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聚苯乙烯/梳型聚合物界面分子取向的红外-可见和频产生光谱研究。

Infrared-visible sum frequency generation spectroscopic study of molecular orientation at polystyrene/comb-polymer interfaces.

作者信息

Harp Gary P, Rangwalla Hasnain, Yeganeh Mohsen S, Dhinojwala Ali

机构信息

Department of Polymer Science, The University of Akron, Akron, Ohio 44325, USA.

出版信息

J Am Chem Soc. 2003 Sep 17;125(37):11283-90. doi: 10.1021/ja035513v.

Abstract

Surface-sensitive infrared-visible sum frequency generation spectroscopy (SFG) in total internal reflection geometry has been used to study the structure of poly(vinyl n-octadecyl carbamate-co-vinyl acetate) (PVNODC) or poly(octadecyl acrylate) (PA-18) in contact with a deuterated or hydrogenated polystyrene (dPS or hPS) layer. SFG spectra from the PVNODC (or PA-18)/hPS interface show methyl and methylene peaks corresponding to PVNODC (or PA-18) and phenyl peaks corresponding to the PS. Analysis suggests that the methyl groups are tilted at angles less than 30 degrees with respect to the surface normal. The presence of a strong methylene peak suggests the PVNODC alkyl side chains contain more gauche defects at the PS/PVNODC interface in comparison to PVNODC (or PA-18)/air interfaces. On heating, the SFG intensity from the PS/PA-18 interface drops sharply near the bulk melting temperature (T(m)) of PA-18. Interestingly, a similar drop in SFG signal is also observed for the PS phenyl groups. This demonstrates the ability of the phenyl group at the PS/PA-18 interface to rearrange itself upon the solid-to-liquid transition of the PA-18 alkyl side chain, at a temperature well below the bulk PS glass transition temperature. For PS/PVNODC interfaces, the drop in SFG intensity is gradual and in agreement with the three broad transitions of PVNODC observed in the bulk.

摘要

采用全内反射几何结构的表面敏感红外-可见和频产生光谱(SFG)来研究聚(正十八烷基氨基甲酸乙烯酯-醋酸乙烯酯)(PVNODC)或聚丙烯酸十八酯(PA-18)与氘代或氢化聚苯乙烯(dPS或hPS)层接触时的结构。PVNODC(或PA-18)/hPS界面的SFG光谱显示出对应于PVNODC(或PA-18)的甲基和亚甲基峰以及对应于PS的苯基峰。分析表明,甲基相对于表面法线的倾斜角度小于30度。强亚甲基峰的存在表明,与PVNODC(或PA-18)/空气界面相比,PVNODC烷基侧链在PS/PVNODC界面处含有更多的gauche缺陷。加热时,PS/PA-18界面的SFG强度在PA-18的本体熔化温度(T(m))附近急剧下降。有趣的是,PS苯基的SFG信号也观察到类似的下降。这表明在远低于本体PS玻璃化转变温度的温度下,PA-18烷基侧链从固态转变为液态时,PS/PA-18界面处的苯基能够自行重排。对于PS/PVNODC界面,SFG强度的下降是逐渐的,并且与本体中观察到的PVNODC的三个宽转变一致。

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