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Comment on “Water-processed carbon nanotube/graphene hybrids with enhanced field emission properties” [AIP Advances 5, 097130 (2015)]

机译:关于“具有增强的场发射特性的水处理碳纳米管/石墨烯杂化物”的评论[AIP Advances 5,097130(2015)]

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摘要

In their research paper, M. Song et al. [AIP ADVANCES 5, 097130 (2015)] have claimed to have achieved enhanced field emission (FE) characteristics of carbon nanotubes (CNT)/graphene hybrids experimentally, exhibiting improved FE parameters e.g. turn-on electric field of 0.79 V/μm, threshold electric field of 1.05 V/μm, maximum emission current density (Jmax) of 5.76 mA/cm2, and field enhancement factor (β) of ~1.3 × 104. The authors have emphasized on the surprisingly high value of β to be the basis of their claim of achieving superior FE performance which is further attributed to the optimized mass ratio CNT/ graphene, which is 5:1 in the present case. However, the claim based upon high value of β is misleading because it does not corroborate with the obtained Jmax parameter. Also, the obtained value of J is quite low in the mentioned study as compared to the reported values. For an instance, Sameera et al. [J. Appl. Phys. 111, 044307 (2012) & Appl. Phys. Lett. 102, 033102 (2013)] have reported FE properties of CNT composites and reduced graphene oxide with Jmax and β values of the order of ~102 mA/cm2 and 6 × 103, respectively. Therefore, the conclusions drawn by M. Song et al. [AIP ADVANCES 5, 097130 (2015)] in their paper do no hold.
机译:在他们的研究论文中,M。Song等人。 [AIP ADVENCES 5,097130(2015)]声称通过实验获得了碳纳米管(CNT)/石墨烯杂化物的增强的场发射(FE)特性,并显示出改善的FE参数,例如:导通电场为0.79 V /μm,阈值电场为1.05 V /μm,最大发射电流密度(J max )为5.76 mA / cm 2 ,并且场增强因子(β)为〜1.3×10 4 。作者强调了令人惊讶的高β值是他们声称获得优异的FE性能的基础,这进一步归因于CNT /石墨烯的最佳质量比(当前为5:1)。但是,基于β的高值的声明具有误导性,因为它与所获得的J max 参数不符。而且,与报道的值相比,在上述研究中获得的J值非常低。例如,Sameera等。 [J.应用物理111,044307(2012)&Appl。物理来吧102,033102(2013)]报道了CNT复合材料和J max 和β值约为10 2 mA / cm 2 和6×10 3 。因此,M。Song等人得出的结论。 [AIP ADVANCES 5,097130(2015)]在他们的论文中没有成立。

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