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1.
《Electroanalysis》2006,18(24):2435-2440
Several hydroximethylfurfural (HMF) microbiosensors, based on a microelectrode configuration built by photolithographic techniques, have been developed. Two different biosensors based on the aldehyde dehydrogenase (ALDH) enzyme coupling with NADH oxidase (NOD) or diaphorase (Diaph) are described. Experimental variables were optimized using experimental design methodology, by central composite designs, taking the intensity registered for a given HMF solution as response. Given the reproducibility (residual standard deviation (RSD), 7.20%), repeatability (RSD=3%) and limit of detection (LOD)=1.68×10?4 mol dm?3 (α=β=0.05 and a replicate) reached by the ALDH‐Diaph microbiosensor under the optimum conditions, the analysis of HMF in honey was successfully accomplished.  相似文献   
2.
茄子组织生物微电极在儿茶酚测定中表现出了较高的生物催化活性,而对抗坏血酸测定则为稳态响应,这表明该电极能有效地消除抗坏血酸的干扰。该电极的灵敏度高,重现性好,对多巴胺测定的线性范围为5.8×10~(-6)~6.5×10~(-4)mol/L,检出下限为:2.9×10~(-6)mol/L。  相似文献   
3.
一种新的乙酰胆碱酶电极的研究   总被引:5,自引:0,他引:5  
本文制备了一种以溶剂聚合膜PH电极作原电极,经高碘酸钠活化的醋酸纤维膜固定乙酰胆碱酯酶的乙酰胆碱生物电极。研究了酶固定化条件的影响,测得静态和动力学条件下的线性中响应范围分别为240-1300μg/mL和300-1700μg/mL将电极用于实际样品的回收率试验中,获得了满意的结果。  相似文献   
4.
《Electroanalysis》2006,18(5):465-470
Nickel and platinum find extensive use in preparation of biosensors. In the present work, Ni/Pt alloy was plated on graphite to make acetylcholine sensor. The microstructure, surface composition and electrochemical performance of the electrode was analyzed by different techniques. The sensing performance was evaluated by cyclic voltammetry. The prepared alloy plate exhibited very good linear relationship between acetyl choline concentration and response current. The sensitivity and reproducibility of the prepared electrode were found better than other nickel electrodes reported.  相似文献   
5.
IntroductionDirectelectrochemistryofenzymeshasarousedincreasinginterestofmanyresearchersasitisapreferablewayforproducingarealreagent1essbiosensor.Glucoseoxidase(GOD),beingaflavoprotein,iswell-knownduetoitswidespreaduseinthebiosensors'Recently,agreatnumberofpeoplehaveat-temptedtoachievedirectelectrontransferbetweenGODandvariouselec-trodes[l-19].Szucselal.determinedtheshapeandsizeoftheGODmoleculead-sorbedonagoldelectrodebyel1ipsometry['jandexamineddirectelectrontrans-ferbetweentheadsorbedenz…  相似文献   
6.
A flow-injection analysis (FIA) system coupled with an evanescent wave (EW) Biosensor employing total internal reflection of fluorescence radiation (TIRF) for the detection of polyaromatic hydrocarbon that intercalates into DNA is reported. A highly fluorescent intercalator, “ethidium bromide,” has been used as the reference compound for detection. The EW Biosensor was developed according to the procedure described earlier (1,2). Data on the analysis of Naphthalene, 3-methy cholanthrene, 7,12-dimethylbenz(a)anthracene, 1,2-benzanthracene, and some standard reference materials supplied by the National Institute of Standards and Technology are reported. The relative ability of the polyaromatic hydrocarbon to displace ethidium bromide, based on the relative binding ratio, is found to be on the order of 7,12-dimethylbenz[a]anthracene > 3-methylcholanthrene > 1,2-benzanthracene > napthalene.  相似文献   
7.
宋又群  沈国励 《分析化学》1992,20(2):186-189
将香焦组织与氧电极偶合,制成了草酸生物组织电极。在静态和流动条件下,测得电极的线性响应范围分别为8.8×10~(-5)~6.3×10~(-4)mol/L和5.0×10~(-5)~1.8×10~(-3)mol/L,二者的相关系数均为0.9998。研究了介质条件、pH、温度、流速、取样量和固定化等条件的影响。测定了电极的选择性和使用寿命等性能。计算了该实验条件下酶反应的米氏常数。采用静态法和流动注射法测得7份草酸标液的平均回收率分别为98.4%和98.9%。电极已用于一些食品中草酸的测定,所得结果与文献报道基本一致。  相似文献   
8.
The aim of this work was to investigate, for the first time, the potential of the enzyme glutathione S-transferase I (isoenzyme GST-I) for uses in analytical chemistry. A novel fiber-optic biosensor for the detection and determination of the triazine herbicide atrazine was developed based on maize GST-I expressed in E. coli. The sensing bioactive material was a three-layer mini-sandwich. The enzyme was immobilized on the outer layer that consisted of a hydrophilic polyvinylidenefluoride membrane. This membrane was supported on an inner glass disk by means of an intermediate binder sol–gel layer that incorporated bromcresol green (BCG). The biosensor operated in a static mode at 25 °C and the rate of the enzymatic reaction, using atrazine as a substrate, served as an analytical signal. A calibration curve was obtained for atrazine, with analytically useful concentration range 2.52–125 μM. The sensor detection limit was 0.84 μM. The reproducibility of atrazine sensing was in the order of ±3–5%. The method was successfully applied to the determination of this herbicide in real water samples, without sample preparation steps. Atrazine recovery ranged between 85 and 110%. No interference from other pesticides, such as alachlor and carbaryl was observed in the absence of atrazine. The immobilized enzyme retained about 75% of its original activity after 1 month use. Simply unscrewing the terminal holding ring of the probe and placing a new bioactive sandwich could easily replace a deteriorated mini-sandwich.  相似文献   
9.
A sensitive amperometric glucose biosensor based on platinum nanoparticles (PtNPs) combined aligned carbon nanotubes (ACNTs) electrode was investigated. PtNPs which can enhance the electrocatalytic activity of the electrode for electrooxidating hydrogen peroxide by enzymatic reaction were electrocrystallized on 4‐aminobenzene monolayer‐grafted ACNTs electrode by potential‐step method. These PtNPs combined ACNTs' (PtNPs/ACNTs) surfaces were characterized by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The highly dispersed PtNPs on ACNTs can be obtained. The enzyme electrode exhibits excellent response performance to glucose with linear range from 1×10?5–7×10?3 mol L?1 and fast response time within 5 s. Furthermore, this glucose biosensor also has good reproducibility. It is demonstrated that the PtNPs/ACNTs electrode with high electrocatalytic activity is a suitable basic electrode for preparing enzyme electrodes.  相似文献   
10.
The development of an amperometric biosensor for the determination of phenolic compounds is described, using quinoprotein glucose dehydrogenase. The enzyme is integrated into carbon paste and its ability to donate electrons to oxidized phenolic compounds during glucose oxidation is exploited. The sensor response is based on electrochemical oxidation of the phenolic compound followed by its enzymatic regeneration when the bulk solution contains glucose and the electrode is potentiostated at +500 mV (vs. Ag/AgCl/0.1 mol/L KCl). As the result of the catalytic analyte regeneration the electrodes offer very sensitive measurements of redox species like p-aminophenol and hydroquinone and catecholamines such as epinephrine, norepinephrine, and dopamine. The sensor performance is characterized for the different substrates. Highest sensitivity is achieved for p-aminophenol which could be determined at sub-nanomolar level.  相似文献   
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