Gu Xuefeng, Qiu Teng, Zhang Wenjun, Chu Paul K
Department of Physics, Southeast University, Nanjing 211189, People's Republic of China.
Nanoscale Res Lett. 2011 Mar 8;6(1):199. doi: 10.1186/1556-276X-6-199.
Light-emitting diodes [LEDs] are of particular interest recently as their performance is approaching fluorescent/incandescent tubes. Moreover, their energy-saving property is attracting many researchers because of the huge energy crisis we are facing. Among all methods intending to enhance the efficiency and intensity of a conventional LED, localized surface plasmon resonance is a promising way. The mechanism is based on the energy coupling effect between the emitted photons from the semiconductor and metallic nanoparticles fabricated by nanotechnology. In this review, we describe the mechanism of this coupling effect and summarize the common fabrication techniques. The prospect, including the potential to replace fluorescent/incandescent lighting devices as well as applications to flat panel displays and optoelectronics, and future challenges with regard to the design of metallic nanostructures and fabrication techniques are discussed.
发光二极管[LED]近来格外受关注,因为其性能正接近荧光/白炽灯管。此外,鉴于我们正面临的巨大能源危机,其节能特性吸引了众多研究人员。在所有旨在提高传统LED效率和强度的方法中,局域表面等离子体共振是一种很有前景的方式。其原理基于半导体发射的光子与通过纳米技术制造的金属纳米颗粒之间的能量耦合效应。在本综述中,我们描述了这种耦合效应的原理,并总结了常见的制造技术。还讨论了其前景,包括取代荧光/白炽照明设备的潜力以及在平板显示器和光电子学中的应用,以及在金属纳米结构设计和制造技术方面未来面临的挑战。