首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Polymer thin film photodegradation and photochemical crosslinking:FT-IR imaging,evanescent waveguide spectroscopy,and QCM investigations
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Polymer thin film photodegradation and photochemical crosslinking:FT-IR imaging,evanescent waveguide spectroscopy,and QCM investigations

机译:聚合物薄膜的光降解和光化学交联:FT-IR成像,e逝波谱和QCM研究

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摘要

Photodegradation and photocrosslinking of benzophenone blended polystyrene(PS)thin films were investigated primarily using Fourier transform infrared(FT-IR)imaging,evanescent waveguide spectroscopy(WS),and quartz crystal microbalance(QCM)methods.The main objective is to observe the changes(spectral and chemical)indicative of these competitive processes in an ultrathin polymer film.This also serves as a model study in the application of combined spectroscopic,optical,and acoustic methods towards understanding crosslinking and degradation phenomena within the same time frame of observation.To induce photocrosslinking,1,12-dodecanediylbis(oxy-4,1-phenylene)] [bis[phenylmethanone](2BP12),a small molecule with two benzophenone groups,was blended with PS in solution,spincast onto glass and silicon substrates,and irradiated with ultraviolet light.Photodegradation and benzophenone-mediated crosslinking were observed both directly via functional group spectroscopies and indirectly via their effects on thin film surface properties and morphologies.Atomic force microscopy(AFM)and QCM were used to elucidate local morphology change and mass-uptake kinetics in the presence of O_2 in air,respectively.All results correlated well with the two photoprocesses occurring simultaneously and competitively on these films with the refractive index,thickness,and mass change differing with the presence of 2BP12.Crosslinking was observed to cause an increase in thickness while photodegradation gave a decrease.Both processes resulted in an increase in the refractive index and mass.While various methods have separately identified these observations,this is the first instance that the in situ chemical,optical,and structural dimensionality of the photodegradation and photocrosslinking phenomena in a thin polymer film is correlated within the same time frame of observation.
机译:主要利用傅里叶变换红外(FT-IR)成像,waveguide逝波谱(WS)和石英晶体微天平(QCM)方法研究了二苯甲酮共混聚苯乙烯(PS)薄膜的光降解和光交联。主要目的是观察其变化。 (光谱和化学)表明这些竞争过程是在超薄聚合物薄膜中进行的。这也可以作为模型研究,用于结合光谱,光学和声学方法来理解同一观察时间内的交联和降解现象。诱导光交联,将1,12-十二烷二基双(氧基-4,1-亚苯基)] [双[苯基甲酮](2BP12),具有两个二苯甲酮基团的小分子,与溶液中的PS共混,旋涂在玻璃和硅基板上,并直接通过官能团光谱法观察到光降解和二苯甲酮介导的交联,并通过它们的效果间接观察到原子力显微镜(AFM)和QCM分别阐明了空气中O_2存在下的局部形态变化和质量吸收动力学,所有结果均与同时发生的两个光过程和在2BP12存在下,这些薄膜的折射率,厚度和质量变化具有竞争性。观察到交联会导致厚度增加,而光降解会降低厚度,这两个过程均导致折射率和质量增加。各种方法分别识别了这些观察结果,这是在同一观察时间内在聚合物薄膜中光降解和光交联现象的原位化学,光学和结构尺寸相关的首次实例。

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