A new linear phenyloxazole-benzothiadiazole luminophore: crystal growth, structure and fluorescence properties.

V. Postnikov, N. Sorokina, A. A. Kulishov, M. S. Lyasnikova, T. Sorokin, A. Freidzon, A. Stepko, O. Borshchev, M. S. Skorotetsky, N. Surin, E. Svidchenko, S. Ponomarenko
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引用次数: 1

Abstract

A new linear luminophore consisting of five conjugated units of oxazole, phenylene and a central benzothiadiazole fragment, 4,7-bis[4-(1,3-oxazol-5-yl)phenyl]-2,1,3-benzothiadiazole, has been synthesized and characterized. Needle-like single-crystal samples up to 10 mm in length were obtained by physical vapor transport. The crystal structure was determined at 95 K and 293 K using single-crystal X-ray diffraction. With decreasing temperature, the space group P21/n does not change, but the unit-cell volume of the crystal decreases. The presence of intra- and intermolecular hydrogen bonds was established. Melting parameters (Tm = 305.5°C, ΔHm = 52.2 kJ mol-1) and the presence of a liquid-crystalline mesophase (TLC = 336.3°C, ΔHLC = 1.4 kJ mol-1) were determined by differential scanning calorimetry and in situ thermal polarization optical microscopy studies. The presence of linear chains of hydrogen bonds ensures high stability of the crystal structure in a wide temperature range. The luminophore is characterized by a large Stokes shift (5120-5670 cm-1) and a high quantum yield of fluorescence, reaching 96% in solutions (λmax = 517 nm) and 27% in thin crystalline films (λmax = 529 nm). The calculated absorption and emission spectra are in good agreement with the experimental data. Because of the excellent optical properties and high thermal stability, the new linear luminophore has great potential for application in organic photonics and optoelectronic devices.
一种新型线性苯并唑-苯并噻二唑发光团:晶体生长、结构和荧光性质。
合成了一种新的线性发光基团,由恶唑、苯基和中心苯并噻唑片段4,7-二[4-(1,3-恶唑-5-基)苯基]-2,1,3-苯并噻唑组成。通过物理蒸汽输运获得了长度达10mm的针状单晶样品。在95 K和293 K时用单晶x射线衍射测定了晶体结构。随着温度的降低,空间群P21/n没有变化,但晶胞体积减小。建立了分子内和分子间氢键的存在。通过差示扫描量热法和原位热偏振光学显微镜研究确定了熔融参数(Tm = 305.5°C, ΔHm = 52.2 kJ mol-1)和液晶中间相(TLC = 336.3°C, ΔHLC = 1.4 kJ mol-1)的存在。线性氢键链的存在保证了晶体结构在宽温度范围内的高稳定性。该发光团的特点是Stokes位移大(5120-5670 cm-1),荧光量子产率高,在溶液(λmax = 517 nm)中达到96%,在薄膜(λmax = 529 nm)中达到27%。计算的吸收光谱和发射光谱与实验数据吻合较好。由于其优异的光学性能和高的热稳定性,新型线性发光团在有机光子学和光电子器件中具有很大的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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