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微波合成碳负载纳米铂催化剂及其对甲醇氧化的电催化性能 总被引:16,自引:1,他引:16
利用微波辐射快速加热含有XC—72碳的H2PtCl6的乙二醇混合液合成了碳负载的纳米铂,铂负载的质量分数在10%~20%,实验结果表明纳米铂粒子具有均匀的尺寸和形状,其平均粒径在3.6nm,并均匀地分散在纳米碳的表面,循环伏安和恒电位极化表明微波合成的Pt/C比以KBH4作为还原剂制备Pt/C和商业得到E-TEK Pt/C催化剂对甲醇的电化学氧化具有更高的催化活性。 相似文献
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多孔镍通过同时在水溶液中析出氢气及还原镍离子电沉积生成,其在强碱溶液中对乙醇表现出良好的电催化氧化效果。 在1 mol/L KOH溶液中,多孔镍的电极反应为准可逆的β-氢氧化镍与β-羟基氧化镍之间质子耦合电子转移。 循环伏安图显示峰值电流密度与电势扫描速度平方根成线性关系,据此计算可得多孔镍的质子扩散系数值为2.92×10-8 cm2/s,其高于块状镍体系的质子扩散系数值约4个数量级,这可能由真实表面积增大导致。 循环伏安法和计时电流法用来表征多孔镍对乙醇的电催化氧化能力,相对于(220)镍电极,多孔镍表现出更高的催化效率,计时电流法测量的催化反应速率常数为7.17×103 cm3/(mol·s)。 相似文献
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PEMFC催化剂的研究:自制Pt/C电催化剂的性质 总被引:2,自引:0,他引:2
研究了一种用于质子交换膜燃料电池(PEMFC)的自制Pt/C电催化剂(标记为THYT-1)的物理化学和电化学性质.将THYT-1电催化剂与E-TEK公司的同类电催化剂的组成、形态及电催化性能进行了比较.单电池测试结果显示, THYT-1的电催化性能优于E-TEK电催化剂. CV测试结果表明CO在这两种电催化剂上的电氧化性能相近;TEM分析表明两种催化剂上Pt晶粒在炭载体上呈均匀分布,平均粒径均为2~3 nm; XPS和XRD测试结果表明两种催化剂中Pt主要以金属态存在.这些数据表明THYT-1催化剂的物理化学性质与E-TEK公司的相类似. 相似文献
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Dr. Amare Aregahegn Dubale Yuanyuan Zheng Dr. Honglei Wang Dr. René Hübner Yi Li Dr. Jing Yang Dr. Jiangwei Zhang Dr. Navpreet Kaur Sethi Lanqi He Prof. Zhikun Zheng Prof. Wei Liu 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2020,132(33):13995-14003
Low-cost, non-noble-metal electrocatalysts are required for direct methanol fuel cells, but their development has been hindered by limited activity, high onset potential, low conductivity, and poor durability. A surface electronic structure tuning strategy is presented, which involves doping of a foreign oxophilic post-transition metal onto transition metal aerogels to achieve a non-noble-metal aerogel Ni97Bi3 with unprecedented electrocatalytic activity and durability in methanol oxidation. Trace amounts of Bi are atomically dispersed on the surface of the Ni97Bi3 aerogel, which leads to an optimum shift of the d-band center of Ni, large compressive strain of Bi, and greatly increased conductivity of the aerogel. The electrocatalyst is endowed with abundant active sites, efficient electron and mass transfer, resistance to CO poisoning, and outstanding performance in methanol oxidation. This work sheds light on the design of high-performance non-noble-metal electrocatalysts. 相似文献
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Mohammad Ali Kamyabi Hoda Mohammadian Salma Jadali Mohsen Moharramnezhad 《Electroanalysis》2019,31(8):1484-1493
In this project, Pt/NiO?GO nanocatalyst is grown on nickel foam (NF) and, its catalytic activity towards electrochemical oxidation of methanol in acidic media is studied. The first step is devoted to the synthesis of NiO?GO support by a hydrothermal method. Then Pt nanoparticles (~34.3 nm) are electrodeposited on this supporting material. Hydrothermal and electrochemical deposition conditions are optimized. Surface of modified NF was inspected for physical characterization and Chemical composition by some techniques such as field emission scanning electron microscopy (FESEM), energy‐dispersive X‐ray spectra (EDS), and X‐ray diffraction (XRD). In the electrochemical section, the catalytic performance of Pt/NiO?GO/NF towards methanol oxidation is investigated by cyclic voltammetry and chronoamperometry measurements. The electrochemical impedance spectroscopy (EIS) is elected to deliberate charge transfer resistance on the catalyst surface. Mass activity, electrochemical surface area (ECSA) and durability of prepared catalysts are compared with commercial Pt/C. Deliberations prove the superiority of Pt/NiO?GO/NF towards methanol oxidation in acidic media. The Superior quality of synthesized nanocatalyst that is attributed to the synergetic effect of the NiO?GO support material and Pt nanoparticles, indicate that Pt/NiO?GO/NF can be successfully used as the anode in the direct methanol fuel cell (DMFC). 相似文献
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Dr. Denis Bernsmeier Sören Selve Jörg Nissen Dr. Natalia Maticiuc Josefa Ibaceta-Jaña Prof. Bernd Szyszka Dr. Ruslan Muydinov 《Chemphyschem》2023,24(14):e202200650
A single step deposition technique of Pt/C films for electrocatalytic applications is presented. The hollow cathode gas flow sputtering (GFS) method allows a catalyst production within few minutes without further steps. The herein presented films consist of small Pt nanocrystals (2–5 nm) deposited in a matrix of nanocrystalline carbon. The films show a low and stable overpotential under acidic conditions in the hydrogen evolution reaction (HER). Relatively low Pt-mass activity (<1 mA/μgPt) is attributed to the yet too high Pt-content in the films. Another issue discovered in this work is a non-graphitic state of carbon resulting in its high resistivity. Still, the GFS deposition technique providing by nature high deposition rates and a substance-to-material yield of 80–90 % is advantageous than other sputtering techniques and especially chemical methods in that sense. This technique is scalable to areas in the range of square meters and thus represents an attractive way to efficiently produce large-scale cathode coatings for industrial electrolysers. 相似文献
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Visible Light Photocatalytic Activity of Pt/N‐TiO2 towards Enhanced H2 Production from Water Splitting 下载免费PDF全文
Present work mainly focuses on experimental investigation to improvement of hydrogen production by water photoelectrolysis. An experimental facility was designed and constructed for visible light photocatalysis. A series of N‐TiO2 photocatalysts impregnated with platinum on the surface of N‐TiO2 were prepared. Hydrogen production upon irradiating aqueous Pt/N‐TiO2 suspension with visible light was investigated. The shift in excitation wavelength of TiO2 was 380 nm improved the yield of hydrogen production by N‐TiO2 and Pt/N‐TiO2. We used a 400 W mercury arc lamp combined with a 400 nm cutoff filter eliminating all the wavelengths under 400 nm. Pt/N‐TiO2 material was characterized with TPR, reflective UV/Visible spectroscopy and TEM. The best hydrogen production rate obtained for this setup for N/Ti = 10, 0.05 wt% Pt/N‐TiO2, through water splitting was about 772 μmolh?1g?1. 相似文献
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S. Martínez F. Zinola G. Planes O. Guillén-Villafuerte J. L. Rodríguez E. Pastor 《Journal of Solid State Electrochemistry》2007,11(11):1521-1529
Polymer electrolyte fuel cells constitute one of the most important efficiency energy converters for non-centralised uses.
However, the use of fuels arising from reformate processes significantly lowers the current efficiency because of anodic catalytic
poison coming from adsorbed carbon monoxide (COad). In this work, the influence of the addition of hydrogen peroxide in the flow current is studied, considering the adsorption
and electrochemical oxidation of carbon monoxide on carbon-supported Pt (20% Pt/Vulcan) and Pt:Ru (1:1, 20% Pt:Ru/Vulcan)
catalysts in 2 M sulphuric acid. The investigation was conducted applying cyclic voltammetry and on-line differential electrochemical mass spectrometry. A series of experiments has been performed to investigate the influence of
the temperature as well as the time of contact and the concentration of hydrogen peroxide. Oxidation of COad to carbon dioxide occurs at lower potentials in the presence of hydrogen peroxide. Moreover, it is possible to remove ca.
70% of COad on Pt/C electrodes. On the other hand, for PtRu/C electrodes, similar charge values to those of Pt/C electrodes were obtained
for the CO stripping, but the process occurs at more negative potentials. In this case, the effect of partial desorption for
COad by interaction with hydrogen peroxide is added to the bifunctional mechanism usually considered for this alloy.
This paper is dedicated to Prof. Francisco Nart, in memoriam. 相似文献
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Pt/TiO2纳米纤维的制备及其对甲醇的电催化氧化活性 总被引:1,自引:0,他引:1
采用静电纺丝技术结合还原浸渍法制备了Pt/TiO2纳米纤维电催化剂, 通过X射线衍射(XRD)分析、扫描电镜(SEM)、透射电镜(TEM)和X射线能谱(EDS)等测试手段对样品的晶相、形貌、微结构和化学组成进行了表征. 测试结果表明, TiO2纳米纤维为锐钛矿和金红石组成的混晶, Pt 纳米颗粒均匀地分布于TiO2纳米纤维的表面, 且Pt 颗粒大小较均一, 平均粒径为4.0 nm, Pt/TiO2纳米纤维中Pt 的质量分数约为20%. 采用三电极体系的循环伏安和计时电流电化学分析方法研究了样品在酸性溶液中对甲醇的电催化氧化活性, 结果表明, 与负载相同质量分数Pt 的Pt/P25 和商业Pt/C 催化剂相比较, Pt/TiO2纳米纤维催化剂对甲醇呈现出较高的电催化氧化活性和更好的稳定性. 相似文献
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Weiyan Ni Dr. Teng Wang Dr. Pascal Alexander Schouwink Dr. Yu-Chun Chuang Prof. Dr. Hao Ming Chen Prof. Dr. Xile Hu 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2020,132(27):10889-10893
The hydroxide-exchange membrane fuel cell (HEMFC) is a promising energy conversion device. However, the development of HEMFC is hampered by the lack of platinum-group-metal-free (PGM-free) electrocatalysts for the hydrogen oxidation reaction (HOR). Now, a Ni catalyst is reported that exhibits the highest mass activity in HOR for a PGM-free catalyst as well as excellent activity in the hydrogen evolution reaction (HER). This catalyst, Ni-H2-2 %, was optimized through pyrolysis of a Ni-containing metal-organic framework precursor under a mixed N2/H2 atmosphere, which yielded carbon-supported Ni nanoparticles with different levels of strains. The Ni-H2-2 % catalyst has an optimal level of strain, which leads to an optimal hydrogen binding energy and a high number of active sites. 相似文献
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Yao Yao Jun Cai Yong-li Zheng Yan-xia Chen 《化学物理学报(中文版)》2014,27(3):332-336
A simple and green approach to synthesize highly active electro-catalysts for methanol oxi- dation reaction (MOR) without using any organic agents is described. Pt nanoparticles are directly deposited on the pre-cleaned and pre-oxidized multiwall carbon nanotubes (MWC- NTs) from Pt salt by using CO as the reductant. MOR activity has been characterized by both cyclic voltammetry and chronoamperometry, the current density and mass specific current at the peak potential (ca. 0.9 V vs. RHE) reaches 11.6 mA/cm^2 and 860 mA/mgpt, respectively. After electro-deposition of Ru onto the Pt/MWCNTs surface, the catalysts show steady state mass specific current of 20 and 80 mA/mgpt at 0.5 and 0.6 V, respectively. 相似文献
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Cu/Cr催化剂上的甲醇部分氧化制氢 总被引:3,自引:5,他引:3
采用共沉淀法,制得不同配比的Cu/Cr催化剂;考察了O2/CH3OH比对甲醇部分氧化制氢(CH3OH+1/2O2→2H2+CO2)反应活性的影响;利用TPR、XRD、BET、N2O测定Cu表面积等手段对Cu/Cr催化剂进行了表征。活性评价结果表明,在低的O2/CH3OH比时,Cu60Cr40催化剂的活性较差,但O2/CH3OH比接近0.5时,活性较好,且氢的选择性也较高,结合表征结果推测,催化剂中的Cu^ /Cu^0比可能决定了甲醇的转化率。 相似文献
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采用化学共还原法制备了聚乙烯吡咯烷酮(PVP)稳定的Pt/Ni双金属纳米溶胶.采用紫外-可见光谱(UV-Vis)、透射电子显微镜(TEM)对所合成的Pt/Ni双金属纳米溶胶进行了表征, 并系统研究了PVP用量、还原剂用量和浓度、双金属比例对该双金属纳米溶胶催化剂催化性能的影响.结果表明, 所制备的双金属纳米溶胶的平均粒径在2.0 nm左右, Pt/Ni双金属纳米溶胶的催化活性比Pt及Ni单金属纳米溶胶的高, 当Pt/Ni摩尔比为1:4时, 纳米溶胶的催化活性最高, 其活性值为16640 molH2·molPt-1·h-1.所制备的Pt/Ni双金属纳米溶胶催化剂具有很好的耐久性, 5次催化实验后该催化剂仍保持较高的催化活性.该双金属纳米溶胶催化NaBH4水解反应的活化能为48 kJ/mol. 相似文献
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用化学还原法合成了Aucore@Ptshell纳米粒子, 并用扫描电子显微镜(SEM)及X射线衍射(XRD)等技术对纳米粒子进行表征; 采用电化学原位表面增强拉曼光谱(SERS)技术对甲酸的电催化氧化过程进行了研究, 成功地获得了甲酸在Aucore@Ptshell/Pt电极上解离吸附的原位SERS. 结果显示, 在开路电位时, 甲酸能在Aucore@Ptshell/Pt电极表面自发氧化, 解离生成强吸附中间体COad和弱吸附中间体HCOOad, 在电位为+0.10 V时检测到氧化产物CO2的谱峰. 研究结果表明, Aucore@Ptshell/Pt电极对甲酸的氧化具有较高的催化活性和较强的SERS效应, 甲酸在Aucore@Ptshell/Pt电极上的电催化氧化过程遵循双途径机理. 相似文献