De la Cruz-Guzman Mayela, Aguilar-Aguilar Angelica, Hernandez-Adame Luis, Bañuelos-Frias Alan, Medellín-Rodríguez Francisco J, Palestino Gabriela
Biopolymers and Nanostructures Laboratory, Faculty of Chemical Sciences, Universidad Autónoma de San Luis Potosí, Av. Manuel Nava No. 6, San Luis Potosí, San Luis Potosí 78210, México.
Colloids and Interfaces Laboratory, Institute of Physics, Universidad Autónoma de San Luis Potosí, Av. Manuel Nava No. 6, San Luis Potosí, San Luis Potosí 78210, México.
Nanoscale Res Lett. 2014 Aug 26;9(1):431. doi: 10.1186/1556-276X-9-431. eCollection 2014.
A rhodamine organosilane derivative (Rh-UTES) has been obtained by one-pot synthesis. The chemical structure of Rh-UTES was confirmed by nuclear magnetic resonance (NMR) and infrared (FTIR) techniques. To obtain an inorganic-organic hybrid sensor, Rh-UTES was covalently immobilized on a porous silicon microcavity (PSiMc) via triethoxysilane groups. The attachment of the organic derivative into PSiMc was confirmed by FTIR, specular reflectance, and scanning electron microscopy (SEM). The optical performance of Rh-UTES receptor for Hg(2+) detection was investigated by fluorescent spectroscopy and microscopy. Upon the addition of increasing amounts of Hg(2+) ions, a remarkable enhancement in emission intensity was produced in both systems. In the solid phase, an increase of integrated fluorescent emission of 0.12- and 0.15-fold after Hg(2+) receptor coordination was observed. The light harvesting capability of PSiMc devices allowed obtaining an enhanced fluorescent emission after Rh-UTES immobilization (277-fold). The fluorescence microscopy of hybrid PSiMc sensor provided an optical qualitative test for Hg(2+) detection.
通过一锅法合成得到了一种罗丹明有机硅烷衍生物(Rh-UTES)。Rh-UTES的化学结构通过核磁共振(NMR)和红外(FTIR)技术得以确认。为了获得一种无机-有机杂化传感器,Rh-UTES通过三乙氧基硅烷基团共价固定在多孔硅微腔(PSiMc)上。通过FTIR、镜面反射和扫描电子显微镜(SEM)证实了有机衍生物与PSiMc的结合。通过荧光光谱和显微镜研究了Rh-UTES受体对Hg(2+)检测的光学性能。随着Hg(2+)离子添加量的增加,两个系统的发射强度均显著增强。在固相中,观察到Hg(2+)受体配位后荧光发射积分增加了0.12倍和0.15倍。PSiMc器件的光捕获能力使得Rh-UTES固定后荧光发射增强(277倍)。杂化PSiMc传感器的荧光显微镜为Hg(2+)检测提供了光学定性测试。