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Swelling of cross-linked polystyrene beads in toluene

机译:交联聚苯乙烯珠在甲苯中的溶胀

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Ultraviolet light irradiation of PS microbeads can be used for controlling the solvent uptake and release upon exposure to its vapor. The irradiation leads to additional fracture and crosslinking of PS chains thus reducing the amount of solvent uptake significantly. Con-focal fluorescence microscopy showed that this effect is pronounced in a shell of the PS microbeads having a thickness in the range of 1-2 μm. In addition, this shell shows considerable fluorescence when excited between 300 nm and 500 nm that is attributed to lower molecular weight fragments of PS. Fluorescence correlation spectroscopy studies of small tracers diffusion in a microbead core have revealed that the swelling of the core is not altered by the UV exposure, and the UV crosslinking effects are limited to the shell only. Chemically and UV cross-linked PS beads keep their shapes even after numerous swelling cycles in saturated toluene vapors.
机译:PS微珠的紫外线照射可用于控制溶剂的吸收和暴露于其蒸气中的释放。辐照会导致PS链断裂和交联,从而显着降低溶剂吸收量。共聚焦荧光显微镜显示,在厚度为1-2μm的PS微珠壳中,这种效果尤为明显。另外,当在300 nm至500 nm之间激发时,该壳显示出相当大的荧光,这归因于PS的较低分子量片段。荧光相关光谱法对微珠核中小示踪剂扩散的研究表明,核的膨胀不会因暴露于紫外线而改变,并且紫外线交联作用仅限于壳。化学和UV交联的PS珠即使在饱和的甲苯蒸气中经过无数次溶胀循环后仍保持其形状。

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