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1.
利用电化学衰减全反射原位傅里叶变换红外光谱与微分电化学质谱联用技术,在流动电解池环境以及恒电位条件下研究了Pt电极和Pt电极通过表面电沉积Ru形成的PtRu电极(PtxRuy)上发生的甲醇氧化反应(反应电解质溶液为0.1 mol/L HClO4+0.5 mol/L MeOH). 在0.3-0.6 V(参比电极为可逆氢参比)实验用到的所有电极上,CO是唯一能从红外光谱观察到的与甲醇相关的表面吸附物;在Pt0.56Ru0.44电极上可以观察到CO吸附在Ru原子形成的岛上和CO线式吸附在Pt电极表面红外波段,而其他电极上只能观察到Pt表面上线式吸附的CO;甲醇氧化活性按Pt0.73Ru0.27〉Pt0.56Ru0.44〉Pt0.83Ru0.17〉Pt的顺序递减;在0.5V时,甲醇在Pt0.73Ru0.27电极上的氧化反应的CO2电流效率达到了50%.  相似文献   

2.
李巧霞a  王金意a  徐群杰b  蔡文斌  a 《化学学报》2008,66(20):2302-2304
采用自发沉积法在Ru膜上生成超薄Pt层(简称Ru/Pt膜), 即在开路状态下将电化学还原后的Ru膜浸于除去氧的H2PtCl6溶液中进行自发沉积. 电化学伏安法测量表明, 随着电还原-自发沉积循环次数的增加, 该Ru/Pt膜电极所含Pt组分增加, 且CO吸附层的电氧化峰电位较Pt膜电极上的明显负移. 应用现场衰减全反射表面增强红外光谱法(ATR-SEIRAS)可轻易检测到在该膜电极Pt和Ru位上吸附CO的振动谱峰. 所制Ru/Pt膜电极不仅对CO的电催化氧化具有协同效应, 还可应用于现场ATR-SEIRAS的研究中.  相似文献   

3.
采用电化学沉积技术在3-氨丙基三甲基硅氧烷修饰的多孔氧化铝膜板中制备了具有不同Pt/Ru原子比的双元Pt/Ru阵列纳米管电极(NTAEs)。分别用X-射线衍射和扫描电镜表征了催化剂结构和形态。电化学结果表明:通过控制前驱沉积液的浓度可得到不同PtRu原子比的NTAEs。所制备的Pt 或 Pt/Ru合金阵列纳米电极的真实表面积大,催化活性强,有利于物质传输,对甲醇电氧化显示出显著的催化性能。实验中还系统研究了催化剂组成与CO和CH3OH电催化氧化性能的关系,发现Pt/Ru=50:50的阵列纳米管电极对CO电氧化显示出最好的催化活性;对甲醇电氧化,则Ru原子比为40%的催化剂显示最佳催化性能。  相似文献   

4.
采用欠电位沉积(upd)方法在Pt 表面沉积亚单层的Ru制备出upd-Ru/Pt 电极. 通过欠电位沉积前后电极在0.5 mol·L-1 H2SO4溶液中循环伏安图-152 - 128 mV(vs Ag/AgCl)电位范围内对氢区的数值积分确定Pt表面Ru 的覆盖度. 用电化学方法测试了甲醇在upd-Ru/Pt电极上的催化氧化, 并讨论分析了欠电位沉积电位和Ru的表面覆盖度对甲醇氧化的影响. 结果表明, Ru能够欠电位沉积到Pt表面. Pt表面欠电位沉积少量的Ru 即能大大促进甲醇的氧化.只要控制upd-Ru的沉积量, upd-Ru原子就能大大促进甲醇氧化而与沉积电位无关. Ru原子对甲醇氧化的促进作用与Ru和Pt是否形成合金无关, 而取决于Ru 在Pt表面的百分含量.  相似文献   

5.
本文采用电化学性能独特的联吡啶钌(Ru(bpy)32+)、氮掺杂石墨烯(NG)和Nafion膜构建了一种新型的盐酸异丙嗪电化学传感器。采用红外光谱和扫描电子显微镜对氮掺杂石墨烯的形貌进行了表征。在Nafion膜中添加导电性好、比表面积大的氮掺杂石墨烯可以增加电子传递速度并且可以防止联吡啶钌扩散到Nafion膜的非电活性区域而增加电极使用寿命。在p H 7.0的磷酸盐缓冲溶液中,盐酸异丙嗪在Ru(bpy)32+/NG/Nafion修饰电极上的循环伏安曲线表明,与单一的裸玻碳电极、Ru(bpy)32+/Nafion修饰电极以及NG/Nafion修饰电极相比,该修饰电极使盐酸异丙嗪得氧化峰电流显著增加,而峰电位明显负移,表明采用Ru(bpy)32+/NG/Nafion膜制备的复合修饰电极对盐酸异丙嗪呈现出较强的电化学催化作用。优化实验条件后,发现在1.0×10-6mol·L-1~1.0×10-4mol·L-1.浓度范围内,盐酸异丙嗪的氧化峰电流与其浓度呈良好的线性关系,检测限为3.6×10-7mol·L-1。而且该电极的重现性、稳定性和选择性良好,采用标准加入法可成功用于商业盐酸异丙嗪注射液中盐酸异丙嗪的测定。  相似文献   

6.
以循环伏安方法在玻碳载体上制备纳米级厚度的过渡金属 (Pt,Pd ,Rh ,Ru)和合金 (PtPd ,PtRu)薄膜电极 ,并运用原位FTIR反射光谱研究了CO的吸附过程 .发现所制备的纳米薄膜电极均具有异常红外效应 ,即与本体金属电极相比较 ,吸附在纳米薄膜电极上的CO分子的红外吸收被显著增强 ,并且红外谱峰方向倒反 .本文的结果进一步证明异常红外效应是一种新的、普遍的现象 ,主要取决于过渡金属或合金膜的结构和厚度 .对异常红外效应的深入认识 ,不仅将推动红外反射光谱及界面电化学理论的发展 ,而且将在表面和界面分析中得到广泛应用 .  相似文献   

7.
采用电位置换反应以及化学还原法制备了单分散PtNi纳米粒子,循环伏安结果显示该纳米粒子在0.1mol·L-1硫酸介质中对CO的氧化表现出比本体Pt电极更好的电催化活性.以CO为探针分子,采用电化学原位红外光谱研究了PtNi纳米粒子上的特殊红外光学性能.结果表明,PtNi纳米粒子无论是在玻碳电极还是在金电极上,均表现出对称的双极谱峰,同时给出很强的增强效应.论文研究结果有助于进一步了解低维纳米材料特殊红外性能的本质.  相似文献   

8.
苏敏  王焕焕  郭禹红  金君  于浩 《分析测试学报》2022,41(12):1815-1821
采用电化学合金-去合金法制备Pt纳米粒子修饰玻碳电极(Pt NPs/GCE),用于尿液中草酸(OA)含量的电化学检测。先在同时含有Bi(NO3)3、K2PtCl4和EDTA的HClO4溶液中,于-0.4 V将Pt-Bi合金粒子沉积于电极表面,然后在HClO4溶液中于1.2 V下处理1 000 s可电化学溶出合金中的Bi,制得Pt NPs/GCE。采用扫描电镜法、EDS能谱法对电极表面修饰剂的组成和形貌进行表征。优化了电极的制备条件,并考察了OA在电极上的电化学行为。结果表明,OA在该电极上是一个扩散控制的不可逆氧化过程。电化学去合金后可得到一种多孔结构的Pt纳米粒子,增大了电极的活性面积,提高了对OA的电催化氧化活性。对电极制备条件的优化结果表明,当沉积液组成为1.0 mmol/L K2PtCl6 + 3.0 mmol/L Bi(NO3)3 + 3.0 mmol/L EDTA + 0.10 mol/L HClO4,合金沉积时间为500 s(-0.4 V),去合金时间为1 000 s(1.2 V)时,制备的修饰电极对OA具有良好的分析性能。在0.10 mol/L HClO4中,安培法检测OA的线性范围为2.0 × 10-7~ 4.9 × 10-4 mol/L和4.9 × 10-4 ~ 6.3 × 10-3 mol/L,相关系数(r2)分别为0.999 1和0.998 2,检出限(3sb)可达2.7 ×10-8 mol/L,对OA的灵敏度为83 μA/(mmol·L-1)。该电极具有、灵敏度高、线性范围宽和制备简单的特点,用于尿液中OA含量的测定,加标回收率为94.6% ~ 102%,相对标准偏差(RSD)为2.2% ~ 4.7%。  相似文献   

9.
研究了甲酸在二十四面体Pt纳米晶(THHPtNCs)电极表面解离吸附反应过程.电化学原位红外反射光谱结果显示,甲酸在低电位(-0.20V(SCE))即可在THHPtNCs电极上氧化到CO2,同时发生分子内化学键断裂生成吸附态CO物种.运用程序电位阶跃暂态方法定量研究甲酸解离吸附反应动力学,测得5×10^-3mol·L^-1 HCOOH+0.1mol·L^-1 H2SO4溶液中甲酸在THHPtNCs电极上解离吸附的最大平均速率υamax为13.19×10^-10mol·cm^-2·s^-1,是商品Pt/C催化剂电极上υamax的1.5倍.研究结果揭示了THHPtNCs的反应活性显著高于Pt/C催化剂.  相似文献   

10.
采用恒电位法在磷酸盐缓冲溶液中成功制备了聚邻苯二胺修饰玻碳电极,该修饰电极对H2O2有显著的电催化还原特性.用扫描电镜表征了聚邻苯二胺膜的形态结构,考察了影响膜修饰电极电催化还原特性的因素,发现在弱酸条件下制备的膜电极才对H2O2电还原有较高的催化活性.最佳制备条件:成膜电位0.75 V,成膜时间50 min,成膜液中单体最佳浓度大于6.0 mmol·L-1.低扫描速率下,膜电极反应受吸附控制,表现出薄层电化学的特性;高扫描速率下,电极反应受扩散控制.对H2O2响应的线性回归方程:在5.88×10-2 ~ 23.5 mmol·L-1,△Ip(μA)=0.435 0.494cH2O2(mmol·L-1) (r=0.997 5,n=18);在25.3 ~ 48.4 mmol·L-1,△Ip(μA)=9.36 0.894cH2O2(mmol·L-1) (r=0.999 4,n=15).  相似文献   

11.
Properties of PtRu nanoparticles prepared using high-intensity sonochemistry are reported. Syntheses were carried out in tetrahydrofuran (THF) containing Ru3+ and Pt4+ in a fixed mole ratio of either 1:10 or 1:1. X-ray diffraction measurements confirmed sonocation produces an alloy phase and showed that the composition of the nanometer scale metal particles is close to the mole fraction of Ru3+ and Pt4+ in solution with deviations that tend toward Ru enrichment in the alloy phase. The materials gave responses that are similar in terms of peak potential and current density, referenced to the catalyst active surface area, to those of bulk alloys in voltammetry experiments involving CO stripping and CH3OH electrochemical oxidation in 0.1 M H2SO4. The results show that sonochemical methods have the potential to produce nanometer scale bimetallic electrocatalysts that possess alloy properties. The materials have application in mechanistic studies of fuel cell reactions and as platforms for the development of CO tolerant fuel cell catalyst.  相似文献   

12.
运用电化学循环伏安 ,石英晶体微天平 (EQCM )和原位FTIR反射光谱等方法研究了酸性介质中乙醇在碳载纳米Pt膜电极上吸附和氧化行为 .结果表明 ,乙醇的电氧化与溶液酸碱性及电极表面氧物种有密切的关系 ,并指出乙醇电催化氧化是通过解离吸附产物和反应中间体双途径机理进行的 .在实验条件下 ,经原位FTIR反射光谱检测 ,解离吸附产物为CO ,反应中间体主要有CH3COOH和CH3CHO等物种 .  相似文献   

13.
A density functional theory study of the elementary steps that lead to the removal of CO(ads(Pt)) over alloyed and sequentially deposited Pt/Ru bimetallic nanoclusters is presented. The reaction energies and activation barriers for the H2O(ads(Ru)) dissociation and CO(ads(Pt)) + OH(ads(Ru)) reaction are estimated in solid-gas interface and in a microsolvated environment to determine which surface morphology is more tolerant to COads poisoning. On the basis of the energetics, the sequentially deposited Pt/Ru nanocluster is predicted to be a much more promising anode catalyst than the alloy cluster surface in fuel cell applications.  相似文献   

14.
The electronic energy barriers of surface reactions pertaining to the mechanism of the electrooxidation of methane on Pt (111) were estimated with density functional theory calculations on a 10-atom Pt cluster, using both the B3LYP and PW91 functionals. Optimizations of initial and transition states were performed for elementary steps that involve the conversion of CH(4) to adsorbed CO at the Pt/vacuum interface. As a first approximation we do not include electrolyte effects in our model. The reactions include the dissociative chemisorption of CH(4) on Pt, dehydrogenation reactions of adsorbed intermediates (*CH(x) --> *CH(x-1) + *H and *CH(x)O --> *CH(x-1)O + *H), and oxygenation reactions of adsorbed CH(x) species (*CH(x) + *OH --> *CH(x)OH). Many pathways were investigated and it was found that the main reaction pathway is CH(4) --> *CH(3) --> *CH(2) --> *CH --> *CHOH --> *CHO --> *CO. Frequency analysis and transition-state theory were employed to show that the methane chemisorption elementary step is rate-limiting in the above mechanism. This conclusion is in agreement with published experimental electrochemical studies of methane oxidation on platinum catalysts that have shown the absence of an organic adlayer at electrode potentials that allow the oxidation of adsorbed CO. The mechanism of the electrooxidation of methane on Pt is discussed.  相似文献   

15.
通过循环伏安法电沉积使直径约为7 nm的Pt纳米粒子均匀地分散于多孔硅表面, 拟用作微型质子交换膜燃料电池的催化电极. 与刷涂法相比较, 电沉积Pt纳米粒子的多孔硅电极(Pt/Si)呈现出高的Pt利用率和增强的电催化活性. 当Pt载量为0.38 mg•cm−2时, 其电化学活性比表面积高达148 cm2•mg−1, 是刷涂相近质量的纳米Pt/C催化剂的多孔硅电极Pt-C/Si的2倍多;该修饰电极对甲醇氧化也呈现了增强的催化性能和好的稳定性, 在0.5 V(vs SCE)极化1 h后电流密度为4.52 mA•cm−2, 而刷涂了相近Pt量的Pt-C/Si电极的电流密度只有0.36 mA•cm−2.  相似文献   

16.
A series of vinyl, aryl, acetylide and silyl complexes [Ru(R)(kappa2-MI)(CO)(PPh3)2] (R = CH=CH2, CH=CHPh, CH=CHC6H4CH3-4, CH=CH(t)Bu, CH=2OH, C(C triple bond CPh)=CHPh, C6H5, C triple bond CPh, SiMe2OEt; MI = 1-methylimidazole-2-thiolate) were prepared from either [Ru(R)Cl(CO)(PPh3)2] or [Ru(R)Cl(CO)(BTD)(PPh3)2](BTD = 2,1,3-benzothiadiazole) by reaction with the nitrogen-sulfur mixed-donor ligand, 1-methyl-2-mercaptoimidazole (HMI), in the presence of base. In the same manner, [Os(CH=CHPh)(kappa2-MI)(CO)(PPh3)2] was prepared from [Os(CH=CHPh)(CO)Cl(BTD)(PPh3)2]. The in situ hydroruthenation of 1-ethynylcyclohexan-1-ol by [RuH(CO)Cl(BTD)(PPh3)2] and subsequent addition of the HMI ligand and excess sodium methoxide yielded the dehydrated 1,3-dienyl complex [Ru(CH=CHC6H9)(kappa2-MI)(CO)(PPh3)2]. Dehydration of the complex [Ru(CH=CHCPh2OH)(kappa2-MI)(CO)(PPh3)2] with HBF4 yielded the vinyl carbene [Ru(=CHCH=CPh2)(kappa2-MI)(CO)(PPh3)2]BF4. The hydride complexes [MH(kappa2-MI)(CO)(PPh3)2](M = Ru, Os) were obtained from the reaction of HMI and KOH with [RuHCl(CO)(PPh3)3] and [OsHCl(CO)(BTD)(PPh3)2], respectively. Reaction of [Ru(CH=CHC6H4CH3-4)(kappa2-MI)(CO)(PPh3)2] with excess HC triple bond CPh leads to isolation of the acetylide complex [Ru(C triple bond CPh)(kappa2-MI)(CO)(PPh3)2], which is also accessible by direct reaction of [Ru(C triple bond CPh)Cl(CO)(BTD)(PPh3)2] with 1-methyl-2-mercaptoimidazole and NaOMe. The thiocarbonyl complex [Ru(CPh = CHPh)Cl(CS)(PPh3)2] reacted with HMI and NaOMe without migration to yield [Ru(CPh= CHPh)(kappa2-MI)(CS)(PPh3)2], while treatment of [Ru(CH=CHPh)Cl(CO)2(PPh3)2] with HMI yielded the monodentate acyl product [Ru{eta(1)-C(=O)CH=CHPh}(kappa2-MI)(CO)(PPh3)2]. The single-crystal X-ray structures of five complexes bearing vinyl, aryl, acetylide and dienyl functionality are reported.  相似文献   

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