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1.
杂多酸修饰的电极对于甲醇电氧化的促进作用   总被引:4,自引:0,他引:4  
采用杂多酸修饰光滑铂电极,研究其对甲醇电催化氧化的作用,发现与未修饰光滑铂电极相比,分别经磷钨酸和硅钨酸修饰的电极上甲醇电催化氧化速率明显增加.  相似文献   

2.
张玲  郑龙珍 《电化学》2011,17(1):84-87
应用循环伏安法电沉积多层聚吡咯-铂复合膜电极,研究该电极的甲醇电催化氧化性能.循环伏安和计时安培法测试表明,该复合膜电极具有更好的甲醇电催化活性和抗毒性.铂量增加,电极反应控制步骤将由CO氧化转化为甲醇的吸附脱氢.  相似文献   

3.
利用线性扫描电沉积的方法在玻碳电极或多壁碳纳米管表面制备出铂纳米立方体, 扫描电子显微镜(SEM)和透射电子显微镜(TEM)结果表明, 铂立方体的尺度约为38 nm, 由Pt(111)择优取向的小粒子围成. 运用电化学循环伏安和电位阶跃技术研究了所合成的2种催化剂和商用碳载铂对乙醇氧化的电催化活性, 发现在2种铂纳米立方体上乙醇氧化的电催化活性和稳定性均高于商用碳载铂, 其起峰电位较商业碳载铂降低168 mV. 采用电化学原位红外光谱对比研究了铂纳米立方体和商用碳载铂对乙醇氧化的电催化过程, 发现铂纳米立方体起始氧化电位提前, 催化活性增强. 乙醇在该催化剂上更易转化为乙酸, 且表现出较强的CO吸附能力.  相似文献   

4.
在离子液体1-乙基咪唑三氟乙酸盐(HElmTfa)中,采用循环伏安法在铂电极表面修饰聚吡咯(PPY),制得PPy-HEImTfa/Pt,并研究了其对甲酸的电催化氧化性能.与相同条件下的铂基底电极相比,PPy-HEImTfa/Pt对甲酸的电催化氧化性能有很大的提高.原位红外光谱表明,PPy-HElmTfa能降低中间体CO等对铂电极的毒化作用,促进甲酸直接氧化生成CO_2.  相似文献   

5.
利用软模板结合电沉积法制备了一种有序化氰桥混配聚合物修饰铂电极(Nd-Fe-MoO42-/Pt),用循环伏安法研究了在该化学修饰铂电极的丙三醇电催化氧化,并重点讨论了支持电解质的H+和SO42-浓度、丙三醇浓度、扫速等因素对丙三醇电催化氧化活性的影响. 结果表明,在弱酸性硫酸钠支持电解质中,适当量SO42-的存在有助于提高Nd-Fe-MoO42-/Pt电极的丙三醇电催化氧化电流;-0.2 ~ 0.3 V电位区间内,其丙三醇氧化峰电流1与循环伏安曲线扫描速率的平方根之间呈现良好的线性关系,体现了扩散控制的反应特性;Nd-Fe-MoO42-/Pt电极的丙三醇电催化氧化电流密度值约为裸铂电极的4倍,而丙三醇电催化氧化反应的表观活化能相对较小,修饰电极的电催化氧化呈现了明显的协同效应,其电催化氧化活性高、电流响应快、催化稳定性好.  相似文献   

6.
利用循环伏安扫描法制备了磷钼酸(H3PMo12O40)修饰的铂电极.在制备修饰电极时,随着扫描次数的增加,磷钼酸的氧化还原峰电流增大,但最终获得稳定的重现性好的磷钼酸修饰的铂电极.通过循环伏安法研究了该修饰电极对二甲醚氧化的电催化反应.结果表明,与未修饰的铂电极相比,磷钼酸修饰的铂电极电催化氧化二甲醚的起始氧化电位负移50 mV,氧化峰电位负移35 mV,氧化峰电流密度提高了1.86倍,这表明修饰电极的电催化活性有了很大的提高.同时,电位负扫时,二甲醚在425 mV(vsSCE)处出现氧化峰,表明二甲醚在修饰电极上的电氧化机理可能发生了改变.实验还发现,制备修饰电极时,降低扫速会提高还原物质杂多蓝的吸附量,但过多的修饰物质会降低铂的活性位数目,反而降低了对二甲醚氧化的电催化作用.  相似文献   

7.
具有纳米结构的铂电极表面的电化学制备及其性能   总被引:1,自引:0,他引:1  
王小聪  任斌  曹婧  颜佳伟  钟起玲  田中群 《化学学报》2005,63(23):2112-2116
采用控电位方波氧化还原法和控电流方波氧化还原法分别成功地制备了控电位粗糙铂(CPRPt)和控电流粗糙铂(CCRPt)纳米级铂电极表面.通过考察两类电极表面对甲醇电催化氧化的性能,发现CPRPt和CCRPt纳米级铂电极表面催化氧化甲醇峰值电流密度分别是光滑铂电极的约1.35倍和2.50倍.采用现场拉曼光谱技术考察了两电极表面的表面增强拉曼(SERS)效应,发现两电极表面对吡啶吸附均有较高SERS活性,CPRPt电极表面还对有机小分子的解离吸附的拉曼光谱具有特殊的增强效应.本文初步探讨了两电极表面的SERS机理.  相似文献   

8.
采用常规电化学伏安技术和电化学原位表面增强拉曼光谱(in-situ SERS)技术研究了不同介质中乙醇在粗糙铂电极上的电催化氧化行为. 发现不论在酸性、中性还是碱性介质中, 乙醇均能在粗糙铂电极上自发氧化解离生成强吸附中间体CO; 碱性介质中, CO在粗糙铂电极上基本氧化完全的电位(0.20 V)比中性和酸性介质中(0.50 V)负移了约0.30 V. 而乙醇在粗糙铂电极上CV正向扫描的氧化峰电位(-0.20 V)比酸性介质中(0.65 V)负移了约0.85 V. 比较不同介质中乙醇和CO在粗糙铂电极上的氧化峰电流和峰电位可以发现, 粗糙铂电极在碱性介质中对乙醇和CO的电催化氧化活性比中性和酸性介质中更强; 可以推测, 不论在酸性、中性还是碱性介质中, 乙醇在粗糙铂电极上的氧化过程均按双途径机理进行.  相似文献   

9.
甲醇在铂修饰的氧化钛电极上电催化氧化行为的研究   总被引:8,自引:0,他引:8  
运用电化学方法评价了电化学阴极还原-阳极氧化两步法制得的以钛为基体的铂修饰的钛氧化物(Pt-TiOx/Ti)电极对甲醇电催化氧化的性能,结果表明,制得的修饰电极对甲醇氧化呈现了很高的电催化活性和好的稳定性.通过X光电子能谱(XPS)、扫描隧道显微镜(STM)和现场傅立叶变换红外(FTIR)反射光谱等技术,发现修饰电极对甲醇氧化具有高的电催化性能,可归属于纳米级Pt粒子在TiOx中的高度分散及由于Pt和TiOx的相互作用,使电极表面对甲醇氧化中间产物CO的吸附量大大降低.  相似文献   

10.
以草酰胺作为保护剂,采用胶体法合成铂纳米晶,考察了不同溶液pH值、前驱体与保护剂反应物配比对铂纳米晶形貌及其甲醇电催化氧化活性的影响. 测试表明,pH = 5、反应物配比1:20合成的铂纳米晶的甲醇电催化氧化活性最佳,其峰电流密度达到1709 μA·cm-2. 空气中搁置3个月后,其表面形貌变化不大,但甲醇的电催化活性显著降低. 0.05 ~ 1.2 V电位范围循环扫描100周期,其循环伏安曲线明显变化,晶体表面原子排列方式也发生变化,由易毒化(100)面逐渐转化为(110)面,其甲醇电催化活性增加.  相似文献   

11.
A sensitive and simple electrochemical sensor based on nanoporous gold (NPG) was developed for the detection of bisphenol A (BPA). NPG was prepared by the dealloying method. The NPG modified glassy carbon electrode (GCE) displayed excellent catalytic activity towards the electrooxidation of BPA. The mechanism of the electrooxidation of BPA on NPG/GCE sensor was inferred. The sensor showed a linear range from 0.1 μM to 50 μM with a detection limit of 12.1 nM BPA. Specially, a simple but effective approach was attempted to renew the used sensor. The application of the sensor for real sample analysis was demonstrated.  相似文献   

12.
We describe the electrocatalytic properties of self-supported Pt-decorated nanoporous gold (Pt-NPG) membranes towards the electrooxidation of formic acid and some other small organic molecules. By effectively enhancing the Pt utilization and providing a unique surface structure, the electrooxidation of formic acid on Pt-NPG was found to be highly sensitive to its surface structure. An unparalleled increase by nearly two orders of magnitude in catalytic activity was achieved on NPG electrodes decorated with sub-monolayer Pt atoms, as compared to the commercial Pt/C catalyst under the same testing conditions.  相似文献   

13.
A tiny amount of Pt was deposited in a quasi-two-dimensional form onto the nanoporous gold (NPG) substrate through a simple immersion-electrodeposition (IE) method, forming nanostructured bimetallic Pt-Au catalysts. Such Pt-Au nanostructures have much higher structural stability than the bare NPG; moreover, they exhibit better catalytic activity and stronger poison resistance than commercial Pt-Ru catalysts because of the synergistic effect of the bimetallic compositions.  相似文献   

14.
An ultrathin platinum film is fabricated on a nanoporous gold (NPG) scaffold through a catalytic chemical deposition method. The morphology and active surface area of the deposited Pt film, which will greatly influence the electro-catalytic properties of the catalyst, can be controlled by adjusting the deposition condition. Compared with bare NPG and high Pt loaded NPG, the performances of methanol electro-oxidation on the low-Pt-content bimetallic film are greatly improved, both in its catalytic current enhancement and signal stability. The best condition for methanol oxidation can be achieved when the area ratio of deposited Pt and uncovered Au was 3:1.  相似文献   

15.
IRMOF-1是一种最经典的IRMOF系列材料,通过直接在空气中不同温度下热处理IRMOF-1得到三种ZnO催化剂,并采用XRD、SEM、BET、CO_2-TPD等分析技术对所得样品的晶体结构、表观形貌、孔结构、表面碱性进行了表征。结果显示,ZnO为球状结构,是一种典型的介孔材料,BET比表面积和孔径分别为49.7~62.2 m2/g和2.18~2.92 nm。研究了ZnO微球在碳酸二苯酯(DPC)与新戊二醇(NPG)酯交换合成低聚碳酸酯二醇(PCDL)反应中的催化性能。结果表明,500℃下得到的ZnO微球在DPC与NPG酯交换反应中表现出良好的催化活性。  相似文献   

16.
Active oxygen evolution reaction electrocatalysts for water splitting have received great attention because of their importance in the utilization of renewable energy sources. Here, the electrochemical oxygen evolution reaction activities of a nanoporous gold (NPG)‐based electrode in acidic media are investigated. The dependence of the oxygen evolution reaction activity on the NPG surface area shows that the large electrochemical surface areas of the NPG are effectively utilized to enhance electrocatalytic activity. The NPG surfaces are modified with Pt using atomic layer electrodeposition methods, and the resulting NPG@Pt exhibited enhanced electrocatalytic activities compared to those of the NPG and flat Pt electrodes. Ir‐modified NPG (NPG@Ir) electrodes are prepared by spontaneous exchange of Ir on NPG surfaces and exhibit enhanced electrocatalytic activity compared to that of flat Ir surfaces. The modification of NPG@Pt with Ir results in NPG@Pt/Ir electrodes, and their electrocatalytic activities exceed those of NPG@Ir. The enhanced oxygen evolution reaction activity on NPG@Pt/Ir over that on NPG@Ir surfaces is examined by X‐ray photoelectron spectroscopy. The oxygen evolution reaction activity on NPG@Pt/Ir surfaces demonstrates synergistic electrocatalysis between the nanoporous surface structure and active electrocatalytic components.  相似文献   

17.
Nanoporous gold (NPG) with uniform pore sizes and ligaments was prepared by using a simple dealloying method. NPG electrodes exhibit excellent electrocatalytic activity towards the oxidation of CySH and the mechanism for the electrochemical reaction of CySH on NPG has been discussed. Interestingly, if the operating potential is fixed at 0.65 V, a strong current is observed and interferences by tryptophan and tyrosine are avoided. The calibration plot is linear in the concentration range from 1 μM to 400 μM (R2?=?0.994), and the quantification limit is as low as 50 nM. The NPG-modified electrode has good reproducibility, high sensitivity and selectivity, can be used to sense CySH in aqueous solution.
Figure
Nanoporous gold with uniform pore sizes and ligaments was employed as sensitive and selective electrochemical sensor for detection of Lcysteine, and the quantification limit is as low as 50 nM.  相似文献   

18.
漆酶在纳米多孔金上的固定化及其酶学性质研究   总被引:1,自引:0,他引:1  
利用纳米材料为载体对酶等生物大分子进行固定化近年来引起人们的浓厚兴趣. 以Au/Ag合金为原料, 通过控制浓硝酸的腐蚀时间再辅以退火处理得到了不同孔径的纳米多孔金(NPG), 利用扫描电镜(SEM)和N2气体吸附仪对孔性质进行了表征. 以NPG为载体, 用α-硫辛酸和N-乙基-N’-(3-二甲基氨基丙基)碳酰二亚胺/N-羟基琥珀酰亚胺(EDC/NHS)对金表面进行活化, 通过化学共价偶联的方法对产自Trametes versicolor的漆酶进行了固定化. 比较了孔径大小对酶固定化量及比活力的影响. 发现小孔径更有利于对该漆酶的固定化. 与游离酶相比, 固定化酶的最适pH没有改变, 但最适温度却从原来的40 ℃升到了60 ℃. 固定化后, 漆酶的pH和热稳定性都明显提高了. 重复使用8次仍能保持初始活力的65%, 且在4 ℃下保存1个月几乎观察不到酶活力的下降. 此外, 失活的固定化酶经浓硝酸处理后, NPG载体可重复利用. 本结果初步显示出了NPG在生物技术领域中的应用潜力.  相似文献   

19.
The electrochemical nitrogen reduction reaction (NRR) offers an energy‐saving and environmentally friendly approach to produce ammonia under ambient conditions. However, traditional catalysts have extremely poor NRR performances because of their low activity and the competitive hydrogen evolution reaction. The high catalytic activity of nanoporous gold (NPG) and the hydrophobicity and molecular concentrating effect of the zeolitic imidazolate framework‐8 (ZIF‐8) were incorporated in the NPG@ZIF‐8 nanocomposite so that the ZIF‐8 shell could weaken hydrogen evolution and retard reactant diffusion. A highest Faradaic efficiency of 44 % and an excellent rate of ammonia production of (28.7±0.9) μg h?1 cm?2 were achieved, which are superior to traditional gold nanoparticles and NPG. Moreover, the composite catalyst shows high electrochemical stability and selectivity (98 %). The superior NRR performance makes NPG@ZIF‐8 one of the most promising water‐based NRR electrocatalysts for ammonia production.  相似文献   

20.
An ultrathin CoO layer is deposited on the skeleton surfaces of a nanoporous gold (NPG) film by using atomic layer deposition, creating a flexible electrode. Detailed characterization demonstrates the superior performance of the flexible NPG/CoO hybrids for electrochemical catalysis. The NPG/CoO hybrid not only achieves high catalytic activity for glucose oxidation and H2O2 reduction, but also exhibits a linear dependence of the electrical signal on the concentration of glucose and H2O2 molecules in the electrolyte. Meanwhile, the sensitivity for H2O2 reduction can be as high as 62.5 μA mm ?1 cm?2 with linear dependence on the concentration in the range of 0.1–92.9 mm . The high sensitivity is proposed to result from the synergistic effect of Au and CoO at the interfaces, and the high conductivity of the gold skeleton with a large surface area. The superior electrochemical performance of this hybrid electrode is promising for future potential applications in various transitional‐metal‐oxide‐based electrochemical electrodes.  相似文献   

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