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Preparation of Pt/C Catalyst with a New and Simple Organic Sol Method 被引量:4
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作者 YaWenTANG GangLI +2 位作者 ChangPengLIU WeiX1NG TianHongLU 《Chinese Chemical Letters》 SCIE CAS CSCD 2004年第7期875-878,共4页
It is reported for the first time that the Pt/C catalyst can be prepared with a new and simple organic sol method using SnCl2 as the reductant. It was found that the average size of the Pt particles in the Pt/C cataly... It is reported for the first time that the Pt/C catalyst can be prepared with a new and simple organic sol method using SnCl2 as the reductant. It was found that the average size of the Pt particles in the Pt/C catalysts could be controlled with controlling the preparation conditions. The effect of the average sizes of the Pt particles in the Pt/C catalysts obtained with this method on the electrocatalytical activity of the oxidation of methanol was investigated. 展开更多
关键词 pt colloid pt/c catalyst particle size.
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Rapid synthesis of highly active Pt/C catalysts with various metal loadings from single batch platinum colloid 被引量:2
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作者 Yuxin Li Xiang Zhu +3 位作者 Yawen Chen Shiqiao Zhang Jia Li Jianguo Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第8期138-145,I0005,共9页
A series of Pt/C catalysts for proton exchange membrane fuel cells(PEMFCs) with various metal loadings is synthesized by a microwave-assisted polyol process via mixing an extremely stable platinum colloid(> 3 month... A series of Pt/C catalysts for proton exchange membrane fuel cells(PEMFCs) with various metal loadings is synthesized by a microwave-assisted polyol process via mixing an extremely stable platinum colloid(> 3 months’ shelf life) from single batch preparation with activated carbon ethylene glycol suspension.21 wt%, 42 wt% and 61 wt% Pt loadings are employed to showcase the advantages of the improved polyol process. The ultraviolet(UV)–visible spectra and ζ-potential measurements are conducted to monitor the wet chemistry process during catalyst preparation. The powder X-ray diffraction(XRD), transmission electron microscopy(TEM) and thermogravimetric analysis(TGA) characterizations are carried out on catalysts. The catalyst activities are investigated using electrochemical and single cell tests. The stability of Pt nanoparticle colloid is explored by ORR, cyclic voltammetry(CV) and ζ-potential measurements. The TEM results show the Pt particle sizes of the colloid, and the sizes of the 21 wt%, 42 wt% and 61 wt%Pt/C samples are 2.1–3.9 nm. Because of the high Pt dispersion, the Pt/C catalysts exhibit superior electroactivity toward ORR. In addition, four 61 wt% Pt/C catalysts made from the Pt colloid with 0–3 months’ shelf life show almost the same performance, which exhibits superior stability of the Pt colloid system without surfactant protection. 展开更多
关键词 PEMFc pt/c catalyst Microwave irradiation Modified polyol process Platinum nanocolloid Oxygen reduction reaction
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Taming Electrons in Pt/C Catalysts to Boost the Mesokinetics of Hydrogen Production 被引量:2
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作者 Wenyao Chen Wenzhao Fu +6 位作者 Xuezhi Duan Bingxu Chen Gang Qian Rui Si Xinggui Zhou Weikang Yuan De Chen 《Engineering》 SCIE EI CAS 2022年第7期124-133,共10页
Taming the electron transfer across metal–support interfaces appears to be an attractive yet challenging methodology to boost catalytic properties.Herein,we demonstrate a precise engineering strategy for the carbon s... Taming the electron transfer across metal–support interfaces appears to be an attractive yet challenging methodology to boost catalytic properties.Herein,we demonstrate a precise engineering strategy for the carbon surface chemistry of Pt/C catalysts—that is,for the electron-withdrawing/donating oxygencontaining groups on the carbon surface—to fine-tune the electrons of the supported metal nanoparticles.Taking the ammonia borane hydrolysis as an example,a combination of density functional theory(DFT)calculations,advanced characterizations,and kinetics and isotopic analyses reveals quantifiable relationships among the carbon surface chemistry,Pt charge state and binding energy,activation entropy/enthalpy,and resultant catalytic activity.After decoupling the influences of other factors,the Pt charge is unprecedentedly identified as an experimentally measurable descriptor of the Pt active site,contributing to a 15-fold increment in the hydrogen generation rate.Further incorporating the Pt charge with the number of Pt active sites,a mesokinetics model is proposed for the first time that can individually quantify the contributions of the electronic and geometric properties to precisely predict the catalytic performance.Our results demonstrate a potentially groundbreaking methodology to design and manipulate metal–carbon catalysts with desirable properties. 展开更多
关键词 Mesokinetics model catalyst descriptor pt charge state carbon surface chemistry Hydrogen generation activity
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Se掺杂改性增强CO催化剂Pt/TiO_(2)抗硫性能机理
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作者 王延 何璐瑶 +4 位作者 黄海敏 罗望平 朱刚 梁明华 刘弼华 《烧结球团》 北大核心 2025年第1期110-116,共7页
针对含硫烧结烟气中Pt/TiO_(2)催化氧化CO过程中SO_(2)毒化的问题,采用硒(Se)掺杂改性提高其抗硫性。通过固定床抗硫毒化性能测试、孔隙结构分析、XRD、XPS和SO_(2)-TPD等表征手段,研究了Se掺杂增强Pt/TiO_(2)催化剂(PSeT)抗硫能力的原... 针对含硫烧结烟气中Pt/TiO_(2)催化氧化CO过程中SO_(2)毒化的问题,采用硒(Se)掺杂改性提高其抗硫性。通过固定床抗硫毒化性能测试、孔隙结构分析、XRD、XPS和SO_(2)-TPD等表征手段,研究了Se掺杂增强Pt/TiO_(2)催化剂(PSeT)抗硫能力的原因。结果表明;掺杂质量分数为0.1%的Se,Pt/TiO_(2)催化剂(PSe_(0.10)T)具有最优的抗硫性能,200℃通入798 mg/m^(3)SO_(2)时,催化效率从100%略微降低,且在12 h长期测试后脱除率仍大于80%,去掉SO_(2)后,催化效率逐渐恢复至100%;SO_(2)毒化后,PSe_(0.10)T催化剂的N_(2)吸附量、比表面积降低幅度较小,抑制硫酸盐沉积效果明显;SO_(2)毒化后,XRD测试结果均未发现新物相,XPS测试结果表明PSe_(0.10)T催化剂表面S元素含量最低,且硫化产物为TiOSO 4;SO_(2)-TPD分析表明,PSe_(0.10)T催化剂对SO_(2)吸附性较弱,且具有较低的硫酸盐分解温度,表现出良好的抗硫性能。该研究结果可为开发高性能抗硫CO氧化催化剂提供理论依据。 展开更多
关键词 pt/TiO_(2)催化剂 cO催化氧化 改性 抗硫
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De novo-design of highly exposed Co−N−C single-atom catalyst for oxygen reduction reaction
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作者 ZHOU Dan ZHU Hongyue +1 位作者 ZHAO Yang LIU Yiming 《燃料化学学报(中英文)》 北大核心 2025年第1期128-137,共10页
The nitrogen-coordinated metal single-atom catalysts(M−N−C SACs)with an ultra-high metal loading synthetized by direct high-temperature pyrolysis have been widely reported.However,most of metal single atoms in these c... The nitrogen-coordinated metal single-atom catalysts(M−N−C SACs)with an ultra-high metal loading synthetized by direct high-temperature pyrolysis have been widely reported.However,most of metal single atoms in these catalysts were buried in the carbon matrix,resulting in a low metal utilization and inaccessibility for adsorption of reactants during the catalytic process.Herein,we reported a facile synthesis based on the hard-soft acid-base(HSAB)theory to fabricate Co single-atom catalysts with highly exposed metal atoms ligated to the external pyridinic-N sites of a nitrogen-doped carbon support.Benefiting from the highly accessible Co active sites,the prepared Co−N−C SAC exhibited a superior oxygen reduction reactivity comparable to that of the commercial Pt/C catalyst,showing a high turnover frequency(TOF)of 0.93 e^(−)·s^(-1)·site^(-1)at 0.85 V vs.RHE,far exceeding those of some representative SACs with a ultra-high metal content.This work provides a rational strategy to design and prepare M−N−C single-atom catalysts featured with high site-accessibility and site-density. 展开更多
关键词 hard-soft acid-base co−N−c single-atom catalyst highly accessible active sites oxygen reduction reaction
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Silica-modified Pt/TiO_(2) catalysts with tunable suppression of strong metal-support interaction for cinnamaldehyde hydrogenation
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作者 Zhengjian Hou Yuanyuan Zhu +6 位作者 Hua Chi Li Zhao Huijie Wei Yanyan Xi Lishuang Ma Xiang Feng Xufeng Lin 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期189-198,共10页
Tuning Strong Metal-support Interactions(SMSI)is a key strategy to obtain highly active catalysts,but conventional methods usually enable TiO_(x) encapsulation of noble metal components to minimize the exposure of nob... Tuning Strong Metal-support Interactions(SMSI)is a key strategy to obtain highly active catalysts,but conventional methods usually enable TiO_(x) encapsulation of noble metal components to minimize the exposure of noble metals.This study demonstrates a catalyst preparation method to modulate a weak encapsulation of Pt metal nanoparticles(NPs)with the supported TiO_(2),achieving the moderate suppression of SMSI effects.The introduction of silica inhibits this encapsulation,as reflected in the characterization results such as XPS and HRTEM,while the Ti^(4+) to Ti^(3+) conversion due to SMSI can still be found on the support surface.Furthermore,the hydrogenation of cinnamaldehyde(CAL)as a probe reaction revealed that once this encapsulation behavior was suppressed,the adsorption capacity of the catalyst for small molecules like H_(2) and CO was enhanced,which thereby improved the catalytic activity and facilitated the hydrogenation of CAL.Meanwhile,the introduction of SiO_(2) also changed the surface structure of the catalyst,which inhibited the occurrence of the acetal reaction and improved the conversion efficiency of C=O and C=C hydrogenation.Systematic manipulation of SMSI formation and its consequence on the performance in catalytic hydrogenation reactions are discussed. 展开更多
关键词 pt catalyst Silica modification HYDROGENATION cINNAMALDEHYDE Strong metal-support interaction
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Preparation of high active Pt/C cathode electrocatalyst for direct methanol fuel cell by citrate-stabilized method 被引量:3
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作者 蒋庆来 彭忠东 +3 位作者 谢晓峰 杜柯 胡国荣 刘业翔 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第1期127-132,共6页
Platinum nanoparticles supported on carbons(Pt/C,60%,mass fraction) electrocatalysts for direct methanol fuel cell(DMFC) were prepared by citrate-stabilized method with different reductants and carbon supports.The... Platinum nanoparticles supported on carbons(Pt/C,60%,mass fraction) electrocatalysts for direct methanol fuel cell(DMFC) were prepared by citrate-stabilized method with different reductants and carbon supports.The catalysts were characterized by X-ray diffraction(XRD),transmission electron microscopy(TEM) and cyclic voltammetry(CV).It is found that the size of Pt nanoparticles on carbon is controllable by citrate addition and reductant optimization,and the form of carbon support has a great influence on electrocatalytic activity of catalysts.The citrate-stabilized Pt nanoparticles supported on BP2000 carbon,which was reduced by formaldehyde,exhibit the best performance with about 2 nm in diameter and 66.46 m2/g(Pt) in electrocatalytic active surface(EAS) area.Test on single DMFC with 60%(mass fraction) Pt/BP2000 as cathode electrocatalyst showed maximum power density at 78.8 mW/cm2. 展开更多
关键词 direct methanol fuel cell catalyst pt/c cITRATE reductant carbon support
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PtSnNa/SUZ-4:An efficient catalyst for propane dehydrogenation 被引量:9
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作者 周华兰 龚静静 +4 位作者 许波连 邓生财 丁元华 俞磊 范以宁 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第3期529-536,共8页
The structure and catalytic properties of PtSn catalysts supported on SUZ-4 and ZSM-5 zeolite have been studied by using various experimental techniques including XRD,nitrogen adsorption,NH3-TPD,TG,H2-TPR and TPO tech... The structure and catalytic properties of PtSn catalysts supported on SUZ-4 and ZSM-5 zeolite have been studied by using various experimental techniques including XRD,nitrogen adsorption,NH3-TPD,TG,H2-TPR and TPO techniques combined with propane dehydrogenation tests.It has been shown that SUZ-4-supported PtSnNa(PtSnNa/SUZ-4) was determined to be a better catalyst for propane dehydrogenation than conventional catalysts supported on ZSM-5,owing to its higher catalytic activity and stability.Dibenzothiophene poisoning experiments were performed to investigate the detailed structures of the two supported catalysts.The characterization of the two catalysts indicates that the distribution of Pt on the porous support affects the activity.In contrast to ZSM-5-supported catalysts,Pt particles on the PtSnNa/SUZ-4 are primarily dispersed over the external surface and are not as readily deactivated by carbon deposition.This is because that the strong acid sites of the SUZ-4 zeolite evidently prevented the impregnation of the Pt precursor H_2PtCl_6 into the zeolite.In contrast,the weak acid sites of the ZSM-5 zeolite led to more of the precursor entering the zeolite tunnels,followed by transformation to highly dispersed Pt clusters during calcination.In the case of the PtSnNa/ZSM-5,the interactions between Sn oxides and the support were lessened,owing to the weaker acidity of the ZSM-5 zeolite.The dispersed Sn oxides were therefore easier to reduce to the metallic state,thus decreasing the catalytic activity for hydrocarbon dehydrogenation. 展开更多
关键词 SUZ-4 zeolite ptSnNa catalyst Propane dehydrogenation catalyst stability pt distribution
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Propene and CO oxidation on Pt/Ce-Zr-SO_4^(2-) diesel oxidation catalysts:Effect of sulfate on activity and stability 被引量:9
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作者 顾蕾 陈晓 +3 位作者 周瑛 朱秋莲 黄海凤 卢晗锋 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第3期607-616,共10页
Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improv... Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improved the catalytic activity significantly.When using Pt/Ce-Zr-SO_4^(2-) with 10 wt%SO_4^(2-),the temperature for 90%conversion of propene and CO decreased by 75℃ compared with Pt/Ce-Zr.The conversion exceeded 95%at 240℃ even after 0.02%sulfur dioxide poisoning for 20 h.Temperature-programmed desorption of CO and X-ray photoelectron spectroscopy analyses revealed an improvement in Pt dispersion onto the Ce-Zr-SO_4^(2-) support,and the increased number of Pt particles built up more Pt^(-)-(SO_4^(2-))^(-) couples,which resulted in excellent activity.The increased total acidity and new Bronsted acid sites on the surface provided the Pt/Ce-Zr-SO_4^(2-) with good sulfur resistance. 展开更多
关键词 Diesel oxidation catalyst pt/ce-Zr-SO_4^(2-) catalyst Sulfur resistance catalytic oxidation
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Chemoselective Transfer Hydrogenation of Cinnamaldehyde over Activated Charcoal Supported Pt/Fe3O4 Catalyst 被引量:1
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作者 张勇 陈春 +5 位作者 龚万兵 宋杰瑶 苏燕平 张海民 汪国忠 赵惠军 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2017年第4期467-473,I0002,共8页
A variety of spherical and structured activated charcoal supported Pt/Fe3O4 composites with an average particle size of ~100 nm have been synthesized by a self-assembly method using the difference of reduction potenti... A variety of spherical and structured activated charcoal supported Pt/Fe3O4 composites with an average particle size of ~100 nm have been synthesized by a self-assembly method using the difference of reduction potential between Pt (Ⅳ) and Fe (Ⅱ) precursors as driving force. The formed Fe3O4 nanoparticles (NPs) effectively prevent the aggregation of Pt nanocrystallites and promote the dispersion of Pt NPs on the surface of catalyst, which will be favorable for the exposure of Pt active sites for high-efficient adsorption and contact of substrate and hydrogen donor. The electron-enrichment state of Pt NPs donated by Fe304 nanocrystallites is corroborated by XPS measurement, which is responsible for promoting and activating the terminal C=O bond of adsorbed substrate via a vertical configuration. The experimental results show that the activated charcoal supported Pt/Fe3O4 catalyst exhibits 94.8% selectivity towards cinnamyl alcohol by the transfer hydrogenation of einnamaldehyde with Pt loading of 2.46% under the optimum conditions of 120 ℃ for 6 h, and 2-propanol as a hydrogen donor. Additionally, the present study demonstrates that a high-efficient and recyclable catalyst can be rapidly separated from the mixture due to its natural magnetism upon the application of magnetic field. 展开更多
关键词 Activated charcoal supported pt/Fe3O4 catalysts Redox method Transfer hydrogenation cinnamaldehyde cinnamyl alcohol
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Fe改性Pt/C催化剂催化混合硝基氯苯氨解产物加氢的研究
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作者 张健 丁军委 张效磊 《青岛科技大学学报(自然科学版)》 CAS 2024年第5期22-31,共10页
使用浸渍-还原法分别制备了3%Pd/C、3%Pt/C和3%Pt-Fe/C催化剂,通过ICP、TEM、XPS等方法对催化剂的金属含量、表面形态、电子状态进行了表征。将制备的催化剂用于以混合硝基氯苯氨解后产物邻、对硝基苯胺和间硝基氯苯为原料,催化加氢合... 使用浸渍-还原法分别制备了3%Pd/C、3%Pt/C和3%Pt-Fe/C催化剂,通过ICP、TEM、XPS等方法对催化剂的金属含量、表面形态、电子状态进行了表征。将制备的催化剂用于以混合硝基氯苯氨解后产物邻、对硝基苯胺和间硝基氯苯为原料,催化加氢合成邻、对苯二胺和间氯苯胺反应。通过对比3种催化剂,得到3%Pt-Fe/C催化剂催化效果最好。以3%Pt-Fe/C为催化剂,考察了各因素对混合硝基氯苯氨解产物加氢反应的影响,确定了反应的最优条件:起始催化剂用量0.8%(以反应原料的质量分数计),m(甲醇)∶m(水)=50∶50为溶剂,温度85℃,压力2 MPa,搅拌转速600 r·min^(-1)。在此条件下,反应物转化率为100%,邻、对苯二胺和间氯苯胺的总收率可以达到99%以上,催化剂可重复使用19次。对新鲜和失活的Pt-Fe/C催化剂进行BET、CO化学吸附、TEM等表征,发现失活后催化剂的比表面积大幅下降,判定催化剂孔道堵塞是导致催化剂失活的主要原因。 展开更多
关键词 pt-Fe/c 苯二胺 间氯苯胺 催化加氢
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SYNTHESIS OF MPt/C (M=La, Nd) CATALYSTS BY MICROWAVE RADIATION
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作者 ZHANGYanfeng LIZhong +1 位作者 YANGShuting CAOZhaoxia 《Chinese Journal of Reactive Polymers》 2004年第1期35-42,共8页
In this paper, MPt/C (M= La, Nd) catalysts of PEMFC were synthesized by microwave radiation process. The crystallinity and structure of catalysts were respectively analyzed by XRD and nitrogen adsorption tests. The ac... In this paper, MPt/C (M= La, Nd) catalysts of PEMFC were synthesized by microwave radiation process. The crystallinity and structure of catalysts were respectively analyzed by XRD and nitrogen adsorption tests. The activity of catalysts was investigated by electrochemistry experiment. The results showed that: 1) compared with Pt/C catalyst prepared by typical impregnation-reduction process, the size of MPt/C catalyst particle decreased and the available crystal for O2 reduction increased; 2) the MPt/C catalysts had relatively high BET surface areas; and 3)these crystal transformations of the MPt/C catalyst brought high the electrocatalytic activity, and as a result, improved the power of PEMFC. 展开更多
关键词 PEMFc pt/c catalyst DOPE Microwave radiation.
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用于水氢同位素交换的非均匀型分布Pt/SDB疏水催化剂
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作者 黄丽 吴栋 刘亚明 《工业催化》 2025年第1期64-69,共6页
以聚苯乙烯-二乙烯基苯(SDB)为载体,先用竞争吸附剂对载体进行预处理,然后经浸渍、干燥和氢气高温还原工艺制备Pt/SDB疏水催化剂。采用X射线衍射(XRD)、扫描电镜(SEM)联合EDS能谱仪、透射电镜(TEM)和X射线光电子能谱(XPS)等对催化剂进... 以聚苯乙烯-二乙烯基苯(SDB)为载体,先用竞争吸附剂对载体进行预处理,然后经浸渍、干燥和氢气高温还原工艺制备Pt/SDB疏水催化剂。采用X射线衍射(XRD)、扫描电镜(SEM)联合EDS能谱仪、透射电镜(TEM)和X射线光电子能谱(XPS)等对催化剂进行表征。结果表明,催化剂具有显著的蛋壳型特征,其活性组分Pt主要分布在载体0.12 mm的浅表层,前驱体氯铂酸得到较充分的还原,与均匀型催化剂相比,提高了催化剂的催化活性和贵金属的利用率。 展开更多
关键词 催化化学 疏水催化剂 pt/SDB 水氢交换
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高电位下PEMFC阴极催化层Pt对碳腐蚀的影响
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作者 刘明俊 周芬 +3 位作者 朱振 黄鹏涛 姚志鹏 潘牧 《电源技术》 CAS 北大核心 2024年第6期1003-1010,共8页
结合非色散红外光谱(NDIR)和电化学表征的方法研究了质子交换膜燃料电池阴极催化层在0.8 V恒电位下,碳腐蚀的变化规律及其对Pt氧化过程的依赖性。研究发现0.8 V恒电位下,Pt会导致碳载体的腐蚀更加剧烈。运行100 h后,Pt/C电极的碳损失质... 结合非色散红外光谱(NDIR)和电化学表征的方法研究了质子交换膜燃料电池阴极催化层在0.8 V恒电位下,碳腐蚀的变化规律及其对Pt氧化过程的依赖性。研究发现0.8 V恒电位下,Pt会导致碳载体的腐蚀更加剧烈。运行100 h后,Pt/C电极的碳损失质量达到8.7%,是纯碳电极的3.5倍。Pt/C电极的碳腐蚀规律可以分为三个阶段,第一阶段呈对数增长,第三阶段呈线性增长,中间存在混合增长区。而Pt氧化物累积量分析表明Pt的氧化呈现出两段对数关系,且中间存在一个过渡区,这解释了碳腐蚀的三段规律。活跃的Pt-OH催化碳腐蚀,并快速转化成PtO_(x)等惰性氧化物,大幅降低对碳腐蚀的促进作用,当Pt-OH含量稳定后,碳腐蚀速率达到稳态。电位阶跃工况下,Pt氧化物增长速度明显降低,碳载体质量损失达到了15.55%,几乎是恒电位工况的2倍,表明控制Pt氧化物累积速度会加速碳载体的腐蚀。 展开更多
关键词 碳载体腐蚀 0.8 V恒电位 pt催化剂 pt氧化物
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PtSn@S-1&β-Mo_(2)C串联催化剂CO_(2)氧化丙烷脱氢制丙烯性能研究 被引量:1
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作者 夏瑶靓 边凯 +3 位作者 刘思蕊 王志群 张光辉 郭新闻 《低碳化学与化工》 CAS 北大核心 2024年第7期96-103,共8页
PtSn双金属催化剂因具有高活性和高选择性被广泛应用于丙烷脱氢制丙烯反应中。然而在高温下,催化剂易产生积炭从而导致稳定性降低。二氧化碳氧化丙烷脱氢(CO_(2)-PDH)因其有望在转化丙烷的同时兼具消除积炭和推动脱氢反应正向移动的特点... PtSn双金属催化剂因具有高活性和高选择性被广泛应用于丙烷脱氢制丙烯反应中。然而在高温下,催化剂易产生积炭从而导致稳定性降低。二氧化碳氧化丙烷脱氢(CO_(2)-PDH)因其有望在转化丙烷的同时兼具消除积炭和推动脱氢反应正向移动的特点,已成为新的研究热点。将逆水煤气催化剂β-Mo_(2)C与丙烷脱氢催化剂PtSn@S-1串联用于CO_(2)-PDH反应中,开发高活性、高选择性和高稳定性的催化剂,并结合XRD、CO_(2)-TPD、C3H6-TPD及热重等方法对催化剂进行了表征。结果表明,在CO_(2)-PDH反应中,PtSn@S-1串联加入β-Mo_(2)C后,粉末混合的串联催化剂PtSn@S-1&β-Mo_(2)C的稳定性明显提升,并在连续运转1440min内未出现失活现象,催化剂的高稳定性归因于反应过程中CO_(2)消除了部分积炭。对反应条件进行了优化,发现在n(CO_(2)):n(C3H8)为1.0、m(PtSn@S-1):m(β-Mo_(2)C)为1.0:0.4时,粉末混合的串联催化剂PtSn@S-1&β-Mo_(2)C在CO_(2)-PDH反应中表现出最佳性能,丙烷转化率在反应500min后稳定在43.0%以上,丙烯选择性超过99%。 展开更多
关键词 ptSn@S-1 β-Mo_(2)c 串联催化剂 二氧化碳氧化丙烷脱氢
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Pt基催化剂上CO_(2)辅助丙烷脱氢的反应机理
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作者 杨倩 聂小娃 +1 位作者 丁凡舒 郭新闻 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2024年第2期480-492,共13页
Pt基双金属是一种具有发展前景的丙烷脱氢催化剂,CO_(2)在Pt基催化剂上辅助丙烷脱氢的微观反应机理与优势能量路径尚不明确,为此,采用密度泛函理论(DFT)计算研究了Pt(111)表面及Pt3Mn(111)表面上丙烷直接脱氢反应(PDH)及CO_(2)辅助丙烷... Pt基双金属是一种具有发展前景的丙烷脱氢催化剂,CO_(2)在Pt基催化剂上辅助丙烷脱氢的微观反应机理与优势能量路径尚不明确,为此,采用密度泛函理论(DFT)计算研究了Pt(111)表面及Pt3Mn(111)表面上丙烷直接脱氢反应(PDH)及CO_(2)辅助丙烷脱氢反应(CO_(2)-ODH)的反应网络与关键步骤。计算结果表明:CO_(2)的加入可以降低PDH速控步骤的能垒,对于消耗表面H有利,促进了丙烷脱氢反应正向移动,有利于生成丙烯,从而改变了反应路径和反应动力学;CO_(2)在消除积炭反应中的能垒较高,但是Mn的引入有利于CO_(2)消除积炭。此外,第二金属组分Mn的引入,不但有利于产物丙烯脱附,还提高了C—C裂解能垒,从而提高了丙烯的选择性。 展开更多
关键词 丙烷脱氢 二氧化碳 辅助 pt基催化剂 密度泛函理论 反应机理
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Pt/C催化剂催化邻硝基苯甲醚加氢制备邻氨基苯甲醚
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作者 龙慧 崔小舟 +4 位作者 李英圻 彭秧锡 唐兆丰 彭伟才 王刚 《化工生产与技术》 CAS 2024年第1期1-3,23,I0002,共5页
以邻硝基苯甲醚为原料,采用Pt/C催化剂,通过液相催化加氢工艺合成邻氨基苯甲醚,研究不同反应条件对其转化率和选择性的影响,确定最佳工艺条件为,无水乙醇作溶剂、反应温度80℃、反应压力2 MPa、Pt/C催化剂用量0.01 g和反应时间2 h。相... 以邻硝基苯甲醚为原料,采用Pt/C催化剂,通过液相催化加氢工艺合成邻氨基苯甲醚,研究不同反应条件对其转化率和选择性的影响,确定最佳工艺条件为,无水乙醇作溶剂、反应温度80℃、反应压力2 MPa、Pt/C催化剂用量0.01 g和反应时间2 h。相比传统硫化钠法和铁粉盐酸法等,催化加氢还原工艺可有效解决废水污染问题,提高产品收率和品质,降低生产成本,同时更易实现自动化生产,属于绿色新型工艺,具有良好的工业化前景。 展开更多
关键词 pt/c催化剂 催化加氢 邻硝基苯甲醚 邻氨基苯甲醚
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Enhanced CO oxidation over potassium-promoted Pt/Al_2O_3 catalysts:Kinetic and infrared spectroscopic study 被引量:1
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作者 刘欢欢 贾爱平 +2 位作者 王瑜 罗孟飞 鲁继青 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1976-1986,共11页
A series of K-promoted Pt/Al2O3 catalysts were tested for CO oxidation. It was found that the addition of K significantly enhanced the activity. A detailed kinetic study showed that the activation energies of the K-co... A series of K-promoted Pt/Al2O3 catalysts were tested for CO oxidation. It was found that the addition of K significantly enhanced the activity. A detailed kinetic study showed that the activation energies of the K-containing catalysts were lower than those of the K-free ones, particularly for catalysts with high Pt contents (51.6 k)/mol for 0.42K-2.0Pt/Al2O3 and 6:3.6 kJ/mol for 2.0Pt/Al2O3 ). The CO reaction orders were higher for the K-containing catalysts (about -0.2) than for the K-free ones (about -0.5), with the former having much lower equilibrium constants for CO adsorption than the latter. In situ Fourier-transform infrared spectroscopy showed that surface CO desorption from the 0.42K-2.0Pt/Al2O3 catalyst was easier than from 2.0Pt/Al2O3. The promoting effect of K was therefore caused by weakening of the interactions between CO and surface Pt atoms. This decreased coverage of the catalyst with CO and facilitated competitive O2 chemisorption on the Pt surface, and significantly lowered the reaction barrier between chemisorbed CO and O2 species. 展开更多
关键词 cO oxidation Potassium Kinetics pt/Al2O3 catalyst Promoting effect
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Se掺杂改性对Pt/TiO_(2)催化剂结构及其CO催化性能的影响
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作者 龚天龙 刘弼华 +4 位作者 张志波 黄国军 梁明华 赵利明 康建刚 《烧结球团》 北大核心 2024年第6期96-103,共8页
Pt/TiO_(2)催化剂已被用于环境中CO的催化氧化,其在工业烟气CO排放治理方面取得了许多进展。本文通过制备不同Se含量掺杂的Pt/TiO_(2)催化剂,利用SEM(EDS)、XRD检测手段研究Pt/TiO_(2)催化剂的结构组成和微观形貌,通过XPS、CO-TPD和H_(2... Pt/TiO_(2)催化剂已被用于环境中CO的催化氧化,其在工业烟气CO排放治理方面取得了许多进展。本文通过制备不同Se含量掺杂的Pt/TiO_(2)催化剂,利用SEM(EDS)、XRD检测手段研究Pt/TiO_(2)催化剂的结构组成和微观形貌,通过XPS、CO-TPD和H_(2)-TPR检测手段研究催化剂表面的元素价态,总结Se掺杂对Pt/TiO_(2)催化剂性能的影响机制。结果表明:Se的掺杂促进了金属-载体中的电子转移,增加了Ti^(3+)和氧空位,有利于活性氧的流动;同时,Se的掺杂增强了催化剂的强金属-载体相互作用(strong metal-support interaction,SMSI)效应,促进电子由Pt向Se移动,使Pt的价态升高,增加了活性位点中的PtO_(x)含量,使反应的活性氧增多。催化剂性能测试结果发现,掺杂0.1%Se时,Pt/TiO_(2)催化剂的CO催化氧化性能最佳。 展开更多
关键词 cO催化氧化 pt/TiO_(2)催化剂 改性 Se掺杂
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基于晶格匹配Pt-Co-ZnO三元界面催化剂设计及其催化CO_(2)加氢性能
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作者 万雅琴 张煜华 +1 位作者 李金林 王立 《石油炼制与化工》 CAS CSCD 北大核心 2024年第2期144-152,共9页
针对精准构建多组分固体催化剂纳米多元界面的难题,鉴于六方晶型氧化亚钴(hcp-CoO)与氧化锌(ZnO)具有超高的晶格匹配度(大于99.8%),采用晶格匹配策略定向构建Pt-Co-ZnO三元界面,设计合成了三元催化剂Pt-ZnO@CoO,并利用扫描电镜(SEM)、... 针对精准构建多组分固体催化剂纳米多元界面的难题,鉴于六方晶型氧化亚钴(hcp-CoO)与氧化锌(ZnO)具有超高的晶格匹配度(大于99.8%),采用晶格匹配策略定向构建Pt-Co-ZnO三元界面,设计合成了三元催化剂Pt-ZnO@CoO,并利用扫描电镜(SEM)、扫描透射电镜(STEM)、能量色散X射线光谱(EDX)、X射线衍射(XRD)、电感耦合等离子质谱仪(ICP-MS)、氢气程序升温还原(H_(2)-TPR)、二氧化碳程序升温脱附(CO_(2)-TPD)等方法对其形貌、元素分布、物相结构、元素含量、还原能力和吸附能力进行了表征,进而在固定床反应器上评价了其CO_(2)加氢反应的催化性能。结果表明:在制备的Pt-ZnO@CoO催化剂上,Co、Pt均高度分散于ZnO表面;催化剂经过还原处理,CoO和Pt前体被还原为纳米颗粒,从而形成Pt-Co-ZnO三元界面;Pt-ZnO@CoO催化剂对CO_(2)加氢反应显示出优异的催化活性和稳定性,这是因为其具有高密度的界面位点、较强的还原能力和较强的CO_(2)吸附能力。 展开更多
关键词 三元界面 pt-co催化剂 cO_(2)加氢 晶格匹配
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