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In situ hydrothermal synthesis of silver nanoparticle based on graphene and their application for electrically conductive adhesive

机译:基于石墨烯的水银原位水热合成及其在导电胶中的应用

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Electrically conductive adhesive based on epoxy and conductive materials, which have been considered as the new promising material for electronic packaging because of the advantages of low processing temperature, fine pitch interconnect and environmentally friendly. The silver nanoparticle based on graphene have been used in the electrically conductive adhesive as a result of the excellent electrical material. The number of effective conductive paths were improved after doping silver nanoparticle based on graphene into epoxy. So silver nanoparticle based on graphene was prepared in situ hydrothermal method via silver-ammonia solution and graphene oxide as initial solution without other supported reagents. Scanning Electron Microscopy, Transmission Electron Microscopy, X-ray diffraction and Raman spectroscopy were applied to analyze the morphologies and structures of silver nanoparticle based on graphene. Then electrically conductive adhesive was prepared by mixing silver nanoparticle based on graphene, silver flakes and epoxy together. The electrical properties of electrically conductive adhesive were tested by four-point probe method after cured at 150 °C for 2 h. The result shows that silver nanoparticles were dispersed on the surface of graphene layers uniformly and the average diameter of nanosilver particles is 80 nm. The electrical properties of electrically conductive adhesive was 7.0×10-4 Ω·cm when the nanosilver based on graphene reached 0.2 %, which compared with electrically conductive adhesive (1.1×10-3 Ω·cm) without nanosilver based on graphene was improved.
机译:基于环氧树脂和导电材料的导电胶,由于其加工温度低,互连间距小且环保等优点,被认为是电子包装的新材料。由于优异的电学材料,基于石墨烯的银纳米颗粒已用于导电粘合剂中。将基于石墨烯的银纳米颗粒掺杂到环氧树脂中后,有效导电路径的数量得到了改善。因此,以银氨溶液和氧化石墨烯为初始溶液,无需其他载体试剂,就地水热法制备了基于石墨烯的银纳米粒子。应用扫描电子显微镜,透射电子显微镜,X射线衍射和拉曼光谱分析了基于石墨烯的银纳米粒子的形貌和结构。然后通过将基于石墨烯的银纳米颗粒,银薄片和环氧树脂混合在一起来制备导电粘合剂。在150°C固化2 h后,采用四点探针法测试导电胶的电性能。结果显示银纳米颗粒均匀地分散在石墨烯层的表面上,纳米银颗粒的平均直径为80nm。当基于石墨烯的纳米银达到0.2%时,导电粘合剂的电性能为7.0×10-4Ω·cm,与不基于石墨烯的纳米银的导电粘合剂(1.1×10-3Ω·cm)相比,其性能得到改善。

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