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首页> 外文期刊>Sensors and Actuators. B, Chemical >Fabrication of TiO_2/γ-CD films for nitro aromatic compounds and its sensing application via cyclic surface-polarization impedance (cSPI) spectroscopy
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Fabrication of TiO_2/γ-CD films for nitro aromatic compounds and its sensing application via cyclic surface-polarization impedance (cSPI) spectroscopy

机译:用于硝基芳族化合物的TiO_2 /γ-CD膜的制备及其通过循环表面极化阻抗(cSPI)光谱的传感应用

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In order to achieve high sensitive and selective detection for nitro aromatic compounds related with landmines, γ-cyclodextrin (γ-CD) hosts were introduced onto the TiO_2 ultrathin layer. The surface of the Pt electrode was modified with ultrathin TiO_2 gel film immobilized with γ-CD molecular hosts through the surface sol-gel process. The surface modification of the electrode was confirmed by QCM (9 MHz) and X-ray photoelectron spectra (XPS) experiments. As a result, an alternate assembly film of Ti(O-~nBu)4 and γ-CD prepared on the gold coated QCM as a substrate showed linearly growth, and judging from the large carbon and oxygen ratios of XPS spectra in the TiO_2/γCD film of the Pt electrode surface, it was confirmed that γ-CD hosts must be adsorbed onto the TiO_2 ultrathin layers. Furthermore, the resulting γ-CD-immobilized TiO_2/γ-CD ultrathin films for the high sensitive detection of nitro aromatic compounds were examined by cyclic surface-polarization impedance (cSPI) spectroscopy which is a newly developed chemical sensor measuring electrochemical impedance change due to constant phase element (CPE) behavior on the electrode surface under controlled electrode potential. Consequently the resulting TiO_2/γ-CD films showed specific and sensitive detection for 2,4-dinitrotoluene (2,4-DNT) among the examined guest molecules. Moreover, a high impedance response value for 2,4-DNT compared to structurally related other molecules was achieved by the specific host-guest interaction, estimated to be 1.6-3.4 times larger at the concentration of 2 x 10~(-8) M.
机译:为了实现对与地雷有关的硝基芳族化合物的高灵敏度和选择性检测,将γ-环糊精(γ-CD)基质引入到TiO_2超薄层中。通过表面溶胶-凝胶工艺,用固定有γ-CD分子主体的超薄TiO_2凝胶膜对Pt电极的表面进行改性。通过QCM(9 MHz)和X射线光电子能谱(XPS)实验确认了电极的表面改性。结果,在涂覆有金的QCM上作为基底制备的Ti(O-〜nBu)4和γ-CD的交替组装膜显示出线性生长,并且从TiO_2 /中XPS光谱的大碳氧比判断在Pt电极表面的γCD膜上,已确认必须将γ-CD主体吸附到TiO_2超薄层上。此外,通过循环表面极化阻抗(cSPI)光谱检查了所得的用于高灵敏度检测硝基芳族化合物的固定化γ-CD的TiO_2 /γ-CD超薄膜,这是一种新开发的化学传感器,可测量由于在受控电极电位下电极表面上的恒定相元素(CPE)行为。因此,所得的TiO_2 /γ-CD膜对所检查的客体分子中的2,4-二硝基甲苯(2,4-DNT)表现出了特异性和灵敏的检测。此外,通过特定的宿主-客体相互作用,与结构相关的其他分子相比,获得了2,4-DNT的高阻抗响应值,在2 x 10〜(-8)M的浓度下估计为1.6-3.4倍。

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