Zhang Yiyan, Zhao Tianyu, Deng Yuming, Liu Xinyue, Zhang Xiaorong, Zhu Tong, Ågren Hans, Chen Guanying
MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Ministry of Education, Harbin Institute of Technology, 150001, Harbin, People's Republic of China.
Key Laboratory of Micro-systems and Micro-structures, Ministry of Education, Harbin Institute of Technology, 150001, Harbin, People's Republic of China.
Nat Commun. 2025 Jul 2;16(1):6080. doi: 10.1038/s41467-025-61293-0.
Lead halide perovskites serve as an important class of photoelectrical materials in modern technological applications, such as light emitting diodes, photodetectors, and solar cells. However, the inability to respond to near infrared light poses a tight constraint on their performances. This study reports a class of broadband near infrared-responsive inorganic lead halide perovskite nanocrystals, which emit a palette of tunable upconversion luminescence via organic dye-lanthanide tandem sensitization. The coordination of dyes (IR783) to the surface of ytterbium-doped cesium lead halide nanocrystals entails an intense and broad spectral response range of near infrared light (600-860 nm). Sub-10 Wcm light irradiance at 804 nm induced ultrabright exciton luminescence (tunable from 520 to 625 nm), about 27,500 folds brighter than the one without dye sensitization, with upconversion brightness reaching 3.22 Mcm. Transient absorption spectra revealed an ultrafast triplet energy transfer process (9.28 × 10s) from dyes to ytterbium dopants with near-unity efficiency (98.4%), followed by cooperative sensitization that excites delocalized excitons. These broadband near infrared-responsive inorganic perovskite nanocrystals have implications for applications ranging from solar cells to near infrared imaging and sensing.
卤化铅钙钛矿在现代技术应用中是一类重要的光电材料,如发光二极管、光电探测器和太阳能电池。然而,无法响应近红外光对其性能构成了严格限制。本研究报道了一类宽带近红外响应的无机卤化铅钙钛矿纳米晶体,它们通过有机染料-镧系元素串联敏化发出一系列可调谐的上转换发光。染料(IR783)与掺镱铯卤化铅纳米晶体表面的配位导致了近红外光(600 - 860 nm)强烈且宽广的光谱响应范围。804 nm处低于10 Wcm的光辐照度诱导出超亮的激子发光(可从520调谐至625 nm),比未进行染料敏化的发光亮约27,500倍,上转换亮度达到3.22 Mcm。瞬态吸收光谱揭示了从染料到镱掺杂剂的超快三重态能量转移过程(9.28×10 s),效率接近100%(98.4%),随后通过协同敏化激发离域激子。这些宽带近红外响应的无机钙钛矿纳米晶体在从太阳能电池到近红外成像和传感等应用中具有重要意义。