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Optical Modification and Metal Complexation of Ultrathin Spin-Coated Polymer Films

机译:超薄纺丝聚合物膜的光学改性和金属络合

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We report the successful metal salt complexation of ultrathin terpolymer films spin-coated onto glass and silicon substrates and the subsequent reduction of the salt to metal clusters. The photolabile polymer consists of a diazosulfonate side chain polymer which may be decomposed under UV irradiation. Initial, complexed and reduced stages are characterized using optical transmission spectroscopy and X-ray photoelectron spectroscopy, while the film surface roughness, morphology and thickness are determined from atomic force microscopy and ellipsometry. On the one hand, our experiments show that non-irradiated diazosulfonate side groups complex with silver acetate provided from solution, and that silver ions chemically reduce when exposed to a sodium borohydride solution. On the other hand, the complete destruction of the photolabile diazosulfonate unit with UV irradiation was proven. Our experimental investigations are the first successful effort for selective metallization of deposited ultrathin diazosulfonate polymer films. Furthermore, we were able to show that the films can be optically structured by writing micrometer-sized patterns with a focused UV laser beam.
机译:我们报告了超薄涂覆到玻璃和硅基材上的超薄三元共聚物膜的成功金属盐络合,并随后将盐还原到金属簇。光塑料聚合物由二沸磺酸盐侧链聚合物组成,其可以在UV照射下分解。使用光学传输光谱和X射线光电子能谱表征初始,复合和降低的阶段,而膜表面粗糙度,形态和厚度取自原子力显微镜和椭圆形状。一方面,我们的实验表明,非照射的二沸磺酸盐侧基与由溶液提供的银醋酸酯复合物,并且当暴露于硼氢化钠溶液时,银离子在化学上减少。另一方面,证明了具有UV辐射的光子二沸磺酸盐单元的完全破坏。我们的实验研究是第一种成功努力选择性金属化沉积的超苄磺酸酯聚合物膜的选择性。此外,我们能够表明薄膜可以通过用聚焦的UV激光束写入微米大小的图案来光学地构造。

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