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Photo-degradation of PADC by UV radiation at various wavelengths

机译:不同波长的紫外线辐射对PADC的光降解

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The effects of ultraviolet (UV) photons at different wavelengths (namely UVA, UVA + B and UVC) on PADC (polyallyl diglycol carbonate) were investigated in this study. The chemical modifications were studied by Fourier Transform Infrared (FTIR) spectrometry and the corresponding nano-mechanical properties were also determined. The scission process could be revealed by the decreasing net absorbance at particular wavelengths in the infrared (IR) spectra. On the other hand, the cross-linking was indicated by the increased hardness and reduced modulus determined with a nanoindenter. UVA caused no chemical modifications as most of the UV photons in this range were not absorbed by PADC. Both UVA + B and UVC irradiation caused scission of the chemical bonds, which was also manifested by the faster chemical etching rates. The bulk etch rate increased from 1.37 to 5.73 mu m/h for 60 h of UVA + B exposure for 3 h of chemical etching, and increased to 5.13 mu m/h for 60 h of UVC exposure. For 3 h of etching, the bulk etch rate remained unchanged for UVC exposures longer than 20 h. The saturation of the bulk etch rate was due to formation of cross-linked structures on the surface of the PADC samples. It was also observed that a UVC exposure caused a comparatively higher bulk etch rate at the beginning of etching. However, the bulk etch rate decreased with the depth of the PADC sample due to the lower rate of oxygen diffusion into deeper regions. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在本研究中,研究了不同波长的紫外线(UVA),UVA + B和UVC对PADC(聚烯丙基碳酸二烯丙酯)的影响。通过傅立叶变换红外(FTIR)光谱研究了化学修饰,并确定了相应的纳米机械性能。分裂过程可以通过红外(IR)光谱中特定波长的净吸光度降低来揭示。另一方面,通过纳米压头确定的增加的硬度和降低的模量表明了交联。 UVA不会引起化学修饰,因为在此范围内的大多数UV光子都不会被PADC吸收。 UVA + B和UVC照射均导致化学键断裂,这也由较快的化学蚀刻速率所证实。对于3小时的化学蚀刻,UVA + B暴露60小时,整体蚀刻速率从1.37微米/小时增加到5.73微米/小时,对于60小时的UVC暴露,整体蚀刻速率增加到5.13微米/小时。对于3小时的蚀刻,UVC暴露时间超过20小时的整体蚀刻速率保持不变。整体蚀刻速率的饱和是由于在PADC样品的表面上形成了交联结构。还观察到,在蚀刻开始时,UVC暴露引起相对较高的整体蚀刻速率。但是,由于较低的氧气扩散到较深区域的速率,整体蚀刻速率随PADC样品的深度而降低。 (c)2006 Elsevier Ltd.保留所有权利。

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