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纳米材料和纳米技术在印制线路板基材中的应用前景(10)——严密构筑下一代印制线路基材的设计体系 被引量:2
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作者 张家亮 《印制电路信息》 2003年第9期8-14,共7页
论述了纳米材料和纳米技术对印制线路板基材的力学性能、热性能、绿色化的影响。由于以上三个方面的共同作用,可以优化设计提高印制线路板基材的综合性能,为实现基材的轻、薄、小提供了强大的技术保证。纳米材料和纳米技术对印制线路板... 论述了纳米材料和纳米技术对印制线路板基材的力学性能、热性能、绿色化的影响。由于以上三个方面的共同作用,可以优化设计提高印制线路板基材的综合性能,为实现基材的轻、薄、小提供了强大的技术保证。纳米材料和纳米技术对印制线路板基材的冲击在技术上形成了一种阶梯跳跃,是基材进入纳米时代的标志,这是我国基材制造业赶上世界先进水平的一个极好的机会,务必引起基材业技术专家和企业家的高度重视,下一代印制线路基材的设计体系已经初现端倪。 展开更多
关键词 纳米材料 纳米技术 印制线路板 基础板材 力学性能 热性能 应用前景 绿色化
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Mechanistic study of substrate-based galvanic replacement reactions 被引量:2
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作者 Kyle D. Gilroy Aarthi Sundar Pouyan Farzinpour Robert A. Hughes Svetlana Neretina 《Nano Research》 SCIE EI CAS CSCD 2014年第3期365-379,共15页
The sacrificial templates used in galvanic replacement reactions dictate the properties of the hollow metal nanostructures formed. Here, we demonstrate that substrate-based Au-Ag nanoshells with radically altered prop... The sacrificial templates used in galvanic replacement reactions dictate the properties of the hollow metal nanostructures formed. Here, we demonstrate that substrate-based Au-Ag nanoshells with radically altered properties are obtained by merely coating silver templates with an ultrathin layer of gold prior to their insertion into the reaction vessel. The so-formed nanoshells exhibit much smoother surfaces, a higher degree of crystallinity and are far more robust. Dealloying the nanoshells results in the first demonstration of substrate-based nanocages. Such cages exhibit a well-defined pattern of geometric openings in directions corresponding to the {111}-facets of the starting template material. The ability to engineer the cage geometry through adjustments to the orientational relationship between the crystal structure of the starting template and that of underlying substrate is demonstrated. Together these discoveries provide the framework to advance our understanding of the mechanisms governing substrate- based galvanic replacement reactions. 展开更多
关键词 galvanic replacementreaction hollow metal nanoshells NANOCAGES HETEROEPITAXY stacking faults
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