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Enhancing sensing sensitivity for long period grating sensor with colloidal gold nanoparticles

机译:用胶体金纳米粒子增强长周期光栅传感器的感应灵敏度

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We propose a simple method to improve the spectral sensitivity and detection limit of long period grating sensor for chemical sensing, in which the grating surface is modified by colloidal gold nanoparticles. The transmission spectra and optical properties of gold nanospheres change with the different refractive index of the environment near the surface of gold nanospheres. The sensor response of gold colloids increases linearly with solvents of increasing refractive index. The results for the measurement of sucrose solutions showed that the slope of wavelength shifts increased from -18 (nm/RIU) to -24 (nm/RIU); while for changes of peak depth, its slope increased from 37 (dB/RIU) to 60 (dB/RIU). The accuracy of concentration measurement for salt water solution was increased from 0.6% to 0.2%, and limit of detection can be improved from 0.04 % to 0.02 %. When the colloidal gold surface was modified with a dimitrophenyl compound (DNP), results showed that the signal increase linearly with increasing concentration of the analyte, and the detection limit of the sensor for anti-DNP is 9.5x10~(-10) M.
机译:我们提出了一种简单的方法来改善用于化学感测的长周期光栅传感器的光谱灵敏度和检测极限,其中光栅表面被胶体金纳米颗粒改性。金纳米球的透射光谱和光学性质随着金纳米纳米表面附近的不同环境的折射率而变化。金胶体的传感器响应随着折射率的增加而线性增加。测量蔗糖溶液的结果表明,波长偏移的斜率从-18(Nm / Riu)增加到-24(Nm / Riu);虽然对于峰值深度的变化,其斜率从37(DB / RIU)增加到60(DB / RIU)。盐水溶液浓度测量的准确性从0.6%增加到0.2%,并且检测限度可以从0.04%提高至0.02%。当用二硝基苯基化合物(DNP)改性胶体金表面时,结果表明,信号随着分析物的浓度的增加而导致,抗DNP传感器的检测极限为9.5×10〜( - 10)米。

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