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Metal ions/ion clusters transport in glassy polymer films: construction of multi-layered polymer and metal composite films

机译:金属离子/离子团簇在玻璃态聚合物膜中的传输:多层聚合物和金属复合膜的构建

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The addition of a metal complex and an additive to a polymer supported on a reflective surface, which was then exposed to monochromatic ultraviolet (UV) light, resulted in well-ordered metal nanoparticles. Their row spacing is similar to the distance between the constructive interference regions. This could occur even in glassy polymers. Transmission electron microscopy, absorption spectroscopy and dynamic secondary ion mass spectrometry in conjunction with molecular dynamics simulation all revealed how and why the metal ions and/or ion clusters were transported in the glassy polymer films. Furthermore, the diffusion coefficient of the metal ions and/or ion clusters in the film, probably in the shape of ion clusters, was discussed. Our results showed novel criteria to design and construct multi-layered polymer and metal composite films using a simple, inexpensive method.
机译:向负载在反射表面上的聚合物中添加金属络合物和添加剂,然后将其暴露于单色紫外(UV)光下,可以得到排列整齐的金属纳米颗粒。它们的行间距类似于相长干涉区域之间的距离。即使在玻璃状聚合物中也可能发生这种情况。透射电子显微镜,吸收光谱和动态二次离子质谱结合分子动力学模拟都揭示了金属离子和/或离子簇如何以及为什么在玻璃状聚合物薄膜中传输。此外,还讨论了膜中金属离子和/或离子簇的扩散系数,可能呈离子簇的形状。我们的结果显示了使用简单,廉价的方法设计和构造多层聚合物和金属复合膜的新标准。

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