4.7 Article

Stimulated emission and optical properties of pyranyliden fragment containing compounds in PVK matrix

Journal

OPTICS AND LASER TECHNOLOGY
Volume 95, Issue -, Pages 74-80

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.optlastec.2017.04.021

Keywords

DCM; Laser dye; Glass forming low molecular weight compounds; Amplified spontaneous emission; Pyranyliden derivatives

Funding

  1. National Research program Multifunctional materials and composites, photonics and nanotechnology (IMIS2)
  2. Scientific Research Project for Students and Young Researchers [SJZ2015/12]

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Organic solid state lasers are thoughtfully investigated due to their potential applications in communication, sensors, biomedicine, etc. Low amplified spontaneous emission (ASE) excitation threshold value is essential for further use of the material in devices. Intramolecular interaction limits high molecule density load in the matrix. It is the case of the well-known red light emitting laser dye -4-(dicyanomethy lene)-2-methyl-6-(4-dimethylaminostyryl)-4H-pyran (DCM). The lowest ASE threshold value of the mentioned laser dye could be obtained within the concentration range between 2 and 4 wt%. At higher concentration threshold energy drastically increases. In this work optical and ASE properties of three original DCM derivatives in poly(N-vinylcarbazole) (PVK) at various concentrations will be discussed. One of the derivatives is modified DCM dye in which the methyl substituents in the electron donor part have been replaced with bulky trityloxyethyl groups (DWK-1). These sterically significant functional groups do not influence electron transitions in the dye but prevent aggregation of the molecules. The chemical structure of the second investigated compound is similar to DWK-1 where the methyl group is replaced with the tert-butyl substituent (DWK-1TB). The third derivative (DWK-2) consists of two N,N-di(trityloxyethyl) amino electron donor groups. All results were compared with DCM:PVK system. Photoluminescence quantum yield (PLQY) is up to ten times larger for DVVK-1TB with respect to DCM systems. Bulky trityloxyethyl groups prevent aggregation of the molecules thus decreasing interaction between dyes and amount of non-radiative decays. The red shift of the photoluminescence and amplified spontaneous emission at higher concentrations were observed due to the solid state solvation effect. The increase of the investigated dye density in the matrix with a smaller reduction in PLQY resulted in low ASE threshold energy. The lowest threshold value was obtained around 21 mu J/cm(2) (2.1 kW/cm(2)) in DWK-1TB:PVK films. (C) 2017 Elsevier Ltd. All rights reserved.

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