Peng Qing, Dearden Albert K, Crean Jared, Han Liang, Liu Sheng, Wen Xiaodong, De Suvranu
Department of Mechanical, Aerospace and Nuclear Engineering, Rensselaer Polytechnic Institute, Troy, NY, USA.
Department of Physics, Applied Physics, and Astronomy, Rensselaer Polytechnic Institute, Troy, NY, USA.
Nanotechnol Sci Appl. 2014 Apr 10;7:1-29. doi: 10.2147/NSA.S40324. eCollection 2014.
Plenty of new two-dimensional materials including graphyne, graphdiyne, graphone, and graphane have been proposed and unveiled after the discovery of the "wonder material" graphene. Graphyne and graphdiyne are two-dimensional carbon allotropes of graphene with honeycomb structures. Graphone and graphane are hydrogenated derivatives of graphene. The advanced and unique properties of these new materials make them highly promising for applications in next generation nanoelectronics. Here, we briefly review their properties, including structural, mechanical, physical, and chemical properties, as well as their synthesis and applications in nanotechnology. Graphyne is better than graphene in directional electronic properties and charge carriers. With a band gap and magnetism, graphone and graphane show important applications in nanoelectronics and spintronics. Because these materials are close to graphene and will play important roles in carbon-based electronic devices, they deserve further, careful, and thorough studies for nanotechnology applications.
在发现“神奇材料”石墨烯之后,人们提出并揭示了许多新型二维材料,包括石墨炔、石墨二炔、石墨单炔和石墨烷。石墨炔和石墨二炔是具有蜂窝状结构的石墨烯二维碳同素异形体。石墨单炔和石墨烷是石墨烯的氢化衍生物。这些新材料先进且独特的性质使其在下一代纳米电子学应用中极具前景。在此,我们简要综述它们的性质,包括结构、力学、物理和化学性质,以及它们在纳米技术中的合成与应用。石墨炔在定向电子性质和电荷载流子方面优于石墨烯。具有带隙和磁性的石墨单炔和石墨烷在纳米电子学和自旋电子学中展现出重要应用。由于这些材料与石墨烯相近且将在碳基电子器件中发挥重要作用,它们值得针对纳米技术应用进行进一步、细致且深入的研究。