论文标题

2D孔石墨烯的光激发和热电特性

Optical excitations and thermoelectric properties of 2D holey graphene

论文作者

Singh, Deobrat, Shukla, Vivekanand, Ahuja, Rajeev

论文摘要

最近,Holey石墨烯(HG)已在孔尺寸和形状的原子精度下成功合成。这显示了能源和环境应用有趣的物理和化学特性。毛孔的形状还将半金属石墨烯转换为半导体孔石墨烯,为其在电子应用中使用的新门打开了新的门。我们使用第一原理计算系统地研究了HG结构的结构,电子,光学和热电性能。发现HG具有0.65 eV(PBE功能),0.95 eV(HSE06功能)的直接带隙,并且HSE06功能与实验结果非常吻合。对于光学性质,我们通过求解伯特 - 钙板方程来确定内征激的兴奋子效应来使用单发g0w0计算。从吸收光谱中,我们获得了1.28 eV的光学间隙和80 MeV的激子结合能。我们已经发现,从研究的热电特性中发现,热电器的巨大值为1662.59 $ $ $ $ $ v/k和更好的电子图,zt $ _ {e} $为1.13。我们的研究在可见光区域表现出强烈而广泛的光学吸收,这使HG单层成为光电和热电应用的有前途的候选者。

Recently, holey graphene (HG) has successfully synthesized at atomic precision of hole size and shape. This shows interesting physical and chemical properties for energy and environmental applications. Shaping of the pores also transforms semimetallic graphene to semiconductor holey graphene, which opens new door for its use in electronic applications. We systematically investigated the structural, electronic, optical and thermoelectric properties of HG structure using first-principles calculations. HG was found to have a direct band gap with 0.65 eV (PBE functional), 0.95 eV (HSE06 functional) and HSE06 functional is in good agreement with experimental results. For the optical properties, we use single-shot G0W0 calculations by solving the Bethe-Salpeter equation to determining the intralayer excitonic effects. From the absorption spectrum, we obtained the optical gap of 1.28 eV and a week excitonic binding energy of 80 meV. We have found the large values of thermopower of 1662.59 $μ$V/K and better electronic figure of merit, ZT$_{e}$ as 1.13 from the investigated thermoelectric properties. Our investigations exhibit strong and broad optical absorption in the visible light region, which makes HG monolayer a promising candidate for optoelectronic and thermoelectric applications.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源