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苯并吡喃激光染料在退火二氧化硅干凝胶中的特性

Characteristics of BENZOPYRAN Laser Dyes in Annealed Silica XEROGEL.

作者信息

Maslov V V, Bezkrovnaya O N, Pritula I M

机构信息

O.Ya. Usikov Institute for Radiophysics and Electronics, NAS of Ukraine, 12 Acad. Proskury St, Kharkiv, 61085, Ukraine.

Institute for Single Crystals, NAS of Ukraine, 60 Nauky Ave, Kharkiv, 61001, Ukraine.

出版信息

J Fluoresc. 2019 Mar;29(2):473-478. doi: 10.1007/s10895-019-02357-5. Epub 2019 Mar 9.

Abstract

The spectroscopic and laser characteristics of two benzopyrane derivatives for 600-670 nm spectrum region of lasing in preliminarily annealed silica xerogel matrices in non-selective cavity under laser pumping at 551 nm have been measured and analysed. The influence of molecular structure of the dyes on their non-radiating losses has been revealed. The specific output laser energy of the studied matrices was approximately equal to the ones for corresponding methanol solutions under the same pumping conditions. The laser spectra of the matrices were displaced to the red region from the fluorescence maximum by about 1000-1500 cm in a nonselective cavity. Such spectral displacement may improve the characteristics of biosensors made on the basis of these matrices because it shifts their emission spectrum to the range of deeper penetration into biological tissues.

摘要

测量并分析了两种苯并吡喃衍生物在551nm激光泵浦下,于非选择性腔中预先退火的二氧化硅干凝胶基质里600 - 670nm激光光谱区域的光谱和激光特性。揭示了染料分子结构对其非辐射损耗的影响。在相同泵浦条件下,所研究基质的比输出激光能量与相应甲醇溶液的比输出激光能量大致相等。在非选择性腔中,基质的激光光谱从荧光最大值向红色区域位移了约1000 - 1500cm。这种光谱位移可能会改善基于这些基质制造的生物传感器的特性,因为它将其发射光谱转移到了对生物组织更深穿透的范围。

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