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Research progress of catalysts for synthesis of glycerol carbonate form glycerol and urea
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作者 WANG Yuhua LI Hongguang +3 位作者 DING Liang KOU Yongli QI Wenbo ZHAO Ning 《燃料化学学报(中英文)》 北大核心 2025年第6期964-982,共19页
Transformation of urea and glycerol to glycerol carbonate is an environmental friendly and economical process.Catalysts play an indispensable role in the process.Although many catalysts have been developed,the perform... Transformation of urea and glycerol to glycerol carbonate is an environmental friendly and economical process.Catalysts play an indispensable role in the process.Although many catalysts have been developed,the performance of the catalysts still cannot meet the needs of industrialization.In this paper,research progress of the homogeneous and heterogeneous catalysts of the reaction over the past 20 years were reviewed systematically.According to the types and active centers of catalysts,the catalysts were classified systematically and analyzed in detail.The typical reaction mechanisms were also summarized.The research and development direction of catalysts is made more explicit through systematic classification and mechanism analysis.The article reveals more novel catalysts have been designed and used for the reaction,such as mixed metal oxides with special structures,solid wastes and non-metallic materials.This work summarized the current state of research and prospected possible routes for design of novel catalysts.It is hoped that this review can provide some references for developing efficient catalysts. 展开更多
关键词 glycerol carbonate GLYCEROL UREA catalystS
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Roles of Sn-promoter and carbon nanotubes treatment on supported CoB catalysts for hydrogen production
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作者 SHI Limin LI Yanbo +2 位作者 LEI Qiang REN Rongzhi WANG Yujing 《燃料化学学报(中英文)》 北大核心 2025年第5期703-712,共10页
Carbon nanotubes(CNTs)supported CoB and CoBSn catalysts were synthesized for hydrogen production via NaBH4 hydrolysis.The roles of Sn-promoter and the effect of CNTs treatment on CoB catalysts were evaluated and discu... Carbon nanotubes(CNTs)supported CoB and CoBSn catalysts were synthesized for hydrogen production via NaBH4 hydrolysis.The roles of Sn-promoter and the effect of CNTs treatment on CoB catalysts were evaluated and discussed.It is found that after the addition of Sn promoter,the specific surface area and the generation of active CoB phase are increased,while the oxidation treatment of CNTs results in more loading amounts of active components and enrichment of electron at active sites as well as large surface area.Consequently,the Sn-doped CoB catalysts supported on CNTs with oxidation treatment exhibits a significantly improved activity with a high H_(2)generation rate of 2640 mL/(min·g).Meanwhile,this catalyst shows a low activation energy of 43.7 kJ/mol and relatively high reusability. 展开更多
关键词 sodium borohydride hydrolysis CoB-based catalysts Sn promoter carbon nanotubes oxidation treatment
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Methods for the formation of M-N_(x)-C active sites on single-atom catalysts and their role in persulfate activation by non-radical paths
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作者 SI Wen-hao SI Jin-xuan +4 位作者 WANG Kang-jun QI Fei CHEN Jia-bin ZENG Ze-quan HUANG Zhang-gen 《新型炭材料(中英文)》 北大核心 2025年第5期993-1015,共23页
In recent years,numer-ous single-atom catalysts(SACs)have been synthesized to activate persulfate(PS)by a non-radical pathway because of its high se-lectivity,and activity for the cata-lyst.Metal-nitrogen-carbon(M-N_(... In recent years,numer-ous single-atom catalysts(SACs)have been synthesized to activate persulfate(PS)by a non-radical pathway because of its high se-lectivity,and activity for the cata-lyst.Metal-nitrogen-carbon(M-N_(x)-C)has been identified as the key active site in SACs.Although methods for preparing SACs have been extensively reported,a systematic summary of the direct construction of M-N_(x)-C,espe-cially unconventional metal-nitrogen-carbon(UM-N_(x)-C,x≠4),on SACs for PS non-radical activation has still not been reported.The role of the M-N_(x)-C active sites on PS non-radical activation is discussed and methods for the formation of M-N_(x)-C and UM-N_(x)-C active sites in SACs and the effect of catalyst carriers such as carbon nitride(g-C_(3)N_(4)),MOFs,COFs,and other car-bon materials are reviewed.Direct and indirect methods,especially for UM-N_(x)-C active site formation,are also elaborated.Factors affecting the formation of a M-N_(x)-C active site on SACs are also discussed.Prospects for the use of M-N_(x)-C active sites for the non-radical activation of PS by SACs to remove organic contaminants from wastewater are evaluated. 展开更多
关键词 Single-atom catalysts PERSULFATE Non-radical pathway Unconventional metal-nitrogen-carbon active site Organic contaminants
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Strong electronic metal-support interactions for enhanced hydroformylation activity and stability over Rh single-atom catalysts through phosphorus doping
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作者 Boyang Fu Ping Ma +11 位作者 Xiaoyang Ding Kaifu Cai Limin Sun Yujin Zhu Qiwei Yin Yihao Sun Tianle Liu Yuzhen Li Yuxing Xu Jian Gu Haowen Ma Junling Lu 《中国科学技术大学学报》 北大核心 2025年第3期2-10,1,I0001,共11页
By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts d... By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts developed thus far still suffer from the issues of much lower activity and metal leaching,which severely hinder their practical application.Here,we demonstrate that incorporating phosphorus(P)atoms into graphitic carbon nitride(PCN)supports facilitates charge transfer from Rh to the PCN support,thus largely enhancing electronic metal-support interactions(EMSIs).In the styrene hydroformylation reaction,the activity of Rh_(1)/PCN single-atom catalysts(SACs)with varying P contents exhibited a volcano-shaped relationship with P doping,where the Rh_(1)/PCN SAC with optimal P doping showed exceptional activity,approximately 5.8-and 3.3-fold greater than that of the Rh_(1)/g-C_(3)N_(4)SAC without P doping and the industrial homogeneous catalyst HRh(CO)(PPh_(3))_(3),respectively.In addition,the optimal Rh_(1)/PCN SAC catalyst also demonstrated largely enhanced multicycle stability without any visible metal aggregation owing to the increased EMSIs,which sharply differed from the severe metal aggregation of large nanoparticles on the Rh_(1)/g-C_(3)N_(4)SAC.Mechan-istic studies revealed that the enhanced catalytic performance could be attributed to electron-deficient Rh species,which reduced CO adsorption while simultaneously promoting alkene adsorption through increased EMSIs.These findings suggest that tuning EMSIs is an effective way to achieve SACs with high activity and durability. 展开更多
关键词 heterogeneous hydroformylation Rh single-atom catalysts electronic metal-support interactions phosphorus doping
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Design and Optimization of Anode Catalysts for Direct Ethanol Fuel Cells:Advances and Challenges in C-C bond Activation and Selective Modulation of the C1 Pathway
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作者 Kai-Chi Qin Meng-Tian Huo +3 位作者 Yu Liang Si-Yuan Zhu Zi-Hao Xing Jin-Fa Chang 《电化学(中英文)》 北大核心 2025年第8期1-22,共22页
Direct ethanol fuel cells(DEFCs)are a promising alternative to conventional energy sources,offering high energy density,environmental sustainability,and operational safety.Compared to methanol fuel cells,DEFCs exhibit... Direct ethanol fuel cells(DEFCs)are a promising alternative to conventional energy sources,offering high energy density,environmental sustainability,and operational safety.Compared to methanol fuel cells,DEFCs exhibit lower toxicity and a more mature preparation process.Unlike hydrogen fuel cells,DEFCs provide superior storage and transport feasibility,as well as cost-effectiveness,significantly enhancing their commercial viability.However,the stable C-C bond in ethanol creates a high activation energy barrier,often resulting in incomplete electrooxidation.Current commercial platinum(Pt)-and palladium(Pd)-based catalysts demonstrate low C-C bond cleavage efficiency(<7.5%),severely limiting DEFC energy output and power density.Furthermore,high catalyst costs and insufficient activity impede large-scale commercialization.Recent advances in DEFC anode catalyst design have focused on optimizing material composition and elucidating catalytic mechanisms.This review systematically examines developments in ethanol electrooxidation catalysts over the past five years,highlighting strategies to improve C1 pathway selectivity and C-C bond activation.Key approaches,such as alloying,nanostructure engineering,and interfacial synergy effects,are discussed alongside their mechanistic implications.Finally,we outline current challenges and future prospects for DEFC commercialization. 展开更多
关键词 Direct ethanol fuel cells Ethanol electrooxidation C-C bond cleavage ELECTROCATALYSIS Anode catalyst
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Significantly Enhanced Oxygen Reduction Reaction Activity in Co-N-C Catalysts through Synergistic Boron Doping
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作者 Chang Lan Jing-Sen Bai +8 位作者 Xin Guan Shuo Wang Nan-Shu Zhang Yu-Qing Cheng Jin-Jing Tao Yu-Yi Chu Mei-Ling Xiao Chang-Peng Liu Wei Xing 《电化学(中英文)》 北大核心 2025年第9期56-68,共13页
The weak adsorption energy of oxygen-containing intermediates on Co center leads to a considerable performance dis-parity between Co-N-C and costly Pt benchmark in catalyzing oxygen reduction reaction(ORR).In this wor... The weak adsorption energy of oxygen-containing intermediates on Co center leads to a considerable performance dis-parity between Co-N-C and costly Pt benchmark in catalyzing oxygen reduction reaction(ORR).In this work,we strategi-cally engineer the active site structure of Co-N-C via B substitution,which is accomplished by the pyrolysis of ammonium borate.During this process,the in-situ generated NH_(3)gas plays a critical role in creating surface defects and boron atoms substituting nitrogen atoms in the carbon structure.The well-designed CoB_(1)N_(3)active site endows Co with higher charge density and stronger adsorption energy toward oxygen species,potentially accelerating ORR kinetics.As expected,the resulting Co-B/N-C catalyst exhibited superior ORR performance over Co-N-C counterpart,with 40 mV,and fivefold en-hancement in half-wave potential and turnover frequency(TOF).More importantly,the excellent ORR performance could be translated into membrane electrode assembly(MEA)in a fuel cell test,delivering an impressive peak power density of 824 mW·cm^(-2),which is currently the best among Co-based catalysts under the same conditions.This work not only demon-strates an effective method for designing advanced catalysts,but also affords a highly promising non-precious metal ORR electrocatalyst for fuel cell applications. 展开更多
关键词 Oxygen reduction reaction Proton exchange membrane fuel cell Single-atom catalyst Co-N-C Boron doping
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High temperature shock synthesis of Ni-N-C single-atom catalysts for efficient CO_(2) electroreduction to CO
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作者 PANG Peiqi XU Changjian +5 位作者 LI Ruizhu GAO Na DU Xianlong LI Tao WANG Jianqiang XIAO Guoping 《燃料化学学报(中英文)》 北大核心 2025年第8期1162-1172,共11页
Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have re... Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have received increasing attention.In contrast to the conventional tube furnace method,the high-temperature shock(HTS)method enables ultra-fast thermal processing,superior atomic efficiency,and a streamlined synthesis protocol,offering a simplified method for the preparation of high-performance single-atom catalysts(SACs).The reports have shown that nickel-based SACs can be synthesized quickly and conveniently using the HTS method,making their application in CO_(2)reduction reactions(CO_(2)RR)a viable and promising avenue for further exploration.In this study,the effect of heating temperature,metal loading and different nitrogen(N)sources on the catalyst morphology,coordination environment and electrocatalytic performance were investigated.Under optimal conditions,0.05Ni-DCD-C-1050 showed excellent performance in reducing CO_(2)to CO,with CO selectivity close to 100%(−0.7 to−1.0 V vs RHE)and current density as high as 130 mA/cm^(2)(−1.1 V vs RHE)in a flow cell under alkaline environment. 展开更多
关键词 CO_(2)electrocatalytic reduction high temperature shock method single atom catalysts coordination
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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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Corrigendum to“Mechanistic Insights into Water-Mediated CO_(2)Electrochemical Reduction Reactions on Cu@C_(2)N Catalysts:A Theoretical Study”[Acta Physico-Chimica Sinica(2024)40,2303040]
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《物理化学学报》 北大核心 2025年第5期144-144,共1页
Hanyu Xu 1,Xuedan Song 1,*,Qing Zhang 1,Chang Yu 1,Jieshan Qiu 1,2,*1 Liaoning Key Lab for Energy Materials and Chemical Engineering,State Key Laboratory of Fine Chemicals,School of Chemical Engineering,Dalian Univers... Hanyu Xu 1,Xuedan Song 1,*,Qing Zhang 1,Chang Yu 1,Jieshan Qiu 1,2,*1 Liaoning Key Lab for Energy Materials and Chemical Engineering,State Key Laboratory of Fine Chemicals,School of Chemical Engineering,Dalian University of Technology,Dalian 116024,Liaoning Province,China. 展开更多
关键词 chemical engineeringdalian theoretical study water mediated Cu C N catalysts fine chemicalsschool CO electrochemical reduction chemical engineeringstate
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Peroxymonosulfate Activation by CoFe_(2)O_(4)/MgAl-LDH Catalyst for the Boosted Degradation of Antibiotic
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作者 LI Jianjun CHEN Fangming +5 位作者 ZHANG Lili WANG Lei ZHANG Liting CHEN Huiwen XUE Changguo XU Liangji 《无机材料学报》 北大核心 2025年第4期440-448,I0022-I0024,共12页
Owing to outstanding hydrophilicity and ionic interaction,layered double hydroxides(LDHs)have emerged as a promising carrier for high performance catalysts.However,the synthesis of new specialized catalytic LDHs for d... Owing to outstanding hydrophilicity and ionic interaction,layered double hydroxides(LDHs)have emerged as a promising carrier for high performance catalysts.However,the synthesis of new specialized catalytic LDHs for degradation of antibiotics still faces some challenges.In this study,a CoFe_(2)O_(4)/MgAl-LDH composite catalyst was synthesized using a hydrothermal coprecipitation method.Comprehensive characterization reveals that the surface of MgAl-LDH is covered with nanometer CoFe_(2)O_(4) particles.The specific surface area of CoFe_(2)O_(4)/MgAl-LDH is 82.84 m^(2)·g^(-)1,which is 2.34 times that of CoFe_(2)O_(4).CoFe_(2)O_(4)/MgAl-LDH has a saturation magnetic strength of 22.24 A·m^(2)·kg^(-1) facilitating efficient solid-liquid separation.The composite catalyst was employed to activate peroxymonosulfate(PMS)for the efficient degradation of tetracycline hydrochloride(TCH).It is found that the catalytic performance of CoFe_(2)O_(4)/MgAl-LDH significantly exceeds that of CoFe_(2)O_(4).The maximum TCH removal reaches 98.2%under the optimal conditions([TCH]=25 mg/L,[PMS]=1.5 mmol/L,CoFe_(2)O_(4)/MgAl-LDH=0.20 g/L,pH 7,and T=25℃).Coexisting ions in the solution,such as SO_(4)^(2-),Cl-,H_(2)PO_(4)^(-),and CO_(3)^(2-),have a negligible effect on catalytic performance.Cyclic tests demonstrate that the catalytic performance of CoFe_(2)O_(4)/MgAl-LDH remains 67.2%after five cycles.Mechanism investigations suggest that O_(2)^(•-)and ^(1)O_(2) produced by CoFe_(2)O_(4)/MgAl-LDH play a critical role in the catalytic degradation. 展开更多
关键词 magnetic composite catalyst PEROXYMONOSULFATE CoFe_(2)O_(4)/MgAl-LDH advanced oxidation process antibiotic
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Research progress on metal-support interactions over Ni-based catalysts for CH_(4)-CO_(2)reforming reaction
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作者 SUN Kai JIANG Jianfei +4 位作者 LIU Zixuan GENG Shiqi LIU Zhenmin YANG Jiaqian LI Shasha 《燃料化学学报(中英文)》 北大核心 2025年第4期434-451,共18页
With ongoing global warming and increasing energy demands,the CH_(4)-CO_(2)reforming reaction(dry reforming of methane,DRM)has garnered significant attention as a promising carbon capture and utilization technology.Ni... With ongoing global warming and increasing energy demands,the CH_(4)-CO_(2)reforming reaction(dry reforming of methane,DRM)has garnered significant attention as a promising carbon capture and utilization technology.Nickel-based catalysts are renowned for their outstanding activity and selectivity in this process.The impact of metal-support interaction(MSI),on Ni-based catalyst performance has been extensively researched and debated recently.This paper reviews the recent research progress of MSI on Ni-based catalysts and their characterization and modulation strategies in catalytic reactions.From the perspective of MSI,the effects of different carriers(metal oxides,carbon materials and molecular sieves,etc.)are introduced on the dispersion and surface structure of Ni active metal particles,and the effect of MSI on the activity and stability of DRM reactions on Ni-based catalysts is discussed in detail.Future research should focus on better understanding and controlling MSI to improve the performance and durability of nickel-based catalysts in CH_(4)-CO_(2)reforming,advancing cleaner energy technologies. 展开更多
关键词 CO_(2)utilization CH_(4)-CO_(2)reforming Ni-based catalysts metal-support interactions supports
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Bimetallic MOF(Mn/Co)constructed by active dicyandiamide linker for a promising combustion catalyst of solid propellant
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作者 Mingcheng Ge Xian Xu +5 位作者 Ze Su Ye Zhong Binfang Yuan Huisheng Huang Jianguo Zhang Zhimin Li 《Defence Technology(防务技术)》 2025年第8期203-212,共10页
Combustion catalyst is a key modifier for the performance of composite solid propellant.To exploit highefficiency combustion catalyst,a fascinating bimetallic metal-organic framework[MnCo(EIM)_(2)(DCA)_(2)]n(1)was con... Combustion catalyst is a key modifier for the performance of composite solid propellant.To exploit highefficiency combustion catalyst,a fascinating bimetallic metal-organic framework[MnCo(EIM)_(2)(DCA)_(2)]n(1)was constructed by an active dicyandiamide(DCA)linker,Mn^(2+),Co^(2+)centers,and an 1-ethylimidazole(EIM)ligand.1 possesses good thermal stability(Tp=205℃),high energy density(Eg=24.34 kJ/g,Ev=35.93 kJ/cm^(3)),and insensitivity to impact and frictional stimulus.The catalytic effects of 1 contrasted to monometallic coordination compounds Mn(EIM)_(4)(DCA)_(2)(2)and Co(EIM)_(4)(DCA)_(2)(3)on the thermal decomposition of AP/RDX composite were investigated by a DSC method.The decomposition peak temperatures of AP and RDX of the composite decreased to 335.8℃ and 206.4℃,respectively,and the corresponding activation energy decreased by 27.3%and 43.6%,respectively,which are better than the performances of monometallic complexes 2 and 3.The gas products in the whole thermal decomposition stage of the sample were measured by TG-MS and TG-IR,and the catalytic mechanism of 1 to AP/RDX was further analyzed.This work reveal potential application of bimetallic MOFs in the composite solid propellants. 展开更多
关键词 Bimetallic MOF Solid propellant Combustion catalyst Thermal decomposition
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Biomass-derived N-doped porous carbon supported single Fe atoms as low-cost and high-performance electrocatalysts for oxygen reduction reaction
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作者 WANG Li-ping XIAO Jin +1 位作者 MAO Qiu-yun ZHONG Qi-fan 《Journal of Central South University》 2025年第4期1368-1383,共16页
Single-atom catalysts(SACs)are promising for oxygen reduction reaction(ORR)on account of their excellent catalytic activity and maximum utilization of atoms.However,due to the complicated preparation processes and exp... Single-atom catalysts(SACs)are promising for oxygen reduction reaction(ORR)on account of their excellent catalytic activity and maximum utilization of atoms.However,due to the complicated preparation processes and expensive reagents used,the cost of SACs is usually too high to put into practical application.The development of cost-effective and sustainable SACs remains a great challenge.Herein,a low-cost method employing biomass is designed to prepare efficient single-atom Fe-N-C catalysts(SA-Fe-N-C).Benefiting from the confinement effect of porous carbon support and the coordination effect of glucose,SA-Fe-N-C is derived from cheap flour by the two-step pyrolysis.Atomically dispersed Fe atoms exist in the form of Fe-N_(x),which acts as active sites for ORR.The catalyst shows outstanding activity with a half-wave potential(E_(1/2))of 0.86 V,which is better than that of Pt/C(0.84 V).Additionally,the catalyst also exhibits superior stability.The ORR catalyzed by SA-Fe-N-C proceeds via an efficient 4e transfer pathway.The high performance of SA-Fe-N-C also benefits from its porous structure,extremely high specific surface area(1450.1 m^(2)/g),and abundant micropores,which are conducive to increasing the density of active sites and fully exposing them.This work provides a cost-effective strategy to synthesize SACs from cheap biomass,achieving a balance between performance and cost. 展开更多
关键词 oxygen reduction reaction single-atom catalyst porous carbon MICROPORE biomass
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碳二加氢失活Pd-Ag催化剂的表征 被引量:9
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作者 张健 黄邦印 +2 位作者 隋志军 周兴贵 袁渭康 《石油化工》 CAS CSCD 北大核心 2017年第7期839-844,共6页
以实验室部分失活和工厂永久失活的碳二加氢Pd-Ag催化剂为试样,采用GC-MS、N_2吸附-脱附、TEM、TG、ICP、CO化学吸附等手段对催化剂试样失活前后的结构和组成进行表征,并利用固定床等温反应器对催化剂催化乙炔选择性加氢的性能进行评价... 以实验室部分失活和工厂永久失活的碳二加氢Pd-Ag催化剂为试样,采用GC-MS、N_2吸附-脱附、TEM、TG、ICP、CO化学吸附等手段对催化剂试样失活前后的结构和组成进行表征,并利用固定床等温反应器对催化剂催化乙炔选择性加氢的性能进行评价。实验结果表明,催化剂在反应中会发生由于绿油生成导致的暂时性失活现象,反应初期失活速率较快,10 h后反应失活速率减慢;快速失活阶段生成的绿油碳链长度短、烯烃含量高,易积累于催化剂的微小孔道中;慢速失活阶段绿油碳链长度和累积量逐渐增加,堵塞催化剂的孔道,并增加扩散阻力,使得催化剂暂时性失活。永久失活催化剂中有明显的Pd颗粒烧结和Ag流失,这可能是催化剂永久性失活的主要原因。 展开更多
关键词 碳二加氢 Pd—Ag催化剂 绿油 失活
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不同Pd/Ag配比Pd-Ag/Al_2O_3催化乙炔加氢微观反应动力学分析 被引量:7
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作者 张健 黄邦印 +2 位作者 隋志军 周兴贵 袁渭康 《化工学报》 EI CAS CSCD 北大核心 2018年第2期674-681,共8页
乙炔加氢是乙烯工业中的重要精制反应。以α-Al_2O_3作为载体,采用分步等量浸渍法制备了不同Pd/Ag配比的加氢催化剂,使用N2物理吸附、XRD、ICP、XPS、TEM和CO化学吸附等手段表征催化剂的结构和组成,根据正交实验设计方案进行动力学实验... 乙炔加氢是乙烯工业中的重要精制反应。以α-Al_2O_3作为载体,采用分步等量浸渍法制备了不同Pd/Ag配比的加氢催化剂,使用N2物理吸附、XRD、ICP、XPS、TEM和CO化学吸附等手段表征催化剂的结构和组成,根据正交实验设计方案进行动力学实验,建立了微观反应动力学模型,并根据动力学模拟结果和动力学参数值的变化分析了Ag助剂含量对乙炔加氢反应动力学的影响。研究结果表明,以Pd-Ag催化剂上碳二加氢的DFT计算结果为基础参数来源,经过吸脱附步骤活化能的优化,微观反应动力学模型可以很好地模拟不同Pd/Ag配比催化剂上的乙炔加氢反应动力学结果;在所研究范围内,各催化剂上加氢反应的表面最丰物种皆为C2H4*,速率控制步骤为乙烯基加氢,不会随着Ag含量的不同发生变化;但是Ag含量的增加显著降低了氢气脱附活化能,提高了乙烯的选择性,这可能与Ag含量的提高增加了催化剂表面Ag和Pd之间的电子转移现象有关。 展开更多
关键词 乙炔加氢 pd-ag催化剂 微观反应动力学 Ag助剂影响
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Pd-Ag/Al_2O_3催化剂上丁二烯的加氢反应性能 被引量:6
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作者 乐毅 杨栋 +1 位作者 朱云仙 戴伟 《化工进展》 EI CAS CSCD 北大核心 2013年第2期364-367,403,共5页
对Pd-Ag/Al2O3催化剂在裂解混合碳四选择加氢制丁烯反应中的性能进行了研究。实验结果表明,1,3-丁二烯加氢生成1-丁烯的选择性与反应器入口1,3-丁二烯浓度和氢/丁二烯比密切相关,在反应器入口温度40℃、反应压力1.0 MPa、液空速40 h 1... 对Pd-Ag/Al2O3催化剂在裂解混合碳四选择加氢制丁烯反应中的性能进行了研究。实验结果表明,1,3-丁二烯加氢生成1-丁烯的选择性与反应器入口1,3-丁二烯浓度和氢/丁二烯比密切相关,在反应器入口温度40℃、反应压力1.0 MPa、液空速40 h 1的条件下,当入口丁二烯摩尔分数大于2.6%,1-丁烯选择性维持在66%以上;当入口丁二烯摩尔分数降至2.6%以下时,1-丁烯选择性开始下降;当反应器入口1,3-丁二烯摩尔分数小于1.0%时,出口1,3-丁二烯摩尔分数可降至小于1.0×10-5。当反应器入口1,3-丁二烯摩尔分数为0.50%~0.85%时,1-丁烯选择性随着氢/丁二烯摩尔比的增加呈现线性下降趋势,表明过量的氢气是发生丁烯的异构化和加氢反应的重要原因。H2-TPR和XPS表征结果显示,Pd-Ag/Al2O3中的Pd和Ag还原过程中形成了Pd-Ag合金。 展开更多
关键词 钯银催化剂 1-丁烯 丁二烯 选择加氢 异构化
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Pd-Ag/C@TiO_2核壳结构纳米棒阵列的制备及对NaBH_4电氧化的催化性能 被引量:2
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作者 闫鹏 张栋铭 +5 位作者 程魁 徐阳 李莹莹 叶克 曹殿学 王贵领 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2015年第9期1801-1806,共6页
通过热蒸发结合恒电位沉积法制备了具有核壳结构的Pd-Ag/C@Ti O2催化剂.利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)等对所制备样品的形貌和结构进行了表征,利用线性伏安扫描和计时电流技术研究了Pd-Ag/C@Ti O2电... 通过热蒸发结合恒电位沉积法制备了具有核壳结构的Pd-Ag/C@Ti O2催化剂.利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)等对所制备样品的形貌和结构进行了表征,利用线性伏安扫描和计时电流技术研究了Pd-Ag/C@Ti O2电极对Na BH4的电氧化性能.结果表明,Pd-Ag/C@Ti O2电极具有三维纳米核壳结构,在电化学反应过程中有利于燃料与催化剂充分接触.催化剂中Pd与Ag的原子比为0.37∶0.17的Pd-Ag(2∶1)/C@Ti O2催化剂的效果最佳,在3.0 mol/L Na OH+0.20 mol/L Na BH4溶液中电流密度达到672 m A/cm2,在1200 s测试时间内计时电流曲线衰减很小,说明该Pd-Ag/C@Ti O2电极对Na BH4电氧化具有很高的电化学活性和稳定性. 展开更多
关键词 直接硼氢化物燃料电池 pd-ag催化剂 核壳结构纳米棒 NaBH4电氧化
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Pd-Ag/PTFE复合膜的制备及表征 被引量:2
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作者 杜军 唐金晶 +1 位作者 陶长元 孙才新 《化学研究与应用》 CAS CSCD 北大核心 2005年第4期464-467,共4页
本文以不同孔径的聚四氟乙烯(PTFE)为基膜,采用化学镀法分别将Ag、Pd沉积到PTFE膜孔及膜面上,制得了镀层均匀、结合力较好的Pd-Ag/PTFE复合膜,并考察了PTFE基膜孔径对镀层结合力的影响,以及化学镀工艺对金属钯沉积速率、复合膜孔结构和... 本文以不同孔径的聚四氟乙烯(PTFE)为基膜,采用化学镀法分别将Ag、Pd沉积到PTFE膜孔及膜面上,制得了镀层均匀、结合力较好的Pd-Ag/PTFE复合膜,并考察了PTFE基膜孔径对镀层结合力的影响,以及化学镀工艺对金属钯沉积速率、复合膜孔结构和截面电阻率的影响。结果表明,适当的基膜孔结构有利于提高镀层结合力;PTFE膜经化学镀修饰后,孔径减小,孔径分布变窄,孔隙率降低,膜截面电阻率降低106数量级,且孔径减小顺序与截面电阻率减小顺序一致。 展开更多
关键词 化学镀 pd-ag PTFE 复合膜
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原位红外光谱法研究Pd-Ag/Al_2O_3和Pd/Al_2O_3乙炔加氢催化剂 被引量:13
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作者 张齐 戴伟 +1 位作者 穆玮 于海波 《化工学报》 EI CAS CSCD 北大核心 2011年第1期71-77,共7页
以一氧化碳和乙炔为探针分子,采用原位红外光谱技术研究了Pd-Ag/Al2O3和Pd/Al2O3催化剂上乙炔加氢反应以及催化剂本身的表面形态,动态考察了乙炔加氢的气相反应行为、CO吸附以及催化剂表面吸附物种的变化。结果表明,在Pd-Ag/Al2O3催化... 以一氧化碳和乙炔为探针分子,采用原位红外光谱技术研究了Pd-Ag/Al2O3和Pd/Al2O3催化剂上乙炔加氢反应以及催化剂本身的表面形态,动态考察了乙炔加氢的气相反应行为、CO吸附以及催化剂表面吸附物种的变化。结果表明,在Pd-Ag/Al2O3催化体系中,由于Ag的加入而受到几何效应和电子效应的共同影响,引起了催化剂表面形态的改变从而改变了催化剂的性能。另外,乙炔加氢反应会导致钯催化剂表面形成由长分子链的饱和烃组成的碳氢化合物层,该碳氢化合物层有可能是加氢反应形成的绿油。 展开更多
关键词 原位红外光谱 乙炔 加氢 金属催化剂
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碳纳米管负载的Pd-Ag-Sn催化剂对甲酸的电氧化(英文) 被引量:3
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作者 张媛媛 易清风 +1 位作者 李广 周秀林 《无机化学学报》 SCIE CAS CSCD 北大核心 2018年第7期1209-1220,共12页
采用硼氢化钠还原的方法合成了碳纳米管负载的钯基纳米催化剂(Pd/CNT,Pd_7Ag_3/CNT,Pd_7Sn_2/CNT,Pd_7Ag_1Sn_2/CNT,Pd_7Ag_2Sn_2/CNT和Pd_7Ag_3Sn_2/CNT)。通过XRD,TEM和XPS对其进行了表征,结果表明,相比Pd/CNT和Pd-Ag(或Pd-Sn)催化剂... 采用硼氢化钠还原的方法合成了碳纳米管负载的钯基纳米催化剂(Pd/CNT,Pd_7Ag_3/CNT,Pd_7Sn_2/CNT,Pd_7Ag_1Sn_2/CNT,Pd_7Ag_2Sn_2/CNT和Pd_7Ag_3Sn_2/CNT)。通过XRD,TEM和XPS对其进行了表征,结果表明,相比Pd/CNT和Pd-Ag(或Pd-Sn)催化剂的纳米颗粒,Pd-Ag-Sn催化剂展现出了更小的平均颗粒尺寸(2.3 nm)。此外,还通过循环伏安(CV)和计时电流法(CA)测试了这些催化剂对甲酸氧化的电活性,在酸碱介质中,Pd-Ag-Sn/CNT对甲酸氧化都表现出了更高的电流密度。其中,Pd_7Ag_2Sn_2/CNT催化剂在酸碱介质中的电流密度分别是108.8和211.3 mA·cm^(-2),相应的Pd质量电流密度高达1 364和2 640 mA·mg^(-1),远远高于商业Pd/C,表明Pd-Ag-Sn/CNT催化剂对甲酸氧化表现出了极好的电催化活性。 展开更多
关键词 钯催化剂 甲酸氧化 燃料电池 电催化
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