Department of Physics, Jnanabharathi Campus, Bangalore University, Bengaluru, India.
Department of Physics and Material Research Centre, Maharani Science College for Women Bengaluru, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 Dec 5;223:117288. doi: 10.1016/j.saa.2019.117288. Epub 2019 Jun 17.
In order to develop a new photostable, light emitting and highly efficient synthesized material to exhibit display property and non-linear optical active materials with good band gap energy, we have synthesized molecule via simple catalytic method. The photophysical property of studied molecule in various organic solvents having different polarity exhibited considerably acceptable results. The results of quantum yield, lifetime and large Stoke shift shows the compound is a good promising candidate for the laser dyes and light emitting diode color filters. The energy band gap was determined by both experimentally and theoretically which is found to be an average of 3.2 eV which is well matched to the semiconducting materials band gap. The non-linear optical absorption properties of the synthesized molecule are dissolved in suitable solvents had been investigated using Z-scan technique. We have determined the sign and magnitude of nonlinear absorption coefficient by the method of open aperture Z-scan setup using an Nd: YAG continuous wave laser at 532 nm. The open aperture Z-scan profiles clearly demonstrate the presence of reverse saturable absorption kind nonlinearity in the investigated compound and are due to the two-photon absorption. Results of the non-linear optical studies confirm that the studied compound is more latent applications for optical limiting in continuous wave regime. Further, the optoelectronic properties were investigated the international commission on illumination, color rendering index, color purity, and correlated color temperature is results of the studied molecule in all studied solvents revels that this compound exhibits blue to cyan color and is suitable for organic light emitting diode which can be preferably used for daylight applications.
为了开发一种新的光稳定、发光和高效合成材料,以展示具有良好能带隙能量的显示性能和非线性光学活性材料,我们通过简单的催化方法合成了分子。研究分子在不同极性的各种有机溶剂中的光物理性质表现出相当可接受的结果。量子产率、寿命和大斯托克斯位移的结果表明,该化合物是激光染料和发光二极管滤光片的良好候选材料。能带隙通过实验和理论确定,平均为 3.2eV,与半导体材料的能带隙相匹配。通过 Z 扫描技术研究了合成分子在合适溶剂中的非线性吸收特性。我们使用 Nd:YAG 连续波激光器在 532nm 处通过开孔径 Z 扫描装置的方法确定了非线性吸收系数的符号和大小。开孔径 Z 扫描曲线清楚地表明,在所研究的化合物中存在反饱和吸收类型的非线性,这是由于双光子吸收。非线性光学研究的结果证实,所研究的化合物在连续波模式下具有更大的光学限幅应用潜力。此外,我们还研究了光电特性,国际照明委员会的显色指数、颜色纯度和相关色温是研究分子在所有研究溶剂中的结果,表明该化合物表现出蓝色到青色,并适用于有机发光二极管,可优先用于日光应用。