College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China.
Nanoscale. 2015 Aug 28;7(32):13530-6. doi: 10.1039/c5nr03060a. Epub 2015 Jul 23.
Plasmonics can be used to improve absorption in optoelectronic devices and has been intensively studied for solar cells and photodetectors. Graphene has recently emerged as a powerful plasmonic material. It shows significantly less loss compared to traditional plasmonic materials such as gold and silver and its plasmons can be tuned by changing the Fermi energy with chemical or electrical doping. Here we propose the use of graphene plasmonics for light trapping in optoelectronic devices and show that the excitation of localized plasmons in doped, nanostructured graphene can enhance optical absorption in its surrounding medium including both bulky and two-dimensional materials by tens of times, which may lead to a new generation of photodetectors with high efficiency and tunable spectral selectivity in the mid-infrared and THz ranges.
等离子体激元学可用于提高光电设备的吸收率,人们对其在太阳能电池和光电探测器中的应用进行了深入研究。石墨烯最近成为一种强大的等离子体激元材料。与传统的等离子体激元材料(如金和银)相比,它的损耗要小得多,并且可以通过化学或电掺杂改变费米能来调节其等离子体激元。在这里,我们提出将石墨烯等离子体激元学用于光电设备中的光捕获,并表明掺杂的纳米结构石墨烯中的局域等离子体激元的激发可以将其周围介质(包括块状和二维材料)的光吸收率提高数十倍,这可能会导致新一代在中红外和太赫兹范围内具有高效率和可调谐光谱选择性的光电探测器。