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Urea Amperometric Biosensors Based on Nanostructured Polypyrrole and Poly Ortho-Phenylenediamine
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作者 Svetla Ivanova Yavor Ivanov Tzonka Godjevargova 《Open Journal of Applied Biosensor》 2013年第1期12-19,共8页
Urea Amperometric biosensor was obtained on the base of nanostructured polypyrrole (PPy) and poly ortho- phenylenediamine (POPDA). The optimal conditions for monomer electropolymerization were determined. The effect o... Urea Amperometric biosensor was obtained on the base of nanostructured polypyrrole (PPy) and poly ortho- phenylenediamine (POPDA). The optimal conditions for monomer electropolymerization were determined. The effect of supporting electrolyte and number of deposition cycles on the OPDA and Py electropolymerization were studied. It was proved that POPDA and PPy were affected by pH changes and responded to the ammonium, product of urease catalyzed reaction. SEM images of the modified Pt/PPy electrode were presented. The cycle voltammograms and chrono amperometric curves of Pt/POPDA/urease and Pt/PPy/urease electrodes were studied. A good linear relationship was observed for Pt/POPDA/urease electrode in a concentration range from 6.7 to 54 mMurea. For Pt/PPy/urease electrode the linear relation in the range from 0.02 to0.16 mMurea was determined. The entrapped carbon nanotubes (CNT) in PPy film and the bipolymer layers were prepared for construction of Pt/PPy/CNT/urease, Pt/POPDA/PPy/urease and Pt/PPy/POPDA/urease biosensors. Obviously, the addition of POPDA to the composition of the two biosensors (Pt/PPy/POPDA/urease and Pt/POPDA/PPy/urease) reduced their sensitivity to urea. Pt/РPy/CNT/urease and Pt/РPy/ urease biosensors were 173 and 138 times more sensitive to urea than biosensor without PPy (Pt/POPDA/urease biosensor). It was found, that the performance of Pt/PPy/CNT/urease electrode was the best from the five obtained biosensors: linear range of urea concentrations—from 0.02 to0.16 mM;sensitivity—15.22 μA/mM and detection limit— 0.005 mM urea. 展开更多
关键词 biosensor urea urease Electrodeposition polypyrrole POLY Ortho-Phenylenediamine Carbon Nanotubes
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聚吡咯为基质的脲酶传感器生物电化学响应 被引量:11
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作者 程发良 莫金垣 戴晓云 《高分子学报》 SCIE CAS CSCD 北大核心 1999年第4期417-421,共5页
用电化学方法在吡咯(Py)聚合的同时,将脲酶掺杂进聚吡咯膜(PPy)中形成以聚吡咯为基质的脲酶电极.将脲酶电极与CO2气敏电极结合,组成对脲有电位响应的脲酶生物传感器.测试了传感器对脲的生物电化学响应.研究了聚合条件... 用电化学方法在吡咯(Py)聚合的同时,将脲酶掺杂进聚吡咯膜(PPy)中形成以聚吡咯为基质的脲酶电极.将脲酶电极与CO2气敏电极结合,组成对脲有电位响应的脲酶生物传感器.测试了传感器对脲的生物电化学响应.研究了聚合条件对酶活性的影响,并测定了掺杂于聚吡咯中的脲酶的活化能等动力学参数.在50×10-5~1.0×10-2mol/L的浓度范围内,传感器响应的电极电位与脲浓度的对数成正比. 展开更多
关键词 聚吡咯 酶电极 传感器 气敏电极 脲酶电极
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基于等离子体修饰的PVC膜脲酶传感器
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作者 吴朝阳 石清丽 +2 位作者 倪文山 沈国励 俞汝勤 《传感技术学报》 CAS CSCD 北大核心 2006年第4期933-936,共4页
报道了一种基于等离子体修饰的PVC膜脲酶生物传感器。应用微波等离子体化学气相沉积技术,在pH敏感PVC膜上修饰一层带有氨基的乙二胺等离子体聚合物薄层,通过戊二醛共价交联固定脲酶分子,制成脲酶传感器。这种乙二胺等离子体聚合物薄... 报道了一种基于等离子体修饰的PVC膜脲酶生物传感器。应用微波等离子体化学气相沉积技术,在pH敏感PVC膜上修饰一层带有氨基的乙二胺等离子体聚合物薄层,通过戊二醛共价交联固定脲酶分子,制成脲酶传感器。这种乙二胺等离子体聚合物薄层对pH敏感膜的响应特性影响小,且其表面氨基使得pH敏感膜更加易于与H^+结合,检测范围向高pH方向偏移,响应斜率为45.73mV/pH,比未修饰的pH敏感膜电极的响应斜率42.81mV/pH有所提高。该脲酶传感器对尿素显示了良好的传感性能,其响应时间约为200s;在6.0×10^-4~8.4×10^-3mol/L范围,脲酶传感器的电位响应值与尿素浓度的对数存在良好的线性关系,相关系数为0.9978,检测下限为5.0×10^-5mol/L。 展开更多
关键词 等离子体修饰 脲酶传感器 尿素
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