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1.
染料修饰电极加速氧化还原蛋白质的电化学反应   总被引:9,自引:0,他引:9  
陈挺  谢远武 《电化学》1995,1(2):125-135
评述了染料修饰电极加速氧化还原蛋白质的电子传递反应。讨论了染料修饰电极的修饰方法和性质。简述了伏安法、流动分析、光谱电化学法等几种不同研究方法的应用。提出了可逆电催化反应的机理,并将数值计算与实验结果进行比较、验证。引用了47篇文献。  相似文献   

2.
用氧化还原聚合物修饰多孔电极   总被引:1,自引:0,他引:1  
对3种类型Nafion/Os(bpy)3Cl2修饰电极的研究结果表明,单位表观电极面积上中继体载量比为:乙炔黑粉末微电极(A):Teflon粘结的乙炔黑膜电极(B):平面玻碳电极(C)=10^3:10^2:1.A比B及C更容易在真实表面上形成花天酒地而均匀的修饰层而有利于层内的电荷传递。在A类电极基础上制行的葡萄糖酶电极在10mmol/L葡萄糖溶液中的响应电流密度高达4.6×10^-^4A/cm^  相似文献   

3.
氯过氧化物酶在碳纳米管修饰电极上的直接电化学研究   总被引:1,自引:0,他引:1  
将氯过氧化物酶固定到单壁碳纳米管修饰玻碳电极,其循环伏安曲线出现一对准可逆氧化还原峰,说明碳纳米管能够很好地促进氯过氧化物酶在电极表面的直接电子传递.该过程与溶液pH值有关,可指认氯过氧化物酶在电极表面发生的是一电子一质子传递反应.该修饰电极制作简单,性能稳定,且对氧还原具有很好的电催化效应.  相似文献   

4.
氧化还原蛋白质电化学研究*   总被引:10,自引:0,他引:10  
刘慧宏  庞代文 《化学进展》2002,14(6):425-432
研究氧化还原蛋白质与电极之间的电子传递过程不仅为理解代谢过程提供有价值的信息,而且为制备生物传感器奠定基础。本文从蛋白质修饰电极、蛋白质在电极表面的定向固定及蛋白质人工改造三方面,评述了近年来氧化还原蛋白质电化学研究的进展,并提出了今后可能的研究方向。  相似文献   

5.
氧在直接耐晒翠蓝GL修饰电极上的催化还原   总被引:1,自引:0,他引:1  
有关过渡金属叶琳和酞蓄配合物对分子氧的电催化还原研究,近三十年来陆续不断地有大量的报导“-’‘.若这些配合物能取代或部分取代铂作为催化剂,将使燃料电池和空气电池的成本大为降低‘前人所使用的这类配合物大多为在实验室中合成的纯度高的试剂,有的价格也不低.而纺织工业中使用的酞育类染料其价格却低得多(后者价格仅为前者的几百分之一至千分之一).如果其中某些酞育类染料也具有和上述试剂一样的催化活性,那么人们就有可能获得催化性能好而又便宜的催化剂,这是很有实用意义的.本文用循环伏安法研究了用水溶性染料直接耐晒…  相似文献   

6.
制备了氧化石墨烯修饰玻碳电极,并运用循环伏安法对氧化石墨烯进行了直接的电化学还原,研究了L-色氨酸在该电化学还原的氧化石墨烯修饰玻碳电极上的电化学行为。结果表明,L-色氨酸在该修饰电极上其氧化峰电流与裸玻碳电极相比增大了7.1倍,且峰电位负移80mV。利用差分脉冲伏安法,在pH=6.5的磷酸盐缓冲溶液中测定L-色氨酸,氧化峰电流与其浓度在0.4~65.0μmol/L范围内呈良好的线性关系,相关系数为0.998,方法检出限为0.2μmol/L。  相似文献   

7.
研究了羟胺在碳纳米管修饰玻碳电极(CNT/GC)上的电化学行为。研究结果表明,碳纳米管对羟胺的电化学行为有良好的电催化作用,在-0.62 V有一还原峰,是羟胺获得2个电子还原为铵所形成,同时测定了该电化学过程的动力学参数:电子转移数n为2,电子转移系数α为0.287,电极反应速率常数k为1.35×10-3cm/s。  相似文献   

8.
碳纳米管修饰电极上葡萄糖氧化酶的直接电子转移   总被引:14,自引:0,他引:14       下载免费PDF全文
制备了碳纳米管修饰玻碳电极(CNT/GC), 利用吸附的方法将葡萄糖氧化酶(GOx)固定到CNT/GC电极表面, 形成GOx-CNT/GC电极.研究了GOx的直接电子转移, 实验结果表明, GOx在CNT/GC电极表面没有发生变性, 能进行有效和稳定的直接电子转移反应, 其循环伏安图上表现出一对很好的、几乎对称的氧化还原峰; 式量电位E0’几乎不随扫速(至少在10~140 mV·s−1的扫速范围内)而变化, 其平均值为−0.456±0.0008 V (vs. SCE); GOx在CNT/GC电极表面直接电子转移的速率常数为1.74±0.42 s−1, 比文献中报道的值大了数十倍; 进一步的实验结果显示, 固定在CNT/GC电极表面的GOx能保持其对葡萄糖氧化的生物电催化活性, 而且电催化活性很稳定. 文中制备碳纳米管修饰电极和固定酶的方法具有简单和易于操作等优点, 可用于获得其他生物氧化还原蛋白质和酶的直接电子转移.  相似文献   

9.
赵婧  朱小立  李根喜 《电化学》2012,18(2):97-107
蛋白质的翻译后修饰对于生命体执行正常的生理功能具有十分重要的作用,是蛋白质科学研究的重要内容.目前研究蛋白质修饰的方法主要有质谱法、亲和层析等,然而由于蛋白质修饰研究的复杂性,迫切需要发掘新的技术手段.电化学方法理论成熟、应用广泛,在生命科学许多领域发挥着越来越重要的作用.蛋白质的体外修饰必将导致蛋白质特定位点基团的变化,可以利用巧妙设计的电化学方法予以表征和分析,以期探明修饰对蛋白质结构和功能的影响.此外,又可以利用电化学定量分析的独特优势快速准确地测定蛋白质修饰中涉及的相关酶活.正因为如此,蛋白质体外修饰的电化学研究已引起越来越多的关注.本文以作者课题组近期研究工作为主,结合国内外同行的相关代表性工作,介绍电化学方法在蛋白质修饰方面的近期研究进展,并探讨了今后的发展方向和趋势.  相似文献   

10.
将氧化石墨烯(GO)在玻碳电极(GCE)表面进行直接电化学还原,再组装上纳米金-壳聚糖(AuNPCS)聚阳离子,形成了电化学还原氧化石墨烯/纳米金-壳聚糖(ERGO/AuNP-CS)复合膜修饰的玻碳电极。采用扫描电子显微镜(SEM)表征了不同修饰膜表面的形貌,探讨了其对尿酸(UA)分子的差分脉冲伏安(DPV)行为,发现ERGO/AuNP-CS复合膜对UA分子表现出显著的电催化氧化活性。在0.10 mol/L磷酸盐缓冲溶液(pH=6.5)中,扫速为100 mV/s时,此复合膜修饰电极的DPV响应与UA的浓度在0.05~110μmol/L范围内呈性关系,检测限为12.4 nmol/L(S/N=3)。此修饰电极具有良好的选择性、重现性和稳定性,可应用于人体血清和尿液样品中UA的测定,回收率达到93.8%~104.1%。结果与分光光度法和尿酸酶试剂盒法相符。  相似文献   

11.
《Electroanalysis》2004,16(8):627-632
The direct electrochemistry of catalase (Ct) was accomplished at a gold electrode modified with single‐wall carbon nanotubes (SWNTs). A pair of well‐defined redox peaks was obtained for Ct with the reduction peak potential at ?0.414 V and a peak potential separation of 32 mV at pH 5.9. Both reflectance FT‐IR spectra and the dependence of the reduction peak current on the scan rate revealed that Ct adsorbed onto the SWNT surfaces. The redox wave corresponds to the Fe(III)/Fe(II) redox center of the heme group of the Ct adsorbate. Compared to other types of carbonaceous electrode materials (e.g., graphite and carbon soot), the electron transfer rate of Ct redox reaction was greatly enhanced at the SWNT‐modified electrode. The peak current was found to increase linearly with the Ct concentration in the range of 8×10?6–8×10?5 M used for the electrode preparation and the peak potential was shown to be pH dependent. The catalytic activity of Ct adsorbates at the SWNTs appears to be retained, as the addition of H2O2 produced a characteristic catalytic redox wave. This work demonstrates that direct electrochemistry of redox‐active biomacromolecules such as metalloenzymes can be improved through the use of carbon nanotubes.  相似文献   

12.
The direct electron transfer of hemoglobin at the PAMAM-MWNTs-AuNPs composite film modified glassy carbon electrode was studied. In a phosphate buffer solution(PBS, pH=7.0), the formal potential(E 0' ) of Hb was –0.105 V versus SCE, the electron transfer rate constant was 4.66 s –1 . E 0′ of Hb at the modified electrode was linearly varied in a pH range of 5.0—8.0 with a slope of –49.2 mV/pH. The Hb/PAMAM-MWNTs-AuNPs/GCE gave an ex-cellent electrocatalytic response to the reduction of hydrogen peroxide. The catalytic current increased linearly with H 2 O 2 concentration in a range of 1.0×10 ?6 to 2.2×10 ?3 mol/L. The detection limit was 2.0×10 ?7 mol/L at a signal to noise ratio of 3. The Michaelis-Menten constant(K ma pp ) was 2.95 mmol/L.  相似文献   

13.
A new hemoglobin (Hb) and carbon nanotube (CNT) modified carbon paste electrode was fabricated by simply mixing the Hb, CNT with carbon powder and liquid paraffin homogeneously. To prevent the leakage of Hb from the electrode surface, a Nafion film was further applied on the surface of the Hb‐CNT composite paste electrode. The modified electrode was characterized by scanning electron microscopy (SEM) and electrochemical impedance spectroscopy (EIS). Direct electrochemistry of hemoglobin in this paste electrode was easily achieved and a pair of well‐defined quasi‐reversible redox peaks of a heme Fe(III)/Fe(II) couple appeared with a formal potential (E0′) of ?0.441 V (vs. SCE) in pH 7.0 phosphate buffer solution (PBS). The electrochemical behaviors of Hb in the composite electrode were carefully studied. The fabricated modified bioelectrode showed good electrocatalytic ability for reduction of H2O2 and trichloroacetic acid (TCA), which shows potential applications in third generation biosensors.  相似文献   

14.
细胞色素c在纳米氧化铝模板修饰电极上的直接电化学   总被引:5,自引:0,他引:5  
细胞色素c(Cytochrome c,Cyt c)是生物体中最常见的氧化一还原蛋白质,研究其在电极上的直接电化学,对于理解和认识生命体内的电子转移机制具有重要意义。Cytc与裸固体电极表面的直接接触通常会使其失去生物活性,因此,Cytc的电化学研究常借助于媒介体以实现其与电极之间的电子转移。纳米金属氧化物模板的表面积大且化学和光化学性质稳定,被广泛应用于太阳能电池和金属沉积等领域,本文研究氧化铝(AAO)模板对4,4’-二硫二吡啶存在下Cytc直接电化学促进作用。  相似文献   

15.
Titanium dioxide (TiO2) nanowires were synthesized and used for the realization of direct electrochemistry of hemoglobin (Hb) with carbon ionic liquid electrode (CILE) as the substrate electrode. TiO2‐Hb composite was casted on the surface of CILE with a chitosan film and spectroscopic results confirmed that Hb retained its native structure in the composite. Direct electron transfer of Hb on the modified electrode was realized with a pair of quasi‐reversible redox waves appeared, indicating that the presence of TiO2 nanowires could accelerate the electron transfer rate between the electroactive center of Hb and the substrate electrode. Electrochemical behaviors of Hb on the modified electrode were carefully investigated with the values of the electron transfer coefficient (α), the electron transfer number and the heterogeneous electron transfer rate constant (ks) as 0.58, 0.98 and 1.62 s‐1. The Hb modified electrode showed excellent electrocatalytic activity to the reduction of trichloroacetic acid and NaNO2 with wider linear range and lower detection limit, indicating the successful fabrication of a new third‐generation biosensor.  相似文献   

16.
严捷  李经建  张波  蔡生民 《物理化学学报》2001,17(12):1126-1128
在不加任何电子转移促进剂的条件下,用循环伏安法(CV)和微分脉冲伏安法(DPV)观察到细胞色素C551在ITO导电玻璃上的直接电化学行为.结果显示电极反应过程为准可逆性质,计算得到细胞色素C551的扩散系数、式电位和异相电子转移标准速率常数,并对其在ITO导电玻璃电极上的电子转移机制进行了初步分析.  相似文献   

17.
A multilayers of graphene (GR) and myoglobin (Mb) modified electrode was fabricated with a layer of chitosan film. Electrochemical behaviors of the modified electrode were studied by cyclic voltammetry, which exhibited a couple of well‐behaved, stable and quasi‐reversible cathodic and anodic peaks, indicating that Mb realized its direct electron transfer on the biosensor. The experimental result may be accredited to the existence of multilayers conductive GR nanosheets that could provide big specific surface area, fine biological compatibility and ultrahigh electron transfer route for the immobilized Mb. The catalytic reduction peak currents of the biosensor to the detection of trichloroacetic acid were established from 0.6 to 26.0 mM accompanied with the detection limit as 0.15 mM (3σ). Therefore a novel third‐generation mediator‐free electrochemical sensor was successful prepared with the usage of multilayers of GR.  相似文献   

18.
Chuanyin Liu  Jiming Hu 《Electroanalysis》2008,20(10):1067-1072
Hemoglobin was entrapped in composite electrodeposited chitosan‐multiwall carbon nanotubes (MCNTs) film by assembling gold nanoparticles and hemoglobin step by step. In phosphate buffer solution (pH 7), a pair of well‐defined and quasireversible redox peaks appeared with formal potential at ?0.289 V and peak separation of 100 mV. The redox peaks respected for the direct electrochemistry of hemoglobin at the surface of chitosan‐MCNTs‐gold nanoparticles modified electrode. The parameters of experiments have also been optimized. The composite electrode showed excellent electrocatalysis to peroxide hydrogen and oxygen, the peak current was linearly proportional to H2O2 concentration in the range from 1×10?6 mol/L to 4.7×10?4 mol/L with a detection limit of 5.0×10?7 mol/L, and this biosensor exhibited high stability, good reproducibility and better selectivity. The biosensor showed a Michaelis–Menten kinetic response as H2O2 concentration is larger than 5.0×10?4 mol/L, the apparent Michaelis–Menten constant for hydrogen peroxide was calculated to be 1.61 μmol/L.  相似文献   

19.
A novel nanohybrid material, constructed by gold nanoparticles (GNPs) and multiwalled carbon nanotubes (MWNTs), was designed for immobilization and biosensing of myoglobin (Mb). Morphology of the nanohybrid film was characterized by SEM. UV‐vis spectroscopy demonstrated that Mb on the composite film could retain its native structure. Direct electrochemistry of Mb immobilized on the GNPs/MWNTs film was investigated. The immobilized Mb showed a couple of quasireversible and well‐defined cyclic voltammetry peaks with a formal potential of about ?0.35 V (vs. Ag/AgCl) in pH 6.0 phosphate buffer solution (PBS) solution. Furthermore, the modified electrode also displayed good sensitivity, wide linear range and long‐term stability to the detection of hydrogen peroxide. The experiment results demonstrated that the hybrid matrix provided a biocompatible microenvironment for protein and supplied a necessary pathway for its direct electron transfer.  相似文献   

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