光子上转换
材料科学
纳米颗粒
价(化学)
光电子学
辐射
红外线的
能量转移
辐照
纳米技术
纳米晶
镧系元素
兴奋剂
光学
化学物理
化学
离子
物理
有机化学
核物理学
作者
Hongyu Bian,Xian Qin,Xinwen Chen,Yu Wang
标识
DOI:10.1002/adom.202202010
摘要
Abstract Near‐infrared light excitable upconversion nanocrystals are extensively applied in anticounterfeiting, optical imaging, and biomedicine, wherein many mechanistic endeavors are made to manipulate energy transfer through chemical engineering. However, how external stimuli such as high‐energy radiation (X‐ray) influence the energy transfer of these upconversion nanoparticles remains poorly understood. Here a new strategy for energy transfer modulation through X‐ray irradiation in Yb 3+ and Tm 3+ co‐doped nanoparticles is reported. Mechanistic studies indicate that X‐ray induced Frenkel defects in crystal lattices, other than the variation of lanthanide valence or crystal symmetry, lead to energy mismatch between adjacent Yb 3+ sensitizers and the resultant inefficient energy transfer from sensitizers to activators. Based on these findings, high‐contrast X‐ray imaging and long‐term information storage (over 50 days) using nanoparticle‐containing flexible films are demonstrated. This work offers insights into the understanding of light‐matter interaction by high‐energy radiation and provides a promising methodology for long‐term information storage and X‐ray imaging.
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