首页> 外文期刊>Frontiers in Chemistry >One Spot – Two Sensors: Porous Silicon Interferometers in Combination with Gold Nanostructures showing Localized Surface Plasmon Resonance
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One Spot – Two Sensors: Porous Silicon Interferometers in Combination with Gold Nanostructures showing Localized Surface Plasmon Resonance

机译:一个点–两个传感器:多孔硅干涉仪与金纳米结构的结合,显示局部表面等离子体共振

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Sensors composed of a porous silicon monolayer covered with gold nanoparticles, which provide two optical signal transduction methods, are fabricated and thoroughly characterized concerning their sensing performance. For this purpose, silicon substrates were electrochemically etched in order to obtain porous silicon monolayers, which were subsequently immersed in gold salt solution facilitating the formation of a porous gold nanoparticle layer on top of the porous silicon. The deposition process was monitored by reflectance spectroscopy, and the appearance of a dip in the interference pattern of the porous silicon layer was observed. This dip can be assigned to the absorption of light by the deposited gold nanoparticles leading to localized surface plasmon resonance. The bulk sensitivity of these sensors was determined by recording reflectance spectra in media having different refractive indices and compared to sensors exclusively based on porous silicon or gold nanoparticles. A thorough analysis of resulting shifts of the different optical signals in the reflectance spectra on the wavelength scale indicated that the optical response of the porous silicon sensor is not influenced by the presence of a gold nanostructure on top. Moreover, the adsorption of thiol-terminated polystyrene to the sensor surface was solely detected by changes in the position of the dip in the reflectance spectrum, which is assigned to localized surface plasmon resonance in the gold nanoparticles. The interference pattern resulting from the porous silicon layer is not shifted to longer wavelengths by the adsorption indicating the independence of the optical response of the two nanostructures, namely porous silicon and gold nanoparticles, to refractive index changes and pointing to the successful realization of two sensors in one spot.
机译:制造并提供了两种光信号转导方法的由覆盖有金纳米颗粒的多孔硅单层组成的传感器,并对其传感性能进行了全面表征。为此目的,对硅衬底进行电化学蚀刻以获得多孔硅单层,随后将其浸入金盐溶液中,以促进在多孔硅顶部上形成多孔金纳米颗粒层。通过反射光谱法监测沉积过程,并且观察到多孔硅层的干涉图案中的凹陷的出现。该倾角可归因于沉积的金纳米颗粒对光的吸收,从而导致局部表面等离子体共振。这些传感器的整体灵敏度是通过在具有不同折射率的介质中记录反射光谱来确定的,并与仅基于多孔硅或金纳米粒子的传感器进行比较。在波长尺度上对反射光谱中不同光信号的最终位移进行的彻底分析表明,多孔硅传感器的光学响应不受顶部金纳米结构的影响。此外,硫醇封端的聚苯乙烯在传感器表面的吸附仅通过反射光谱中凹陷位置的变化来检测,这与金纳米颗粒中的局部表面等离子体共振相关。多孔硅层产生的干涉图样不会因吸附而移至更长的波长,这表明两种纳米结构(即多孔硅和金纳米颗粒)对折射率变化的光学响应具有独立性,并指出成功实现了两种传感器一处

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