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Fabrication of a mesoporous silica film based optical waveguide sensor for detection of small molecules

机译:基于介孔二氧化硅膜的光波导传感器的制备,用于检测小分子

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In this paper, a thick mesoporous silica film (MSF) (more than 700 nm) was fabricated via the two-step enhancing Stober solution growth approach (ESSGA). According to the optimization based on the transfer matrix method, a thicker MSF sensor has higher waveguide index sensitivity and is more suitable for the adsorbent detection, while a thinner MSF sensor has higher covered medium index sensitivity and is more appropriate for non-adsorbent detection. The covered medium index sensitivity and refractive index resolution of the fabricated MSF optical waveguide sensor were calculated to be 53.18 deg/RIU and 1.28 x 10(-6) RIU, respectively. For the detection of a small molecule, hexadecyltrimethylammonium bromide was used as a model of a small molecule to verify its sensing property and its limit of detection (LOD) as low as 1.879 nM was obtained. In order to detect heavy metal ions, the MSF was modified with an amino group by the post-grafted method. The response of the resonance angle shift is more sensitive to Pb2+ ion than Cu2+ ion and both their LODs could reach the nanomolar detection level; those are 17.30 and 6.44 nM, respectively. (C) 2020 Optical Society of America
机译:在本文中,通过两步增强液体溶液生长方法(Essga)制造厚的中孔二氧化硅膜(MSF)(超过700nm)。根据基于转移矩阵法的优化,较厚的MSF传感器具有更高的波导指标灵敏度并且更适合于吸附剂检测,而较薄的MSF传感器具有更高的介质指数敏感性并且更适合于非吸附剂检测。制造的MSF光波导传感器的覆盖介质指数敏感性和折射率分辨率分别为53.18℃和1.28×10(-6)Riu。为了检测小分子,将十六烷基三甲基溴化铵用作小分子的模型,以验证其感应性质,并获得低至1.879nm的检测性(LOD)。为了检测重金属离子,通过接枝的方法用氨基改性MSF。共振角偏移的响应对Pb2 +离子比Cu2 +离子更敏感,并且它们的腰层可以达到纳米摩尔检测水平;那些分别为17.30和6.44纳米。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共9页
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