钯辅助石墨烯纳米级生长的原位TEM可视化

M. S. Rosmi, Y. Yaakob, Subash Sharma, M. Yusop, G. Kalita, M. Tanemura
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引用次数: 1

摘要

钯是探索石墨烯生长的独特衬底。Pd是一种众所周知的“碳海绵”,在自然界中具有生长具有半导体性质的石墨烯的潜力。在这里,我们揭示了一个固相反应过程,以实现钯辅助石墨烯生长在纳米尺度上的原位透射电子显微镜(TEM)。在双探针系统中,利用外加电位观察到非晶碳纳米纤维(CNF)与Pd的显著结构转变。由于焦耳加热和较大的热梯度,Pd粒子在外加电位作用下由CNF中部向CNF末端再结晶团聚。因此,非晶碳开始结晶,形成sp2杂化碳,从Pd表面尖端形成石墨烯片。原位透射电镜观察到的石墨烯在纳米尺度上的形成对理解碳原子与钯的相互作用具有重要意义。
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In situ TEM visualization of Pd assisted graphene growth in nanoscale
Pd is a unique substrate to explore graphene growth. Pd is a well-known “carbon sponge” which have potential to grow graphene with semiconducting properties in nature. Here, we reveal a solid phase reaction process to achieve Pd assisted graphene growth in nanoscale by in-situ transmission electron microscope (TEM). Significant structural transformation of amorphous carbon nanofiber (CNF) incorporated with Pd is observed with an applied potential in a two probe system. The Pd particle recrystallize and agglomerate starting from the middle part of CNF toward the end part of CNF with applied potential due to joule heating and large thermal gradient. Consequently, the amorphous carbon start crystallizing and forming sp2 hybridized carbon to form graphene sheet from the tip of Pd surface. The observed graphene formation in nanoscale by the in-situ TEM process can be significant to understand carbon atoms and Pd interaction.
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