Kar Arik, Kundu Simanta, Patra Amitava
Department of Materials Science, Indian Association for the Cultivation of Science, 2A & 2B Raja S.C. Mallick Road, Jadavpur, Kolkata 700032 (India); Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW (UK).
Chemphyschem. 2015 Feb 23;16(3):505-21. doi: 10.1002/cphc.201402668. Epub 2014 Dec 22.
The fundamental understanding of lanthanide-doped upconverted nanocrystals remains a frontier area of research because of potential applications in photonics and biophotonics. Recent studies have revealed that upconversion luminescence dynamics depend on host crystal structure, size of the nanocrystals, dopant concentration, and core-shell structures, which influence site symmetry and the distribution and energy migration of the dopant ions. In this review, we bring to light the influences of doping/co-doping concentration, crystal phase, crystal size of the host, and core-shell structure on the efficiency of upconversion emission. Furthermore, the lattice strain, due to a change in the crystal phase and by the core-shell structure, strongly influences the upconversion emission intensity. Analysis suggests that the local environment of the ion plays the most significant role in modification of radiative and nonradiative relaxation mechanisms of overall upconversion emission properties. Finally, an outlook on the prospects of this research field is given.
由于镧系掺杂上转换纳米晶体在光子学和生物光子学中的潜在应用,对其基本理解仍然是一个前沿研究领域。最近的研究表明,上转换发光动力学取决于主体晶体结构、纳米晶体尺寸、掺杂剂浓度和核壳结构,这些因素会影响位点对称性以及掺杂离子的分布和能量迁移。在本综述中,我们揭示了掺杂/共掺杂浓度、晶相、主体晶体尺寸和核壳结构对上转换发射效率的影响。此外,由于晶相变化和核壳结构引起的晶格应变强烈影响上转换发射强度。分析表明,离子的局部环境在改变整体上转换发射特性的辐射和非辐射弛豫机制中起着最重要的作用。最后,给出了该研究领域的前景展望。