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Urea Sensing Characteristics of Titanate Nanotubes Deposited by Electrophoretic Deposition Method

机译:电泳沉积钛酸盐纳米管的尿素传感特性

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Urea sensing properties of titanate nanotubes (TNT) are presented here. TNT films were deposited by electrophoretic deposition (EPD) method on aluminum substrate. Prior to EPD, commercial nanoparticles of TiO_2 were hydrothermally treated at 70℃ for 48 h after sonicating the solution for 8 h. Hydrothermal method resulted in the conversion of particles to tubular structure following the established method. Urease was covalently attached with TNT (by soaking in urease solution for 3 h). In general, conductivity of film increases after urease immobilization. The urease immobilized films were characterized for urea sensing in the concentration range of 1 mM to 500 mM. Three different sensitivity regions are observed viz. (i) lower concentrations (below 10 mM); (ii) linear region up to 100 mM and a (iii) saturation region above 100 mM. Sensors are extremely sensitive in region (i). From the elemental analyses of the films after urease immobilization, urease was found attached with TiO_2, as evident by N 1s peak in the photoelectron spectra. Cyclic voltammetric studies indicated surface-confined redox couple is responsible for sensing behavior. A possible sensing mechanism is presented and discussed.
机译:本文介绍了钛酸酯纳米管(TNT)的尿素感测特性。通过电泳沉积(EPD)方法在铝基板上沉积TNT膜。在进行EPD之前,将溶液超声处理8小时后,将70℃的TiO_2商业纳米颗粒进行水热处理48 h。按照所建立的方法,水热法导致颗粒转化为管状结构。脲酶与TNT共价结合(通过在脲酶溶液中浸泡3小时)。通常,脲酶固定后膜的电导率增加。尿素酶固定化膜的特征在于浓度范围为1 mM至500 mM的尿素检测。观察到三个不同的灵敏度区域。 (i)较低的浓度(低于10 mM); (ii)高达100 mM的线性区域和(iii)100 mM以上的饱和区域。传感器在区域(i)中极为敏感。从脲酶固定化后的膜的元素分析中,发现脲酶附着在TiO_2上,这在光电子能谱中的N 1s峰很明显。循环伏安研究表明,表面受限的氧化还原对负责传感行为。提出并讨论了一种可能的传感机制。

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