论文标题

偶氮基H形液晶分子的Langmuir-Blodgett膜中折射率的光诱导调制

Photoinduced modulation of refractive index in Langmuir-Blodgett films of Azo-based H-shaped liquid crystal molecules

论文作者

Joshi, Ashutosh, Gayakwad, Akash, V., Manjuladevi, Varia, Mahesh C., Kumar, S., Gupta, R. K.

论文摘要

由有机分子组成的光学活性区域的发展对于光学开关和波导等设备至关重要,因为通过应用合适的电磁(EM)波很容易对其进行操纵。在本文中,我们通过在新型H形液晶(HLC)分子的单层Langmuir-Blodgett(LB)膜的沉积中报告了光活性表面的发展。合成的HLC分子具有偶氮组和硝基组。偶氮组可以通过用紫外线(UV)光照射(反式CIS转换)。硝基组可以为HLC分子提供足够的两亲性,以形成空气 - 水界面的稳定的Langmuir单层。 HLC分子的Langmuir单层表现出气体和液体样相。 HLC分子的单层LB膜沉积在自制表面等离子体共振(SPR)仪器的金芯片上。 LB膜中分子的偶氮组因紫外线照射而激发,从而导致跨CIS转化引起的形态变化。形态学的这种变化会导致LB膜的折射率(RI)的微小变化。 SPR是一种无标签和高度敏感的光学现象,用于测量RI中此类变化。在我们的研究中,我们发现HLC分子LB膜的共振角度的系统变化是紫外线辐射强度的函数。我们测量了开关强度和关闭强度,这可能表明HLC分子的LB膜可以在光学开关或波导中找到应用。

The development of optically active area consisting of organic molecules are essential for the devices like optical switches and waveguides, as it can be easily maneuvered by the application of suitable electromagnetic (EM) waves. In this article, we report the development of a photoactive surface by the deposition of a single layer of Langmuir-Blodgett (LB) film of a novel H-shaped liquid crystal (HLC) molecule. The synthesized HLC molecules possess azo-groups and nitro-groups. The azo-group can be isomerized (trans-cis transformation) by irradiating them with ultraviolet (UV) light. The nitro-group can provide sufficient amphiphilicity to the HLC molecules to form a stable Langmuir monolayer at air-water interface. The Langmuir monolayer of the HLC molecules exhibited gas and liquid-like phases. A single layer of LB film of HLC molecules was deposited on a gold chip of a home-built surface plasmon resonance (SPR) instrument. The azo-groups of the molecules in LB film was excited by UV irradiation leading to a change in morphology due to trans-cis transformation. Such a change in morphology can lead to a miniscule change in refractive index (RI) of the LB film. SPR is a label free and highly sensitive optical phenomenon for the measurement of such changes in RI. In our studies, we found systematic changes in the resonance angle of the LB film of HLC molecules as a function of intensity of the UV irradiation. We measured switch-on and switch-off intensity which may suggest that the LB film of HLC molecules can find applications in optical switches or waveguides.

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