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首页> 外文期刊>Molecular crystals and liquid crystals >Direct Micropatterning of Initiator Layers for Surface-initiated ATRP: Spatially-regulated Growth of Polymer Brush and Subsequent Copper Electroless Plating
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Direct Micropatterning of Initiator Layers for Surface-initiated ATRP: Spatially-regulated Growth of Polymer Brush and Subsequent Copper Electroless Plating

机译:用于表面引发的ATRP的引发层的直接微图示:聚合物刷的空间调节生长和随后的铜化学镀层

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Direct patterning of initiator layers for surface-initiated atom transfer radical polymerization was successfully demonstrated on bare polyimide substrates based on an inkjet printing using a simple sol-gel solution of (p-chloromethyl)phenyltrimethoxysilane and tetraethoxysilane. Using this approach, line-shaped initiator layers with a hundred of micrometer-scale width could be successfully patterned without specific pre-treatments of polyimide film surfaces. We also confirmed that they could serve as ideal templates for spatially-defined formation of nitrogen-containing polymer brushes and subsequent electroless Cu plating on non-conducting polyimide films with a reasonable growth rate and adhesion strength.
机译:基于使用(p-氯甲基)苯基三甲氧基硅烷和四乙氧基硅烷的简单溶胶溶液,在裸聚酰亚胺基质上成功在裸酰亚胺基质上证明了表面引发的原子转移自由基聚合的直接图案化。 使用这种方法,可以在没有特定的聚酰亚胺薄膜表面的特定预处理的情况下成功地图案化具有百千米尺度宽度的线状引发层。 我们还证实,它们可以作为用于空间定义的含氮聚合物刷子形成的理想模板,以及随后的无电酰亚胺膜上具有合理的生长速率和粘合强度的无电铜电镀。

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