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Organic–inorganic hybrid liquid crystals of azopyridine-enabled halogen-bonding towards sensing in aquatic environment

机译:氮吡啶的卤素键合的有机 - 无机杂化液晶在水生环境中感测

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摘要

In this study, organic–inorganic hybrid mesogens of silver nanoparticles (Ag NPs) and azopyridines (AzoPys) enabled by halogen bonding were prepared. Triple functions of the degree of orientation change, metal-enhanced fluorescence, and surface-enhanced Raman scattering were observed in Ag?Br–Br?AzoPy nanoparticles (12Br–Ag), which were induced by the in situ synthesis of Ag NPs in AzoPy. The bromine molecules were then linked by halogen bonding and electrostatic interaction resulting in the smectic A phase of 12Br–Ag. To demonstrate the potential of Br–Br?AzoPy (12Br) as a practical sensor, we used the 12Br compound to detect silver in an aqueous condition, and significant signals of the halogen-bonded complex-silver system were observed in the X-ray diffraction pattern and Raman spectra. Herein, we provide a novel perspective and design principle for the practical applications of organic–inorganic hybrid liquid crystals in environmental monitoring.
机译:在该研究中,制备了通过卤素键合的银纳米颗粒(Ag NPS)和唑吡啶(Azopys)的有机 - 无机杂交颗粒。取向变化程度,金属增强的荧光和表面增强拉曼散射的三倍函数在Agαbr-Br 2中观察到氮杂纳米粒子(12bR-Ag),其由原位合成在zzopy中诱导。然后通过卤素键合和静电相互作用连接溴分子,导致近溴-Ag的阶段。为了证明Br-Br的潜力作为实际传感器的Z,我们使用12BR化合物在水性条件下检测银,并且在X射线中观察到卤素键合 - 银系统的显着信号衍射图案和拉曼光谱。在此,我们提供了一种新的视角和设计原理,用于有机 - 无机杂化液晶在环境监测中的实际应用。

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