Yang Weifeng, Li Xiyan, Chi Dongzhi, Zhang Hongjie, Liu Xiaogang
Institute of Materials Research and Engineering, Agency for Science, Technology and Research (A*STAR), Singapore 117602.
Nanotechnology. 2014 Dec 5;25(48):482001. doi: 10.1088/0957-4484/25/48/482001. Epub 2014 Nov 14.
Photovoltaics and photocatalysis are two significant applications of clean and sustainable solar energy, albeit constrained by their inability to harvest the infrared spectrum of solar radiation. Lanthanide-doped materials are particularly promising in this regard, with tunable absorption in the infrared region and the ability to convert the long-wavelength excitation into shorter-wavelength light output through an upconversion process. In this review, we highlight the emerging applications of lanthanide-doped upconversion materials in the areas of photovoltaics and photocatalysis. We attempt to elucidate the fundamental physical principles that govern the energy conversion by the upconversion materials. In addition, we intend to draw attention to recent technologies in upconversion nanomaterials integrated with photovoltaic and photocatalytic devices. This review also provides a useful guide to materials synthesis and optoelectronic device fabrication based on lanthanide-doped upconversion materials.
光伏和光催化是清洁可持续太阳能的两个重要应用,尽管它们因无法收集太阳辐射的红外光谱而受到限制。在这方面,镧系元素掺杂材料特别有前景,它们在红外区域具有可调谐吸收,并且能够通过上转换过程将长波长激发转换为短波长光输出。在本综述中,我们重点介绍了镧系元素掺杂上转换材料在光伏和光催化领域的新兴应用。我们试图阐明支配上转换材料能量转换的基本物理原理。此外,我们旨在关注与光伏和光催化器件集成的上转换纳米材料的最新技术。本综述还为基于镧系元素掺杂上转换材料的材料合成和光电器件制造提供了有用的指导。