光子上转换
材料科学
聚苯乙烯
紫外线
氧传感器
纳米颗粒
红外线的
氧气
光电子学
荧光
激发
猝灭(荧光)
分析化学(期刊)
兴奋剂
纳米技术
光学
聚合物
复合材料
有机化学
化学
物理
电气工程
工程类
色谱法
作者
Leandro P. Ravaro,Marylyn Setsuko Arai,Lauro June Queiroz Maia,M. Reza Dousti,Pedro H. O. Santiago,Javier Ellena,Andréa Simone Stucchi de Camargo
标识
DOI:10.1021/acsami.2c14579
摘要
This work presents an innovative approach to obtain a multifunctional hybrid material operating via combined anti-Stokes (upconversion) and Stokes (downshifting) emissions for oxygen gas sensing and related functionalities. The material is based on a Cu(I) complex exhibiting thermally activated delayed fluorescence emission (TADF) and infrared-to-visible upconverting Tm3+/Yb3+-doped NaYF4 nanoparticles supported in a polystyrene (PS) matrix. Excitation of the hybrid material at 980 nm leads to efficient transfer of Tm3+ emission in the ultraviolet/blue region to the Cu(I) complex and consequently intense green emission (560 nm) of the latter. Additionally, the green emission of the complex can also be directly generated with excitation at 360 nm. Independently of the excitation wavelength, the emission intensity is efficiently suppressed by the presence of molecular oxygen and the quenching rate is properly characterized by the Stern-Volmer plots. The results indicate that the biocompatible hybrid material can be applied as an efficient O2 sensor operating via near-infrared or ultraviolet excitation, unlike most optical oxygen sensors currently available which only work in downshifting mode.
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