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一种用于光谱学和光电子学的改良恶唑酮染料。

A Modified Oxazolone Dye Dedicated to Spectroscopy and Optoelectronics.

机构信息

Faculty of Chemistry, Wroclaw University of Science and Technology, Wyb. Wyspiańskiego 27, Wrocław 50-370, Poland.

Faculty of Pharmacy, Nicolaus Copernicus University, Collegium Medicum, Kurpińskiego 5, Bydgoszcz 85-950, Poland.

出版信息

J Org Chem. 2022 Jun 3;87(11):7319-7332. doi: 10.1021/acs.joc.2c00500. Epub 2022 May 19.

Abstract

Here we present a newly synthesized bifunctional organic chromophore with appealing spectroscopic and nonlinear optical features. The positions of absorption and emission maxima of the dye vary with increasing solvent polarity and exhibit positive solvatochromism. The determined change in the dipole moment upon excitation based on the Bilot and Kawski theory is 5.94 D, which corresponds to the intermolecular displacement of a charge equal to 1.24 Å. An investigated organic-based system represents a significant, repeatable, and stable over time optical signal modulation in the manner of the refractive index value. Its magnitude is varied both by optical pumping intensity as well as by external frequency modulation, which indicates that such system is an alluring and alternative core unit for optoelectronic devices and complex networks. Then, the same active system, due to the nonresonant mechanism of higher harmonics of light inducement, can provide second and third harmonic signals. According to the introduced laser line spatial modifications (parallel or perpendicular polarization directions), it is resulted in output SHG signal with magnitude varied about 100%. Its magnitude is noticeably small; however, to construct sensitive optical sensors or infrared indicators, such feature may guarantee satisfying circumstances.

摘要

在这里,我们呈现了一种新合成的双功能有机生色团,具有吸引人的光谱和非线性光学特性。该染料的吸收和发射最大值的位置随溶剂极性的增加而变化,表现出正溶致变色性。根据 Bilot 和 Kawski 理论确定的激发时偶极矩的变化为 5.94 D,这对应于电荷的分子间位移为 1.24 Å。所研究的基于有机的系统以折射率值的方式表示显著、可重复且随时间稳定的光学信号调制。其幅度既可以通过光泵浦强度变化,也可以通过外部频率调制来变化,这表明该系统是光电设备和复杂网络的有吸引力和替代核心单元。然后,由于光感应的高次谐波的非共振机制,相同的有源系统可以提供二次和三次谐波信号。根据引入的激光线空间修饰(平行或垂直偏振方向),输出的二次谐波信号的幅度变化约为 100%。其幅度相当小;然而,为了构建灵敏的光学传感器或红外指示剂,这种特性可能保证令人满意的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b670/9171828/c9360abc3788/jo2c00500_0002.jpg

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