Abstract Xanthine oxidase functionalized Ta<ce:inf loc='post'>2</ce:inf>O<ce:inf loc='post'>5</ce:inf> nanostructures as a novel scaffold for highly sensitive SPR based fiber optic xanthine sensor
首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Xanthine oxidase functionalized Ta2O5 nanostructures as a novel scaffold for highly sensitive SPR based fiber optic xanthine sensor
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Xanthine oxidase functionalized Ta2O5 nanostructures as a novel scaffold for highly sensitive SPR based fiber optic xanthine sensor

机译:黄嘌呤氧化酶官能化TA 2 O 5 纳米结构作为一种用于高灵敏度SPR基的纤维的新型支架 光学黄嘌呤传感器

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Abstract Fabrication and characterization of a surface plasmon resonance based fiber optic xanthine sensor using entrapment of xanthine oxidase (XO) enzyme in several nanostructures of tantalum (v) oxide (Ta2O5) have been reported. Chemical route was adopted for synthesizing Ta2O5 nanoparticles, nanorods, nanotubes and nanowires while Ta2O5 nanofibers were prepared by electrospinning technique. The synthesized Ta2O5 nanostructures were characterized by photoluminescence, scanning electron microscopy, UV–Visible spectra and X-ray diffraction pattern. The probes were fabricated by coating an unclad core of the fiber with silver layer followed by the deposition of XO entrapped Ta2O5 nanostructures. The crux of sensing mechanism relies on the modification of dielectric function of sensing layer upon exposure to xanthine solution of diverse concentrations, reflected in terms of shift in resonance wavelength. The sensing probe coated with XO entrapped Ta2O5 nanofibers has been turned out to possess maximum sensitivity amongst the synthesized nanostructures. The probe was optimized in terms of pH of the sample and the concentration of XO entrapped in Ta2O5 nanofibers. The optimized sensing probe possesses a remarkably good sensitivity of 26.2nm/μM in addition t
机译:<![cdata [ 抽象 使用钽钽瘤(v)中的三嘌呤氧化酶(XO)酶的表面等离子体共振基的光纤黄嘌呤传感器的制造与表征氧化物(TA 2 O 5 )。用化学途径合成TA 2 O 5 纳米粒子,纳米棒,纳米管和纳米线TA 2 O 5 通过静电纺丝技术制备纳米纤维。合成的TA 2 O 5 纳米结构,其特征在于光致发光,扫描电子显微镜,UV-可见光谱和X射线衍射图案。通过用银层涂覆纤维的未覆盖纤维的缺陷核,然后沉积XO陷阱Ta 2 O 5 纳米结构。感测机构的关键依赖于在暴露于多种浓度的黄嘌呤溶液时对感测层的介电学函数的改变,反映在谐振波长的变化方面。涂有XO捕获的传感探针 2 o 5 纳米纤维已被证明合成纳米结构之间的最大敏感性。探针在样品的pH值下进行了优化,XO的浓度在TA 2 O 5 纳米纤维。优化的传感探针具有26.2 nm / mm的显着良好敏感性。

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