Collaborative Innovation Center for Nanotech FIBER (nanoFIC), Department of Functional Polymer Science, Faculty of Textile Science and Technology, Shinshu University, Ueda 386-8567, Japan.
ACS Appl Mater Interfaces. 2010 Dec;2(12):3714-7. doi: 10.1021/am100853t. Epub 2010 Nov 11.
We demonstrate a simple route to depositing nickel layer patterns using photocross-linked polymer thin films containing palladium catalysts, which can be used as adhesive interlayers for fabrication of nickel patterns on glass and plastic substrates. Electroless nickel patterns can be obtained in three steps: (i) the pattern formation of partially quaterized poly(vinyl pyridine) by UV irradiation, (ii) the formation of macromolecular metal complex with palladium, and (iii) the nickel metallization using electroless plating bath. Metallization is site-selective and allows for a high resolution. And the resulting nickel layered structure shows good adhesion with glass and plastic substrates. The direct patterning of metallic layers onto insulating substrates indicates a great potential for fabricating micro/nano devices.
我们展示了一种使用含有钯催化剂的光交联聚合物薄膜沉积镍层图案的简单方法,该方法可用作在玻璃和塑料衬底上制造镍图案的粘合中间层。通过三步可以得到无电镀镍图案:(i)通过紫外光照射部分季铵化聚(吡啶),(ii)形成与钯的高分子金属配合物,(iii)使用无电镀镀液进行镍金属化。金属化是选择性的,可以实现高分辨率。并且得到的镍层状结构与玻璃和塑料衬底具有良好的附着力。将金属层直接图案化到绝缘衬底上表明在制造微/纳米器件方面具有巨大潜力。