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Formation of Sn-Multiwalled Carbon Nanotube Composite Layer for the Application of Thermal Interface Materials

机译:用于热界面材料的Sn-多壁碳纳米管复合层的形成

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Fabrication of Sn-MWCNT composite layer through reflow of Sn-decorated MWCNT powder was conducted in this study. Commercially available MWCNTs were oxidized by using K_2Cr_2O_7 / H_2SO_4 solution for the surface modification. The oxidized MWCNTs were dispersed in SnCl_2 / HCl solution and subsequently a reducing agent NaBH_4 was introduced to form crystalline Sn. During the Sn reduction process, 1,10-phenanthroline capping agent was introduced to control the particle shape and size. It was found that SnO_2 nanoparticles on the surface of MWCNTs and crystalline Sn particles were obtained simultaneously through the chemical reduction reaction. When 1,10-phenanthroline was used, Sn particles had spherical shape and uniform size compared to the one without 1,10-phenanthroline. Afterwards, the Sn-MWCNT powders were mixed with a flux to form a paste for a wetting test on a Cu substrate. After a reflow step of the paste, Sn-MWCNT composite layer could be formed showing no separation between MWCNTs and Sn by bonding of molten Sn to SnO_2 nanoparticles on the surface of MWCNTs.
机译:本研究通过回流锡装饰的碳纳米管粉末制备锡-碳纳米管复合层。通过使用K_2Cr_2O_7 / H_2SO_4溶液氧化市售的MWCNTs进行表面改性。将氧化的MWCNT分散在SnCl_2 / HCl溶液中,随后引入还原剂NaBH_4以形成结晶Sn。在Sn还原过程中,引入了1,10-菲咯啉封端剂以控制颗粒的形状和大小。发现通过化学还原反应同时获得了多壁碳纳米管表面的SnO_2纳米颗粒和结晶的Sn颗粒。当使用1,10-菲咯啉时,与没有1,10-菲咯啉的Sn颗粒相比,Sn颗粒具有球形和均匀的尺寸。之后,将Sn-MWCNT粉末与助熔剂混合以形成用于在Cu基板上进行润湿测试的糊剂。在浆料的回流步骤之后,可以通过将熔融的Sn键合到MWCNTs表面上的SnO_2纳米颗粒上而形成Sn-MWCNT复合层,显示出在MWCNT与Sn之间没有分离。

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