橙-红发射醛取代供体-π-受体吩噻嗪衍生物的光电子、DFT和热学研究

Shivaraj Mantur, M. Patil, AfraQuasar A. Nadaf, M. S. Najare, M. Yaseen, A. Nesaragi, S. Inamdar, I. Khazi, R. Kamble
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引用次数: 0

摘要

采用简单高效的合成方案合成了一类新型探针。这些化合物(PTZ-6(A -e))以吩噻嗪(PTZ)部分为电子给体(D),并与丙烯腈基一起取代醛作为电子受体(A),从而形成D-π-A推挽体系。用光谱技术对新合成的一系列有机靶小分子PTZ-6(a-e)的结构进行了研究和证实。由于分子在有机溶剂中表现出良好的溶解性,通过紫外-可见吸收和荧光光谱对其光学/溶剂致变色性质进行了详细的研究。利用具有CAM-B3LYP函数的密度泛函理论(DFT)模型研究了探针的光物理性质,因为这些探针具有橙色到红色的发射特性。光学带隙值为2.32 ~ 2.50 eV,具有良好的热稳定性,熔化温度为136 ~ 198℃,T5d温度范围为335 ~ 354℃。循环伏安法研究证实,目标化合物的起始值为0.80 eV。在乙醇中实验测量了探针的量子产率(Φ),观察到Stokes位移在4846-9430 cm-1范围内。结果表明,新型(D-A-D)发色团在有机光电子学中发挥着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orange to red emissive aldehyde substituted donor-π-acceptor phenothiazine derivatives: Optoelectronic, DFT and thermal studies
A new class of probes was synthesized using a simple and efficient synthetic protocol. These compounds (PTZ-6(a-e)) have the phenothiazine (PTZ) moiety as the electron donor (D) and substituted aldehydes along with the acrylonitrile group, which acts as the electron acceptor (A), thus making D-π-A push-pull system. The structures of the newly synthesized series of small organic target molecules PTZ-6(a-e) were investigated and confirmed by spectros-copic techniques. The optical/solvatochromic properties were studied in detail by UV-vis absorption and fluorescence spectroscopy, because the molecules have shown good solubility in organic solvents. The density functional theory (DFT) model with the CAM-B3LYP function is utilized to study the photophysical properties of the probes, as these probes exhibited orange-to-red emission. Optical band gap values ranged from 2.32 to 2.50 eV, and these probes exhibited good thermal stability with a melting temperature of 136 to 198 °C and a T5d temperature range from 335 to 354 °C. The cyclic voltammetry study confirms that the Eoxonset values of the target compounds are 0.80 eV. The quantum yields (Φ) of the probes are measured experimentally in ethanol and the Stokes shifts are observed to be in the range of 4846-9430 cm-1. The results displayed that novel (D-A-D) chromophores could play an important role in organic optoelectronics.
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