Mehrdel Baharak, Nikbakht Ali, Aziz Azlan Abdul, Jameel Mahmood S, Dheyab Mohammed Ali, Khaniabadi Pegah Moradi
New Technologies Research Centre, Amirkabir University of Technology, (Tehran Polytechnic), Tehran, 158754413, Iran.
Nano-Optoelectronics Research and Technology Lab (NORLab), School of Physics, Universiti Sains Malaysia, 11800, Pulau Pinang, Malaysia.
Nanotechnology. 2021 Nov 29;33(8). doi: 10.1088/1361-6528/ac37e3.
Upconversion (UC) of lanthanide-doped nanostructure has the unique ability to convert low energy infrared (IR) light to high energy photons, which has significant potential for energy conversion applications. This review concisely discusses the basic concepts and fundamental theories of lanthanide nanostructures, synthesis techniques, and enhancement methods of upconversion for photovoltaic and for near-infrared (NIR) photodetector (PD) application. In addition, a few examples of lanthanide-doped nanostructures with improved performance were discussed, with particular emphasis on upconversion emission enhancement using coupling plasmon. The use of UC materials has been shown to significantly improve the NIR light-harvesting properties of photovoltaic devices and photocatalytic materials. However, the inefficiency of UC emission also prompted the need for additional modification of the optical properties of UC material. This improvement entailed the proper selection of the host matrix and optimization of the sensitizer and activator concentrations, followed by subjecting the UC material to surface-passivation, plasmonic enhancement, or doping. As expected, improving the optical properties of UC materials can lead to enhanced efficiency of PDs and photovoltaic devices.
镧系掺杂纳米结构的上转换(UC)具有将低能量红外(IR)光转换为高能量光子的独特能力,这在能量转换应用方面具有巨大潜力。本文简要讨论了镧系纳米结构的基本概念和基础理论、合成技术以及用于光伏和近红外(NIR)光电探测器(PD)应用的上转换增强方法。此外,还讨论了一些性能得到改善的镧系掺杂纳米结构实例,特别强调了利用耦合等离子体增强上转换发射。已证明使用上转换材料可显著改善光伏器件和光催化材料的近红外光捕获性能。然而,上转换发射的低效率也促使需要对上转换材料的光学性质进行额外改性。这种改进需要正确选择主体基质并优化敏化剂和激活剂浓度,然后对上转换材料进行表面钝化、等离子体增强或掺杂。正如预期的那样,改善上转换材料的光学性质可提高光电探测器和光伏器件的效率。