People's Republic of China, 210093.

出版信息

J Phys Chem B. 2009 Oct 1;113(39):12944-51. doi: 10.1021/jp9058092.

Abstract

Epoxy and phenolic resins are extensively used for modern microelectronics, for example, as packaging materials. Humidity may greatly alter or degrade their function and application, leading to failure of the device. A nonlinear optical laser technique, sum frequency generation (SFG) vibrational spectroscopy, was used to investigate the molecular surface structures of the epoxy and phenolic resins after exposure to humid air. It was found that the adsorbed water molecules at the phenolic resin surface can induce substantial surface restructuring. The surface phenyl groups were reoriented closer to a perpendicular position to the surface after exposure to humid air from a more parallel position in air. Epoxide group surface restructuring was not observed.

摘要

环氧树脂和酚醛树脂被广泛应用于现代微电子学领域,例如用作封装材料。湿度可能会极大地改变或降低它们的功能和应用,从而导致器件失效。一种非线性光学激光技术,即和频产生(SFG)振动光谱技术,被用于研究暴露于湿空气后的环氧树脂和酚醛树脂的分子表面结构。研究发现,酚醛树脂表面吸附的水分子会导致表面结构发生显著重构。与在空气中时相比,暴露于湿空气后,表面上的苯基基团会重新定向到更接近垂直于表面的位置,而不是平行于表面的位置。未观察到环氧基团的表面重构。

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