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通过基底表面改性控制埋入式聚合物/氧化铝界面处的湿度。

Control of moisture at buried polymer/alumina interfaces through substrate surface modification.

作者信息

Vogt Bryan D, Prabhu Vivek M, Soles Christopher L, Satija Sushil K, Lin Eric K, Wu Wen-li

机构信息

Polymers Division and Center for Neutron Research, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD 20899, USA.

出版信息

Langmuir. 2005 Mar 15;21(6):2460-4. doi: 10.1021/la0472549.

Abstract

Moisture absorption in poly(4-tert-butoxycarbonyloxystyrene) (PBOCSt) films supported on Al(2)O(3) sputter coated silicon wafers is measured using neutron and X-ray reflectivity. Accumulation of water at the interface during moisture exposure results in an apparent film-thickness-dependent swelling for ultrathin PBOCSt films. The swelling of a film on Al(2)O(3) is less than the swelling of a film of the same thickness on SiO(x) for films thinner than 20 nm. This is due to comparatively less moisture accumulation at the Al(2)O(3)/PBOCSt interface. A simple, zero adjustable parameter model consisting of a fixed water-rich layer at the interface and bulk swelling through the remainder of the film describes the thickness-dependent swelling quantitatively. The influence of four different Al(2)O(3) surface treatments on the moisture distribution within PBOCSt films was examined: bare Al(2)O(3), tert-butylphosphonic acid, phenylphosphonic acid, and n-octyltrichlorosilane. Both the phenyl and the octyl surface treatments reduce the accumulation of water at the polymer/substrate interface. The tert-butyl treatment does not reduce the interfacial water concentration, presumably due to insufficient surface coverage.

摘要

使用中子反射率和X射线反射率测量了溅射涂覆有Al₂O₃的硅晶片上支撑的聚(4-叔丁氧基羰基氧基苯乙烯)(PBOCSt)薄膜的吸湿情况。在吸湿过程中,界面处水的积累导致超薄PBOCSt薄膜出现明显的与膜厚度相关的膨胀。对于厚度小于20 nm的薄膜,Al₂O₃上薄膜的膨胀小于相同厚度SiOₓ上薄膜的膨胀。这是由于Al₂O₃/PBOCSt界面处的水分积累相对较少。一个简单的、零可调参数模型,由界面处固定的富水层和贯穿薄膜其余部分的体相膨胀组成,定量地描述了与厚度相关的膨胀。研究了四种不同的Al₂O₃表面处理对PBOCSt薄膜内水分分布的影响:裸露的Al₂O₃、叔丁基膦酸、苯基膦酸和正辛基三氯硅烷。苯基和辛基表面处理都减少了聚合物/基材界面处水的积累。叔丁基处理没有降低界面水浓度,可能是由于表面覆盖率不足。

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