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首页> 外文期刊>Bioelectrochemistry >Hemoglobin/colloidal silver nanoparticles immobilized in titania sol-gel film on glassy carbon electrode: Direct electrochemistry and electrocatalysis
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Hemoglobin/colloidal silver nanoparticles immobilized in titania sol-gel film on glassy carbon electrode: Direct electrochemistry and electrocatalysis

机译:血红蛋白/胶体银纳米颗粒固定在玻碳电极上的二氧化钛溶胶-凝胶膜中:直接电化学和电催化

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By vapor deposition method, both hemoglobin (Hb) and colloidal silver nanoparticles (CSNs) were entrapped in a titama sol-gel matrix on the surface of a glassy carbon electrode (GCE). CSNs could greatly enhance the electron transfer reactivity of Hb and its catalytic ability toward nitrite. Direct fast electron transfer between Hb and the GCE was achieved, and a pair of well-defined, quasi-reversible redox peaks was observed. The anodic and cathodic peak potentials are located at -0.298 V and -0.364 V (vs. Ag/ACl), respectively. The dependence of the formal potential on solution pH indicated that the direct electron transfer reaction of Hb was a one-electron transfer coupled with a one-proton transfer reaction process. Meanwhile, the catalytic ability of Hb toward the reduction of NO2- was also studied. Accordingly, a NO2- biosensor was prepared, with a linear range from 0.2 mM to 6.0 mM and a detection limit of 34.0 mu M. The apparent Michaelis-Menten constant was calculated to be 7.48 mM. Moreover, the biosensor had good long-term stability. (c) 2005 Elsevier B.V All rights reserved.
机译:通过气相沉积法,血红蛋白(Hb)和胶体银纳米颗粒(CSN)均被捕获在玻璃碳电极(GCE)表面的钛溶胶凝胶基质中。 CSNs可以大大提高Hb的电子转移反应性及其对亚硝酸盐的催化能力。实现了Hb和GCE之间的直接快速电子转移,并观察到一对明确定义的准可逆氧化还原峰。阳极和阴极峰值电势分别位于-0.298 V和-0.364 V(相对于Ag / ACl)。形式电位对溶液pH的依赖性表明,Hb的直接电子转移反应是单电子转移和单质子转移反应过程。同时,还研究了Hb对NO2-还原的催化能力。因此,制备了NO 2-生物传感器,其线性范围为0.2mM至6.0mM,检测极限为34.0μM。经计算,表观Michaelis-Menten常数为7.48mM。此外,该生物传感器具有良好的长期稳定性。 (c)2005 Elsevier B.V保留所有权利。

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