Alamdari Parisa, Sharif Farhad, Mazinani Saeedeh, Sastre German, Garcia Hermenegildo
Department of Polymer Engineering and Color Technology, Amirkabir University of Technology, Tehran, Iran.
New Technologies Research Center (NTRC), Amirkabir University of Technology, Tehran, Iran.
Phys Chem Chem Phys. 2023 Apr 12;25(15):10759-10768. doi: 10.1039/d2cp05233d.
Graphene has emerged as an exciting material because of its widespread applications resulting from its unique properties. Nano-scale engineering of graphene's structure is one of the most active research areas aimed at introducing functionalities to improve the performance or endow the graphene lattice with novel properties. In this regard, conversion between the hexagon and non-hexagon rings becomes an exciting tool to tune the electronic structure of graphene due to the distinct electronic structure and functionalities induced in graphene by each type of ring. This Density Functional Theory (DFT) study is an in-depth look at the adsorption-induced conversion of pentagon-octagon-pentagon rings to hexagon rings, and systematically investigates the possibility of the conversion of pentagon-octagon-pentagon rings to pentagon-heptagon pair rings. Moreover, the bottlenecks for these atomic-level conversions in the lattice structure of graphene and the influence of heteroatom doping on the mechanisms of these transformations are established.
由于石墨烯独特的性质使其具有广泛的应用,它已成为一种令人兴奋的材料。石墨烯结构的纳米尺度工程是最活跃的研究领域之一,旨在引入功能以改善性能或赋予石墨烯晶格新的特性。在这方面,六边形和非六边形环之间的转换成为一种令人兴奋的工具,可用于调节石墨烯的电子结构,因为每种类型的环在石墨烯中诱导出不同的电子结构和功能。这项密度泛函理论(DFT)研究深入探讨了吸附诱导的五角形 - 八角形 - 五角形环向六边形环的转化,并系统地研究了五角形 - 八角形 - 五角形环转化为五角形 - 七角形对环的可能性。此外,还确定了石墨烯晶格结构中这些原子级转化的瓶颈以及杂原子掺杂对这些转变机制的影响。