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光捕获材料:潜在夹竹桃花朵的福斯特共振能量转移和光电性能研究。

Light Harvesting Materials: A Study on Förster Resonance Energy Transfer and Optoelectronic Properties of Potential Nerium oleander Flowers.

机构信息

Department of Physics, Bangalore University, Bengaluru, India.

Department of Physics, Government First Grade College, Sindhanur, India.

出版信息

Luminescence. 2024 Nov;39(11):e70014. doi: 10.1002/bio.70014.

DOI:10.1002/bio.70014
PMID:39563161
Abstract

The present study focused on extracting the anthocyanin dyes in ethanol, acidic ethanol, methanol, and acidic methanol solvents from Nerium oleander flowers by a simple maceration extraction process. FTIR spectroscopy and vibrational studies have confirmed the existence of polyphenolic groups in 2-phenyl chromenylium (anthocyanin) dyes. The optoelectronic results show the least direct bandgap (2.89 eV), indirect bandgap (1.98 eV), Urbach energy (0.120 eV), high refractive index (1.654), dielectric constant (3.294) and high optical conductivity (1.813 10 S/m) for the anthocyanin dye extracted found in acidic ethanol solvent. The photoluminescence properties such as Stokes' shift, quantum yield, and lifetime results show that anthocyanin dyes are promising candidates for red-LEDs and optical materials. The excellent correspondence between the absorption and emission spectra reinforces that the anthocyanins are efficient (89%) FRET probes. Further, the donor and acceptor undergo redshift in excitation and emission spectra in all studied solvents. The photometric properties such as CIE, CRI, CCT and color purity results of anthocyanins in all studied solvents revealed that this material exhibits pink to red shades (x = 0.40 → 0.50 and y = 0.46 → 0.39) and is well suitable for have great potential in the manufacturing of Organic-LEDs and other optoelectronic device applications.

摘要

本研究采用简单的浸渍提取法,从夹竹桃花朵中提取出乙醇、酸性乙醇、甲醇和酸性甲醇溶剂中的花色苷染料。傅里叶变换红外光谱和振动研究证实了 2-苯基色烯鎓(花色苷)染料中存在多酚基团。光电结果表明,花色苷染料在酸性乙醇溶剂中具有最小的直接带隙(2.89 eV)、间接带隙(1.98 eV)、Urbach 能(0.120 eV)、高折射率(1.654)、介电常数(3.294)和高光电导率(1.813×10-4 S/m)。花色苷染料的荧光性质,如斯托克斯位移、量子产率和寿命结果表明,花色苷染料是红色 LED 和光学材料的有前途的候选材料。吸收光谱和发射光谱之间的良好对应关系证实了花色苷是有效的(89%)FRET 探针。此外,在所有研究的溶剂中,供体和受体在激发和发射光谱中都发生红移。花色苷在所有研究溶剂中的光度性质,如 CIE、CRI、CCT 和颜色纯度结果表明,这种材料呈现粉红色到红色色调(x=0.40→0.50 和 y=0.46→0.39),非常适合在有机发光二极管(OLED)和其他光电器件应用的制造中具有巨大的潜力。

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