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Changes in the mechanical, structural and electrical properties of glassy carbon due to strontium and silver co-implantation and annealing

机译:由于锶和银共注入和退火导致玻璃碳的机械,结构和电性能的变化

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The effect of Sr and Ag co-implantation and recovery annealing on the structural, mechanical and electrical properties of glassy carbon is reported. Glassy carbon was co-implanted with 200 keV Sr and Ag ions to a fluence of 1 x 10(16) ions/cm(2) at room temperature. Combination of Raman spectroscopy and high resolution transmission electron microscopy (HRTEM) showed that the co-implantation of Sr and Ag resulted in amorphisation of the glassy carbon substrate. Raman spectra and HRTEM micrographs obtained after annealing indicated recovery of the glassy carbon structure, however, the recovered structure appears to be graphite-like. Instrumented indentation experiments on the ion-irradiated glassy carbon substrates revealed the formation of a surface layer with considerably enhanced mechanical performance. When annealing the ion implanted samples, these effects were only partially reversible. The effect of the irradiation-induced amorphisation and graphitisation of glassy carbon on its conductivity was also studied. The sample became less conductive after Sr and Ag co-implantation, whereby annealing resulted in an increase in conductivity.
机译:据报道了Sr和Ag共注入和恢复退火对玻璃碳的结构,机械和电性能的影响。将玻璃状碳与200keV Sr和Ag离子共注入,在室温下给1×10(16)离子/ cm(2)的流量。拉曼光谱和高分辨率透射电子显微镜(HRTEM)的组合表明,Sr和Ag的共注入导致玻碳碳基材的无晶体。在退火后获得的拉曼光谱和HRTEM显微照片表明玻璃结构的回收率,然而,回收的结构似乎是石墨状的。离子照射玻璃碳基材上的仪表压痕实验揭示了表面层的形成,具有显着提高的机械性能。在退火的植入样品时,这些效果仅部分可逆。还研究了辐射诱导的辐射诱导的无晶体和石墨膜性对其电导率的影响。在SR和AG共注入之后,样品变得较低,由此导致导电率的增加导致导致的退火。

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