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首页> 外文期刊>Brazilian journal of physics >Exploration of Induced Blue Phases and Orthogonal Smectic Batonnets in Hydrogen-Bonded Ferroelectric Nanoliquid Crystalline Complexes for Optoelectronic Devices
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Exploration of Induced Blue Phases and Orthogonal Smectic Batonnets in Hydrogen-Bonded Ferroelectric Nanoliquid Crystalline Complexes for Optoelectronic Devices

机译:用于光电器件氢粘合铁电纳米喹钛晶配合物中诱导的蓝阶和正交助击的探测

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A novel blue phase hydrogen-bonded ferroelectric liquid crystal (HBFLC) series has been synthesized from cholesteryl stearate (CHS) and p-n-alkyloxybenzoic acid (nOBA, where n=2 to12). Blue phase (BP) liquid crystalline complex is a high potent material for next-generation optoelectronic devices. The structural, optical, and thermal properties of present HBFLC complexes have been characterized by X-ray diffraction techniques (XRD), Fourier transform infrared spectroscopy (FT-IR), nuclear magnetic resonance spectroscopy (NMR), polarizing optical microscope (POM), and differential scanning calorimetry (DSC) techniques. The band gap energy of the present HBFLC complex (4.6eV) is estimated by UV-Visible spectrometer. X-ray diffraction and scanning electron microscope (SEM) studies which confirm the monoclinic nature and morphology of the present complex. Phase diagram of the present CHS + nOBA is constructed from DSC data and the same is discussed. The lower homologous of CHS + nOBA HBFLC (n=2 to 6) complex shows BPsm1, BPsm2, BPsm3 while higher homologous (n=7 to 12) exhibiting orthogonal smectic A* (SmA*) character with blue phases. A noteworthy observation is that the identification of extended thermal span of smectic blue phases and induced SmA* phase in the present HBFLCs. Another important observation is that the widest BP range is reported in the present hydrogen-bonded ferroelectric nanoliquid crystalline (HBFNLC) complex which is more suitable for photonic devices. In addition, LC parameters such as, phase width, thermal stability factor, phase transition temperature with enthalpy value, and the origination of orthogonal phases in CHS + nOBA HBFLC complex is also reported.
机译:一种新型蓝相氢键合铁电液晶(HBFLC)系列已从胆固醇硬脂酸酯(CHS)和P-N-烷基氧基苯甲酸(NOBA,其中N = 2至12)合成。蓝相(BP)液晶配合物是下一代光电器件的高效材料。本发明HBFLC复合物的结构,光学和热性质的特征在于X射线衍射技术(XRD),傅里叶变换红外光谱(FT-IR),核磁共振光谱(NMR),偏振光学显微镜(POM),和差示扫描量热法(DSC)技术。本HBFLC复合物(4.6EV)的带间隙能量由UV可见光谱仪估计。 X射线衍射和扫描电子显微镜(SEM)研究,其证实了本综合体的单核性质和形态。本CHS + NOBA的相图由DSC数据构成,并且讨论了该相同。 CHS + NoBA HBFLC(n = 2至6)复合物的较低同源显示BPSM1,BPSM2,BPSM3,而具有具有蓝相的正交偏见A *(SMA *)特征的更高同源(n = 7至12)。值得注意的观察是鉴定近晶蓝相的延长热跨度,并在本HBFlc中诱导SMA *相。另一个重要的观察是在本发明的氢键铁电纳米喹氢胺(HBFNLC)复合物中报道了最宽的BP系列,其更适合光子器件。另外,还报道了LC参数,例如相宽,热稳定因子,相变温度,具有焓值的相变温度以及CHS + Noba HBFLC复合物中的正交相的起源。

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