Sun Z, Zhang L X, Qi J L, Zhang Z H, Hao T D, Feng J C
State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin, 150001, China.
Sci Rep. 2017 Mar 22;7(1):224. doi: 10.1038/s41598-017-00295-5.
With the aim of expanding their applications, particularly when joining metals, a simple but effective method is reported whereby the surface chemical reactivity of SiO/SiO (SiO/SiO stands for silica fibre reinforced silica based composite materials and f is short for fibre) composites with vertically oriented few-layer graphene (VFG, 3-10 atomic layers of graphene vertically oriented to the substrate) can be tailored. VFG was uniformly grown on the surface of a SiO/SiO composite by using plasma enhanced chemical vapour deposition (PECVD). The wetting experiments were conducted by placing small pieces of AgCuTi alloy foil on SiO/SiO composites with and without VFG decoration. It was demonstrated that the contact angle dropped from 120° (without VFG decoration) to 50° (with VFG decoration) when the holding time was 10 min. The interfacial reaction layer in SiO/SiO composites with VFG decoration became continuous without any unfilled gaps compared with the composites without VFG decoration. High-resolution transmission electron microscopy (HRTEM) was employed to investigate the interaction between VFG and Ti from the AgCuTi alloy. The results showed that VFG possessed high chemical reactivity and could easily react with Ti even at room temperature. Finally, a mechanism of how VFG promoted the wetting of the SiO/SiO composite by the AgCuTi alloy is proposed and thoroughly discussed.
为了扩大其应用范围,特别是在连接金属时,本文报道了一种简单而有效的方法,通过该方法可以调整SiO/SiO(SiO/SiO代表二氧化硅纤维增强二氧化硅基复合材料,f代表纤维)复合材料与垂直取向的少层石墨烯(VFG,3 - 10个原子层的石墨烯垂直于基底取向)的表面化学反应性。通过等离子体增强化学气相沉积(PECVD)在SiO/SiO复合材料表面均匀生长VFG。通过将小块AgCuTi合金箔放置在有和没有VFG修饰的SiO/SiO复合材料上进行润湿性实验。结果表明,当保持时间为10分钟时,接触角从120°(无VFG修饰)降至50°(有VFG修饰)。与没有VFG修饰的复合材料相比,有VFG修饰的SiO/SiO复合材料中的界面反应层变得连续,没有任何未填充的间隙。采用高分辨率透射电子显微镜(HRTEM)研究VFG与AgCuTi合金中的Ti之间的相互作用。结果表明,VFG具有高化学反应性,即使在室温下也能很容易地与Ti反应。最后,提出并深入讨论了VFG促进AgCuTi合金对SiO/SiO复合材料润湿性的机理。