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1.
将1mg多壁碳纳米管(MWCNT's)分散在5mL的0.5g·L~(-1)壳聚糖溶液中后,滴涂在铂电极表面,制得多壁碳纳米管修饰电极。将上述修饰电极在辣根过氧化物酶(HRP)溶液中浸泡8h,在MWCNT's修饰电极表面静电吸附辣根过氧化物酶,制成过氧化氢生物传感器,用于过氧化氢的测定。试验结果表明:在pH 6.0的磷酸盐缓冲溶液中,HRP/MWCNT's修饰电极对过氧化氢具有明显的电催化还原作用,过氧化氢的浓度在3.5×10~(-5)~9.0×10~(-3)mol·L~(-1)范围内与其还原峰电流呈线性关系,检出限(3S/N)为2.4×10~(-5)mol·L~(-1)。用标准加入法作回收试验,回收率在96.0%~101.8%之间。  相似文献   

2.
A new type of amperometric hydrogen peroxide biosensor was constructed based on horseradish peroxidase (HRP) immobilized on Fe3O4/chitosan modified glassy carbon electrode. The effects of some experimental variables such as the concentration of supporting electrolyte, pH, enzyme loading, the concentration of the mediator of methylene blue (MB) and the applied potential were investigated. The linear range of the calibration curve for H2O2 was 2.0×10?4–1.2×10?2 M with a detection limit of 1.0×10?4 M (S/N=3). The response time was less than 12 s. The apparent Michaelis‐Menten constant Km was 21.4 mM and it illustrated the excellent biological activity of the fixed enzyme. In addition, the biosensor had long‐time stability and good reproducibility. And this method has been used to determine H2O2 concentration in the real sample.  相似文献   

3.
基于硫堇/碳纳米管修饰金电极的过氧化氢生物传感器   总被引:1,自引:0,他引:1  
制备了以硫堇(TH)、纳米金(Nano-Au)及多壁碳纳米管(MWNT)修饰的H2O2生物传感器.探讨了工作电位、温度、pH对电极响应的影响,考察了电极的重现性、抗干扰能力及使用寿命.该传感器具有线性范围宽、检出限低、灵敏度高、稳定性好和抗干扰能力强等特点.其线性范围为7.0×10-7~4.0×10-3 mol/L;检出限为2.3×10-7 mol/L;灵敏度为0.13 A/(mol L-1 cm2);达到稳定电流所用时间《9 s.米氏常数为0.62 mmol/L,表明所固定的酶具有较高的生物活性.  相似文献   

4.
A novel hydrogen peroxide (H2O2) biosensor was developed by immobilizing hemoglobin on the gold colloid modified electrochemical pretreated glassy carbon electrode (PGCE) via the bridging of an ethylenediamine monolayer. This biosensor was characterized by UV-vis reflection spectroscopy (UV-vis), electrochemical impendence spectroscopy (EIS) and cyclic voltammetry (CV). The immobilized Hb exhibited excellent electrocatalytic activity for hydrogen peroxide. The Michaelis–Menten constant (K m) was 3.6 mM. The currents were proportional to the H2O2 concentration from 2.6 × 10−7 to 7.0 × 10−3 M, and the detection limit was as low as 1.0 × 10−7 M (S/N = 3).  相似文献   

5.
A novel, simple and versatile protocol for covalent immobilization of horseradish peroxidase (HRP) on screen‐printed carbon electrode (SPCE) based on the combination of diazonium salt electrografting and click chemistry has been successfully developed. The ethynyl‐terminated monolayers are obtained by diazonium salt electrografting, then, in the presence of copper (I) catalyst, the ethynyl modified surfaces reacted efficiently and rapidly with horseradish peroxidase bearing an azide function (azido‐HRP), thus forming a covalent 1,2,3‐triazole linkage by means of click chemistry. All the experimental results suggested that HRP was immobilized onto the electrode surface successfully without denaturation. Furthermore, the immobilized HRP showed a fast electrocatalytic reduction for H2O2. A linear range from 5.0 to 50.0 µM in a phosphate buffer (pH 5.5) with detection limit of 0.50 µM and sensitivity of 0.23 nA/µM were obtained. The heterogeneous electron transfer rate constant Kct was 1.52±0.22 s?1 and the apparent Michaelis? Menten constant was calculated to be 0.028 mM. The HRP‐functionalized electrode demonstrated a good reproducibility and long‐term stability.  相似文献   

6.
基于碳纳米管(CNTs)和硫堇(Th)的协同效应,将辣根过氧化物酶(HRP)通过戊二醛(GA)交联作用固定在硫堇(Th)/CNTs修饰电极上,构造了一种新型酶电极(HRP/GA-Th/CNTs/GC)。CNTs静电吸附正电荷的Th,而Th不仅可以促进电极和酶的氧化还原活性中心之间的电子传递,而且能使CNTs氨基(—NH2)功能化,从而利于HRP的固定。基于HRP/GA-Th/CNTs/GC电极的过氧化氢传感器具有较好的传感性能,且检出限低(0.3μmol.L-1)、响应时间短(5 s内)、抗干扰能力强。  相似文献   

7.
A new convenient strategy to fabricate a third‐generation hydrogen peroxide biosensor was described. The screen‐printed carbon electrode (SPCE) was first modified with a layer of 4‐nitrophenyl assembled from the 4‐nitroaniline diazonium salt synthesized in situ in acidic aqueous solution. Next, the nitro groups were converted to amines followed by crosslinking to the horseradish peroxidase (HRP) by glutaraldehyde. The redox chemistry of the active center of the HRP was observed and the HRP‐modified electrode displayed electrocatalytic activity towards the reduction of hydrogen peroxide (H2O2) without any mediators. H2O2 was determined in a linear range from 5.0 μM to 50.0 μM, with a detection limit of 1.0 μM. Furthermore, the biosensor exhibited fast amperometric response, good reproducibility and long‐term stability.  相似文献   

8.
《Analytical letters》2012,45(13):2019-2030
We herein report an electrochemical hydrogen peroxide sensor based on horseradish peroxidase immobilized in organically modified sol-gel glass (ormosil) with mediator ferricyanide along with multiwalled carbon nanotubes (mwcnts). The ormosil material is converted to fine powder followed by incorporation within graphite paste electrode. The electrochemistry of redox materials encapsulated within ormosil has been studied. The requirement of mwcnts is examined. The ormosil prepared with optimum concentration of mwcnts shows better redox electrochemistry as compared to that made without mwcnts. The biosensor has been characterized by cyclic voltammetry and chroanoamperometry. The performance, stability, and reproducibility of a new peroxide biosensor are reported.  相似文献   

9.
王树青  陈峻  林祥钦 《中国化学》2004,22(4):360-364
IntroductionAmperometricbiosensorofhydrogenperoxideisofpracticalimportancebecauseofitswideapplicationsinchemical,biological,clinical,environmentalandmanyotherfields.Forimprovementofsensor抯quality,vari-ouskindsofchemicalmodificationmethodshavebeendevelopedforreducingredoxoverpotentialsofH2O2atelectrodesurfaces,increasingthedetectionsensitivity,linearrange,stabilityandlivetime.Ithasbeenshownthattheuseofsub-micrometersizedmetalparticlessuchasPt-blackcansignificantlyimprovethequalityofthebiosens…  相似文献   

10.
A novel method to fabricate a third‐generation hydrogen peroxide biosensor was reported. The electrode was first derivatized by electrochemical reduction of in situ generated 4‐carboxyphenyl diazonium salt (4‐CPDS) in acidic aqueous solution yielded stable 4‐carboxyphenyl (4‐CP) layer. The horseradish peroxidase (HRP) enzyme was then covalently immobilized by amidation between NH2 terminus of enzyme and COOH terminus of 4‐CP film making use of the carbodiimide chemistry. Electrodeposition conditions used to control electrode functionalization density and film electron transfer kinetics were assessed by chronoamperometry and electrochemical impedance spectroscopy. The immobilized HRP displayed excellent electrocatalytic activity towards the reduction of hydrogen peroxide (H2O2) without any mediators. The effect of various operational parameters was explored for optimum analytical performance. The reported biosensor exhibited fast amperometric response (within 5 s) to H2O2. The detection limit of the biosensor was 5 μM, and linear range was from 20 μM to 20 mM. Furthermore, the biosensor exhibited high sensitivity, good reproducibility, and long‐term stability.  相似文献   

11.
以玻碳电极为工作电极,研究了邻苯二胺(OPD)为底物伏安法检测辣根过氧化物酶(HRP)及其标记物的方法。HRP能够催化H_2O_2氧化OPD,其反应产物在玻碳电极上于-0.42V(vs.Ag/Agcl)左右产生一个灵敏的还原峰,峰电流随着HRP浓度的增大而增大,借助此还原电流可以测定HRP,并进而可用于以HRP为标记物的电化学酶免疫分析。用方波伏安法对酶催化反应条件和酶催化反应产物的测定条件进行了详细的研究,在最佳条件下测定游离HRP的线性范围是1.0×10~(-10)~4.0×10~(-9)g/mL,检出限为8.5×10~(-11)g/mL;对游离的酶标记物(IgG-HRP)的测定最大稀释比为1:2000000。  相似文献   

12.
明胶固定辣根过氧化物酶制备H_2O_2传感器   总被引:2,自引:0,他引:2  
屈建莹  陈文静 《化学学报》2010,68(3):257-262
用明胶将辣根过氧化物酶(HRP)固定于多壁碳纳米管(MWNT)和茜素红(AR)修饰的玻碳(GC)电极上,制成HRP生物传感器(HRP/AR/MWNT/GC),然后在3%戊二醛(GA)中进行交联改性,以克服明胶膜易溶胀的缺点,并提高膜的稳定性.同时详细探讨了该传感器对H2O2的响应性能,并优化了实验条件.结果表明,该传感器对H2O2的线性响应范围为5.0×10-6~1.0×10-3mol/L,线性相关系数为0.9932,检出限为1.0×10-7mol/L,且放于4℃环境30d后,峰电流值约为原来的72.1%.该传感器响应快速,灵敏度高,且具有良好的重现性、稳定性及较长的使用寿命,具有潜在的应用价值.  相似文献   

13.
Conducting polymers, because of bearing many attractive features, for example, shuttling electrons between the electrode surface and the entrapped reagents (enzymes, mediators, etc.) while preventing interference and electrode fouling, have been proposed as enzyme supports for electrochemical biosensors1-4. Polypyrrole, owing to its popularity to water solubility and the mild conditions used for electropolymerization, has been the most widely used monomer to entrap enzymes5-8. The sol-gel prog…  相似文献   

14.
A cationic quinine‐imide dye brilliant cresyl blue (BCB) and horseradish peroxidase (HRP) were co‐immobilized within ormosil on multiwalled carbon nanotubes modified glassy carbon electrode for the fabrication of highly sensitive and selective hydrogen peroxide biosensor. The presence of epoxy group in ormosil as organic moiety improves the mechanical strength and transparency of the film and amino group provides biocompatible microenvironment for the immobilization of enzyme. The presence of MWCNTs improved the conductivity of the nanocomposite film. The surface characterization of MWCNT modified ormosil nanocomposite film was performed with scanning electron microscopy (SEM) and atomic force microscopy (AFM). Cyclic voltammetry and amperometry measurements were used to study and optimize the performance of the resulting peroxide biosensor. The apparent Michaelis–Menten constant was determined to be 1.5 mM. The proposed H2O2 biosensor exhibited wide linear range from 3×10?7 to 1×10?4 M, and low detection limit 1×10?7 M (S/N=3) with fast response time <5 s. The probable interferences in bio‐matrix were selected to test the selectivity and no significant response was observed in the biosensor. This biosensor possessed good analytical performance and long term storage stability.  相似文献   

15.
A new third‐generation biosensor for H2O2 assay was developed on the basis of the immobilization of horseradish peroxidase (HRP) in a nanocomposite film of carbon nanotubes (CNTs)‐SBA‐15 modified gold electrode. The biological activity of HRP immobilizing in the composite film was characterized by UV‐vis spectra. The HRP immobilized in the nanocomposite matrix displayed excellent electrocatalytic activity to the reduction of H2O2. The effects of the experimental variables such as solution pH and working potential were investigated using steady‐state amperometry. Under the optimal conditions, the resulting biosensor showed a linear range from 1 µM to 7 mM and a detection limit of 0.5 µM (S/N=3). Moreover, the stability and reproducibility of this biosensor were evaluated with satisfactory results.  相似文献   

16.
基于等离子体聚合膜固定酶的H2O2生物传感器   总被引:3,自引:0,他引:3  
以玻碳电极为基础电极,用微波等离子体技术聚合沉积聚乙二胺等离子体膜,使之形成带氨基功能团的表面,再通过戊二醛交联共价固定辣根过氧化物酶,制得H2O2生物传感器.探讨了等离子体聚合膜的形成条件(如放电功率、单体流速、单体气压和聚合时间),讨论了工作电位、介体浓度和pH值对传感器响应的影响.此外,用红外光谱对等离子体聚合膜进行了表征.该传感器在5×10-7~1.1×10-3mol/LH2O2浓度范围内有线性响应,最低检测限为0.3μmol/L.将此传感器用于实际试样回收率的测定,结果良好.  相似文献   

17.
将金纳米棒(AuNRs)和辣根过氧化物酶(HRP)以自组装的方式依次修饰到Au电极表面,构建了响应过氧化苯甲酰(BPO)生物传感器。采用循环伏安法和电流时间法研究了传感器的电化学性质和最佳工作条件;由于HRP/AuNRs复合膜的协同效应,电极性能得到显著改善。在最佳工作条件下(工作电压-0.02V,pH 7的磷酸盐缓冲体系),BPO浓度在5.0×10-6~1.0×10-4 mol/L范围内与电极的电流响应值呈良好的线性关系,线性回归方程为:i(μA)=12.6796C(mmol/L)+0.2406,R=0.9993。电极的检出限为8.5×10-7 mol/L。电极用于面粉中BPO的测定,平行测定6次,平均回收率为97.9%~100.1%,相对标准偏差(RSD)为0.5%~2.1%。本方法用于商品面粉中的BPO测定,取得满意结果。  相似文献   

18.
通过将碳纳米管及二氧化钛复合材料(CNT-TiO2)修饰于金电极表面,并借其对辣根过氧化物酶的静电吸附和对羧酸基的高反应特性,使辣根过氧化物酶(HRP)固定在CNT-TiO2表面,制成了辣根过氧化物酶生物传感器(HRP-CNT-TiO2)。对此修饰电极在磷酸盐缓冲介质(pH7.2)中的电催化性质及其电催化反应的最佳条件作了研究。试验结果表明,此电极对过氧化氢有很好的电催化特性,且发现当过氧化氢的浓度在4.2×10-7~3.2×10-4mol.L-1之间与ΔI之间呈线性关系,检出限(S/N=3)为7.2×10-8mol.L-1。为试验方法的精密度,对过氧化氢的浓度水平为5×10-5mol.L-1的条件下进行了8次测定,结果的RSD值为4.5%。  相似文献   

19.
20.
《Electroanalysis》2004,16(9):736-740
A new enzyme‐based amperometric biosensor for hydrogen peroxide was developed relying on the efficient immobilization of horseradish peroxidase (HRP) to a nano‐scaled particulate gold (nano‐Au) film modified glassy carbon electrode (GC). The nano‐Au film was obtained by a chitosan film which was first formed on the surface of GC. The high affinity of chitosan for nano‐Au associated with its amino groups resulted in the formation of nano‐Au film on the surface of GC. The film formed served as an intermediator to retain high efficient and stable immobilization of the enzyme. H2O2 was detected using hydroquinone as an electron mediator to transfer electrons between the electrode and HRP. The HRP immobilized on nano‐Au film maintained excellent electrocatalytical activity to the reduction of H2O2. The experimental parameters such as the operating potential of the working electrode, mediator concentration and pH of background electrolyte were optimized for best analytical performance of amperometry. The linear range of detection for H2O2 is from 6.1×10?6 to 1.8×10?3 mol L?1 with a detection limit of 6.1 μmol L?1 based on signal/noise=3. The proposed HRP enzyme sensor has the features of high sensitivity (0.25 Almol?1cm?2), fast response time (t90%≤10 s) and a long‐term stability (>1 month). As an extension, glucose oxidase (GOD) was chemically bound to HRP‐modified electrode. A GOD/HRP bienzyme‐modified electrode formed in this way can be applied to the determination of glucose with satisfactory performance.  相似文献   

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