首页> 外文会议>SPIE Conference on Biophotonics-Riga >TiO_2 Optical Sensor for Amino Acid Detection Alla Tereshchenko1, Roman Viter, Igor Konup, Volodymyr Ivanitsa, Sergey Geveliuk
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TiO_2 Optical Sensor for Amino Acid Detection Alla Tereshchenko1, Roman Viter, Igor Konup, Volodymyr Ivanitsa, Sergey Geveliuk

机译:TiO_2光学传感器用于氨基酸检测ALLA TERESHCHENKO1,ROMAN VITER,IGOR KONUP,Volodymyr Ivanitsa,Sergey Geveliuk

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A novel optical sensor based on TiO_2 nanoparticles for Valine detection has been developed. In the presented work, commercial TiO_2 nanoparticles (Sigma Aldrich, particle size 32 nm) were used as sensor templates. The sensitive layer was formed by a porphyrin coating on a TiO_2 nanostructured surface. As a result, an amorphous layer between the TiO_2 nanostructure and porphyrin was formed. Photoluminescence (PL) spectra were measured in the range of 370-900 nm before and after porphyrin application. Porphyrin adsorption led to a decrease of the main TiO_2 peak at 510 nm and the emergence of an additional peak of high intensity at 700 nm. Absorption spectra (optical density vs. wavelenght, measured from 300 to 1100 nm) showed IR shift Sorret band of prophiryn after deposition on metal oxide. Adsorption of amino acid quenched PL emission, related to porphyrin and increased the intensity of the TiO_2 emission. The interaction between the sensor surface and the amino acid leads to the formation of new complexes on the surface and results in a reduction of the optical activity of porphyrin. Sensitivity of the sensor to different concentrations of Valine was calculated. The developed sensor can determine the concentration of Valine in the range of 0.04 to 0.16 mg/ml.
机译:已经开发出基于TiO_2纳米颗粒的新型光学传感器已经开发出用于缬氨酸检测。在所呈现的工作中,使用商业TiO_2纳米颗粒(Sigma Aldrich,粒度32nm)作为传感器模板。敏感层通过TiO_2纳米结构表面上的卟啉涂层形成。结果,形成TiO_2纳米结构和卟啉之间的非晶层。在卟啉施用之前和之后测量光致发光(PL)光谱在370-900nm的范围内。卟啉吸附导致在510nm处的主要TiO_2峰值降低,并且在700nm处的高强度的额外峰值的出现。吸收光谱(光密度与wavelenght,从300测量至1100nm)上的金属氧化物沉积之后显示prophiryn的IR移Sorret频带。吸附氨基酸猝灭的PL发射,与卟啉相关,增加了TiO_2排放的强度。传感器表面和氨基酸之间的相互作用导致表面上的新络合物形成,并导致卟啉的光学活性降低。计算传感器对不同浓度的缬氨酸的敏感性。发达的传感器可以确定0.04至0.16mg / ml的缬氨酸浓度。

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