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Mott-Schottky electrocatalysts for water splitting
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作者 PAN Jing FU Danfei +2 位作者 YANG Hao LUO Bifu YANG Zhongjie 《燃料化学学报(中英文)》 北大核心 2025年第9期1300-1319,共20页
The electron configuration of the active sites can be effectively modulated by regulating the inherent nanostructure of the electrocatalysts,thereby enhancing their electrocatalytic performance.To tackle the unexplore... The electron configuration of the active sites can be effectively modulated by regulating the inherent nanostructure of the electrocatalysts,thereby enhancing their electrocatalytic performance.To tackle the unexplored challenge of substantial electrochemical overpotential,surface reconstruction has emerged as a necessary strategy.Focusing on key aspects such as Janus structures,overflow effects,the d-band center displacement hypothesis,and interface coupling related to electrochemical reactions is essential for water electrolysis.Emerging as frontrunners among next-generation electrocatalysts,Mott-Schottky(M-S)catalysts feature a heterojunction formed between a metal and a semiconductor,offering customizable and predictable interfacial synergy.This review offers an in-depth examination of the processes driving the hydrogen and oxygen evolution reactions(HER and OER),highlighting the benefits of employing nanoscale transition metal nitrides,carbides,oxides,and phosphides in M-S heterointerface catalysts.Furthermore,the challenges,limitations,and future prospects of employing M-S heterostructured catalysts for water splitting are thoroughly discussed. 展开更多
关键词 Mott-Schottky electrocatalysts water splitting HETEROJUNCTIONS SEMICONDUCTORS
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In situ fabrication of hierarchical NiX@CNT:An efficient bifunctional electrocatalyst for water splitting
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作者 ZHANG Bai-qing YIN Zhuo-xun +5 位作者 MA Xin-zhi ZHOU Yang LI Jin-long WANG Yu-ping WAN Li-juan MA Zhan-chun 《Journal of Central South University》 2025年第6期2114-2128,共15页
Developing efficient,durable,and precious metal-free electrocatalysts is currently a huge challenge.In this article,through a simple one-step high-temperature pyrolysis method,by incorporating various non-metallic ele... Developing efficient,durable,and precious metal-free electrocatalysts is currently a huge challenge.In this article,through a simple one-step high-temperature pyrolysis method,by incorporating various non-metallic element atoms,we prepared four different NiX(X=Cl_(2),(CH_(3)COO)_(2),(NO_(3))2,SO_(4))@CNT catalysts.Additionally,by adjusting the temperature,these four materials were expanded into twelve catalyst materials for comparative optimization of hydrogen evolution reaction(HER)and oxygen evolution reaction(OER)activity.Ultimately,Ni(NO_(3))2@CNT-900 typically exhibits superior OER and HER activity.In 1 mol/L KOH solution with a current density of 10 mA/cm^(2),the overpotentials of HER and OER of Ni(NO_(3))2@CNT-900 are only 145 mV and 300 mV,respectively.Furthermore,the Ni(NO_(3))2@CNT-900 shows excellent durability in both HER and OER. 展开更多
关键词 water splitting electrocatalystS hydrogen evolution reaction(HER) oxygen evolution reaction(OER)
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Advances in Sn-based electrocatalysts for selective reduction of CO_(2) to formate
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作者 ZHANG Ying-ping LI Wei-jie +1 位作者 HAN Chao LIU Yong 《Journal of Central South University》 2025年第5期1581-1601,共21页
The selective reduction of carbon dioxide(CO_(2))into high-value-added chemicals is one of the most effective means to solve the current energy and environmental problems,which could realize the utilization of CO_(2) ... The selective reduction of carbon dioxide(CO_(2))into high-value-added chemicals is one of the most effective means to solve the current energy and environmental problems,which could realize the utilization of CO_(2) and promote the balance of the carbon cycle.Formate is one of the most economical and practical products of all the electrochemical CO_(2) reduction products.Among the many metal-based electrocatalysts that can convert CO_(2) into formate,Sn-based catalysts have received a lot of attention because of their low-cost,non-toxic characteristics and high selectivity for formate.In this article,the most recent development of Sn-based electrocatalysts is comprehensively summarized by giving examples,which are mainly divided into monometallic Sn,alloyed Sn,Sn-based compounds and Sn composite catalysts.Finally,the current performance enhancement strategies and future directions of the field are summarized. 展开更多
关键词 CO_(2)electrochemical reduction Sn-based electrocatalysts FORMATE progress and perspective selective reduction
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Recent Advances on Ruthenium-based Electrocatalysts for Lithium-oxygen Batteries
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作者 Yu-Zhe Wang Zhuo-Liang Jiang +2 位作者 Bo Wen Yao-Hui Huang Fu-Jun Li 《电化学(中英文)》 CAS 北大核心 2024年第8期1-16,共16页
Rechargeable lithium-oxygen(Li-O_(2))batteries have attracted wide attention due to their high energy density.However,the sluggish cathode kinetics results in high overvoltage and poor cycling performance.Ruthenium(Ru... Rechargeable lithium-oxygen(Li-O_(2))batteries have attracted wide attention due to their high energy density.However,the sluggish cathode kinetics results in high overvoltage and poor cycling performance.Ruthenium(Ru)-based electrocatalysts have been demonstrated to be promising cathode catalysts to promote oxygen evolution reaction(OER).It facilitates decomposition of lithium peroxide(Li_(2)O_(2))by adjusting Li_(2)O_(2) morphologies,which is due to the strong interaction between Ru-based catalyst and superoxide anion(O_(2))intermediate.In this review,the design strategies of Ru-based electrocatalysts are introduced to enhance their OER catalytic kinetics in Li-O_(2) batteries.Different configurations of Ru-based catalysts,including metal particles(Ru metal and alloys),single-atom catalysts,and Ru-loaded compounds with various substrates(carbon materials,metal oxides/sulfides),have been summarized to regulate the electronic structure and the matrix architecture of the Ru-based electrocatalysts.The structure-property relationship of Ru-based catalysts is discussed for a better understanding of the Li_(2)O_(2) decomposition mechanism at the cathode interface.Finally,the challenges of Ru-based electrocatalysts are proposed for the future development of Li-O_(2) batteries. 展开更多
关键词 Lithium-oxygen battery Ruthenium-based electrocatalyst Reaction mechanism Reaction kinetics OVERVOLTAGE
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High-performance Ni-Co-Mn electrocatalyst recovered from spent lithium-ion battery cathode materials for robust oxygen evolution in acid solution
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作者 JIANG Liang-xing FAN Yao-jian +2 位作者 LIU Fang-yang ZHANG Zong-liang WANG Jun 《Journal of Central South University》 CSCD 2024年第12期4472-4482,共11页
Recovering valuable metals from spent lithium-ion batteries(LIBs)for high value-added application is beneficial for global energy cycling and environmental protection.In this work,we obtain the high-performance N-dope... Recovering valuable metals from spent lithium-ion batteries(LIBs)for high value-added application is beneficial for global energy cycling and environmental protection.In this work,we obtain the high-performance N-doped Ni-Co-Mn(N-NCM)electrocatalyst from waste LIBs,for robust oxygen evolution application.Lithium-rich solution and NCM oxides are effectively separated from ternary cathode materials by sulfation roasting and low-temperature water leaching approach,in which the recovery efficiency of Li metal reaches nearly 100%.By facile NH_(3)treatment,the incorporation of N into NCM significantly increases the ratio of low-valence state Co^(2+)and Mn^(2+),and the formed Mn-N bond benefits the surface catalytic kinetics.Meanwhile,the N doping induces lattice expansion of the NCM,triggering tensile stress to favor the adsorption of the reactant.Thus,the optimized N-NCM electrocatalyst exhibits the superior overpotentials of 256 and 453 mV to achieve the current density of 10 and 100 mA/cm^(2),respectively,with a low Tafel slope of 37.3 mV/dec.This work provides a fresh avenue for recycling spent LIBs in the future to achieve sustainable development. 展开更多
关键词 recovered Ni-Co-Mn oxides N doping oxygen evolution electrocatalyst spent ternary lithium-ion batteries
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Methanol oxidation in acidic and alkaline electrolytes using PtRuIn/C electrocatalysts prepared by borohydride reduction process 被引量:1
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作者 Santos M.C.L. Nandenha J. +2 位作者 Ayoub J.M.S. Assumpao M.H.M.T. Neto A.O. 《燃料化学学报》 EI CAS CSCD 北大核心 2018年第12期1462-1471,共10页
PtRuIn/C electrocatalysts( 20% metal loading by weight) were prepared by sodium borohydride reduction process using H_2PtCl6·6H_2O,RuCl_3·xH_2O and InCl_3·xH_2O as metal sources,borohydride as reducing ... PtRuIn/C electrocatalysts( 20% metal loading by weight) were prepared by sodium borohydride reduction process using H_2PtCl6·6H_2O,RuCl_3·xH_2O and InCl_3·xH_2O as metal sources,borohydride as reducing agent and Carbon Vulcan XC72 as support. The synthetized PtRuIn/C electrocatalysts were characterized by X-ray diffraction( XRD),energy dispersive analysis( EDX),transmission electron microscopy( TEM),cyclic voltammetry( CV),chronoamperommetry( CA) and polarization curves in alkaline and acidic electrolytes( single cell experiments). The XRD patterns showPtpeaks are attributed to the face-centered cubic( fcc) structure,and a shift of Pt( fcc) peaks indicates that Ru or In is incorporated into Ptlattice. TEMmicrographs showmetal nanoparticles with an average nanoparticle size between 2.7 and 3.5 nm. Methanol oxidation in acidic and alkaline electrolytes was investigated at room temperature,by CV and CA. PtRu/C( 50 ∶ 50) shows the highest activity among all electrocatalysts in study considering methanol oxidation for acidic and alkaline electrolyte. Polarization curves at 80 ℃ showPtRuIn/C( 50 ∶ 25 ∶ 25)with superior performance for methanol oxidation,when compared to Pt/C,PtIn/C and PtRu/C for both electrolytes. The best performance obtained by PtRuIn/C( 50 ∶ 25 ∶ 25) in real conditions could be associated with the increased kinetics reaction and/or with the occurrence simultaneously of the bifunctional mechanism and electronic effect resulting from the presence of Ptalloy. 展开更多
关键词 BOROHYDRIDE reduction process PtRuIn/C electrocatalystS METHANOL oxidation ACIDIC and ALKALINE electrolytes polarization CURVES
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Direct oxidation of methane at low temperature using Pt/C,Pd/C,Pt/C-ATO and Pd/C-ATO electrocatalysts prepared by sodium borohydride reduction process 被引量:1
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作者 J.Nandenha E.H.Fontes +2 位作者 R.M.Piasentin F.C.Fonseca A.O.Neto 《燃料化学学报》 EI CAS CSCD 北大核心 2018年第9期1137-1145,共9页
The main objective of this paper was to characterize the voltammetric profiles of the Pt/C,Pt/C-ATO,Pd/C and Pd/CATO electrocatalysts and study their catalytic activities for methane oxidation in an acidic electrolyte... The main objective of this paper was to characterize the voltammetric profiles of the Pt/C,Pt/C-ATO,Pd/C and Pd/CATO electrocatalysts and study their catalytic activities for methane oxidation in an acidic electrolyte at 25 ℃ and in a direct methane proton exchange membrane fuel cell at 80 ℃. The electrocatalysts prepared also were characterized by X-ray diffraction( XRD) and transmission electron microscopy( TEM). The diffractograms of the Pt/C and Pt/C-ATO electrocatalysts show four peaks associated with Pt face-centered cubic( fcc) structure,and the diffractograms of Pd/C and Pd/C-ATO show four peaks associated with Pd face-centered cubic( fcc) structure. For Pt/C-ATO and Pd/C-ATO,characteristic peaks of cassiterite( SnO_2) phase are observed,which are associated with Sb-doped SnO_2( ATO) used as supports for electrocatalysts. Cyclic voltammograms( CV) of all electrocatalysts after adsorption of methane show that there is a current increase during the anodic scan. However,this effect is more pronounced for Pt/C-ATO and Pd/C-ATO. This process is related to the oxidation of the adsorbed species through the bifunctional mechanism,where ATO provides oxygenated species for the oxidation of CO or HCO intermediates adsorbed in Pt or Pd sites. From in situ ATR-FTIR( Attenuated Total Reflectance-Fourier Transform Infrared) experiments for all electrocatalysts prepared the formation of HCO or CO intermediates are observed,which indicates the production of carbon dioxide. Polarization curves at 80 ℃in a direct methane fuel cell( DMEFC) show that Pd/C and Pt/C electroacatalysts have superior performance to Pd/C-ATO and Pt/C-ATO in methane oxidation. 展开更多
关键词 sodium BOROHYDRIDE reduction process Pt/C-ATO and Pd/C-ATO electrocatalystS METHANE oxidation acidic electrolytes polarization curves
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Ru⁃doped Co_(3)O_(4)/reduced graphene oxide:Preparation and electrocatalytic oxygen evolution property 被引量:1
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作者 TIAN Tian ZHOU Meng +5 位作者 WEI Jiale LIU Yize MO Yifan YE Yuhan JIA Wenzhi HE Bin 《无机化学学报》 北大核心 2025年第2期385-394,共10页
Binary composites(ZIF-67/rGO)were synthesized by one-step precipitation method using cobalt nitrate hexahydrate as metal source,2-methylimidazole as organic ligand,and reduced graphene oxide(rGO)as carbon carrier.Then... Binary composites(ZIF-67/rGO)were synthesized by one-step precipitation method using cobalt nitrate hexahydrate as metal source,2-methylimidazole as organic ligand,and reduced graphene oxide(rGO)as carbon carrier.Then Ru3+was introduced for ion exchange,and the porous Ru-doped Co_(3)O_(4)/rGO(Ru-Co_(3)O_(4)/rGO)composite electrocatalyst was prepared by annealing.The phase structure,morphology,and valence state of the catalyst were analyzed by X-ray powder diffraction(XRD),scanning electron microscope(SEM),transmission electron microscopy(TEM),and X-ray photoelectron spectroscopy(XPS).In 1 mol·L^(-1)KOH,the oxygen evolution reaction(OER)performance of the catalyst was measured by linear sweep voltammetry,cyclic voltammetry,and chronoamperometry.The results show that the combination of Ru doping and rGO provides a fast channel for collaborative electron transfer.At the same time,rGO as a carbon carrier can improve the electrical conductivity of Ru-Co_(3)O_(4)particles,and the uniformly dispersed nanoparticles enable the reactants to diffuse freely on the catalyst.The results showed that the electrochemical performance of Ru-Co_(3)O_(4)/rGO was much better than that of Co_(3)O_(4)/rGO,and the overpotential of Ru-Co_(3)O_(4)/rGO was 363.5 mV at the current density of 50 mA·cm^(-2). 展开更多
关键词 metal-organic framework GRAPHENE electrocatalyst oxygen evolution reaction
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P,N co-doped hollow carbon nanospheres prepared by micellar copolymerization for increased hydrogen evolution in alkaline water 被引量:1
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作者 HAN Yi-meng XIONG Hao +2 位作者 YANG Jia-ying WANG Jian-gan XU Fei 《新型炭材料(中英文)》 北大核心 2025年第1期211-221,共11页
The design of cost-effective and efficient metal-free carbon-based catalysts for the hydrogen evolution reaction(HER)is of great significance for increasing the production of clean hydrogen by the electrolysis of alka... The design of cost-effective and efficient metal-free carbon-based catalysts for the hydrogen evolution reaction(HER)is of great significance for increasing the production of clean hydrogen by the electrolysis of alkaline water.Precise control of the electronic structure by heteroatom doping has proven to be efficient for increasing catalytic activity.Nevertheless,both the structural characteristics and the underlying mechanism are not well understood,especially for doping with two different atoms,thus limiting the use of these catalysts.We report the production of phosphorus and nitrogen co-doped hollow carbon nanospheres(HCNs)by the copolymerization of pyrrole and aniline at a Triton X-100 micelle-interface,followed by doping with phytic acid and carbonization.The unique pore structure and defect-rich framework of the HCNs expose numerous active sites.Crucially,the combined effect of graphitic nitrogen and phosphorus-carbon bonds modulate the local electronic structure of adjacent C atoms and facilitates electron transfer.As a res-ult,the HCN carbonized at 1100°C exhibited superior HER activity and an outstanding stability(70 h at a current density of 10 mA cm^(−2))in alkaline water,because of the large number of graphitic nitrogen and phosphorus-carbon bonds. 展开更多
关键词 Alkaline hydrogen evolution electrocatalystS Hollow carbon nanospheres Dual atoms doping Combined effect
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微纳米Mo_(2)C-C作为高性能微生物燃料电池的阳极电催化剂
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作者 王俊 侯勇 《化学研究与应用》 北大核心 2025年第1期87-93,共7页
通过简单的溶液衍生前驱体和煅烧法成功制备了具有微纳米结构的Mo_(2)C-C复合材料,并用作微生物燃料电池(MFC)的高性能阳极电催化剂。形态和组成表征表明,制备的Mo_(2)C-C复合材料由Mo_(2)C和C组成,具有微/纳米颗粒结构。同时材料表面... 通过简单的溶液衍生前驱体和煅烧法成功制备了具有微纳米结构的Mo_(2)C-C复合材料,并用作微生物燃料电池(MFC)的高性能阳极电催化剂。形态和组成表征表明,制备的Mo_(2)C-C复合材料由Mo_(2)C和C组成,具有微/纳米颗粒结构。同时材料表面含有丰富官能团,有助于提高微生物在阳极表面的附着。电化学测试结果表明,Mo_(2)C-C复合材料对阳极/微生物之间的电荷转移具有出色的电催化活性。装有微纳米Mo_(2)C-C/CF阳极的MFC的最大功率密度为1.61 W·m^(-2),明显优于商用碳毡阳极。这项工作为高性能、环保MFC阳极电催化剂提供新思路。 展开更多
关键词 Mo_(2)C 微纳米材料 阳极 电催化 微生物燃料电池
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碳纳米管负载钌基高效电催化剂的构建及其在碱性介质中氢氧化性能研究
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作者 金君 郑嘉悦 +6 位作者 王树雄 杜子富 刘娟娟 方思涛 李楠 达范 简选 《功能材料》 北大核心 2025年第10期10121-10128,共8页
氢气(H_(2))作为一种清洁的能源载体,被认为是下一代能源的候选者。氢氧燃料电池将氢气(H_(2))和氧气(O_(2))化学能转化为电能的装置,其中贵金属Pt由于其良好的催化性能被认为是最优的电极材料,但是它们稀缺的资源、昂贵的价格(963.58美... 氢气(H_(2))作为一种清洁的能源载体,被认为是下一代能源的候选者。氢氧燃料电池将氢气(H_(2))和氧气(O_(2))化学能转化为电能的装置,其中贵金属Pt由于其良好的催化性能被认为是最优的电极材料,但是它们稀缺的资源、昂贵的价格(963.58美元/盎司)直接限制了其大规模实际应用。基于此,通过水热法将钌(Ru)负载在碳纳米管(carbon nanotube,CNT)上,成功地制备出Ru-CNT催化剂。首先,通过透射电子显微镜和X射线光电子能谱分别对该催化剂的表面形貌和元素价态结构进行表征,然后在0.1 M KOH电解液中进行电催化氢氧化性能的详细探究研究。电化学测试数据表明,Ru-CNT催化剂的氢氧化反应(hydrogen oxidation reaction,HOR)性能比商业20%Pt/C催化剂更优:在过电位50 mV下,Ru-CNT催化剂的动力学电流密度可达14.49 mA/cm^(2)(商业20%Pt/C是5.05 mA/cm^(2)),表观交换电流密度是1.59 mA/cm^(2)(商业20%Pt/C是1.34 mA/cm^(2)),且经过12000 s稳定性测试后,仍然保持较高的催化活性。 展开更多
关键词 氢氧化反应 电催化剂 碱性介质 Ru-CNT催化剂
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Nanostructured Graphitic Carbon Nitride for Photocatalytic and Electrochemical Applications
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作者 Muhammad Abdul Qadeer Iqra Fareed +6 位作者 Asif Hussain Muhammad Asim Farid Sadia Nazir Faheem K.Butt Ji-Jun Zou Muhammad Tahir Shang-Feng Du 《电化学(中英文)》 北大核心 2025年第1期1-30,共30页
Graphitic carbon nitride(g-C_(3)N_(4))exhibits great mechanical as well as thermal characteristics,making it a valuable ma-terial for use in photoelectric conversion devices,an accelerator for synthesis of organic com... Graphitic carbon nitride(g-C_(3)N_(4))exhibits great mechanical as well as thermal characteristics,making it a valuable ma-terial for use in photoelectric conversion devices,an accelerator for synthesis of organic compounds,an electrolyte for fuel cell applications or power sources,and a hydrogen storage substance and a fluorescence detector.It is fabricated using dif-ferent methods,and there is a variety of morphologies and nanostructures such as zero to three dimensions that have been designed for different purposes.Ther e are many reports about g-C_(3)N_(4) in recent years,but a comprehensive review which covers nanostructure dimensions and their properties are missing.This review paper aims to give basic and comprehensive understanding of the photocatalytic and electrocatalytic usages of g-C_(3)N_(4).It highlights the recent progress of g-C_(3)N_(4) nano-structure designing by covering synthesis methods,dimensions,morphologies,applications and properties.Along with the summary,we will also discuss the challenges and prospects.Scientists,investigators,and engineers looking at g-C_(3)N_(4) nanostructures for a variety of applications might find our review paper to be a useful resource. 展开更多
关键词 Graphitic carbon nitride HER OER Fuel cell Sustainable energy electrocatalyst
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Metal‑organic framework‑templated construction of FeOOH@CoMoO_(4)/nickel foam heterostructure for enhanced oxygen evolution reaction
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作者 YANG Shaohua GAO Na'na GONG Yaqiong 《无机化学学报》 北大核心 2025年第10期2175-2185,共11页
Through employing zeolitic imidazolate framework-67(ZIF-67)templates,the straightforward hydrother-mal and electrodeposition methods were applied to synthesize FeOOH@CoMoO_(4)heterostructure attached to the sur-face o... Through employing zeolitic imidazolate framework-67(ZIF-67)templates,the straightforward hydrother-mal and electrodeposition methods were applied to synthesize FeOOH@CoMoO_(4)heterostructure attached to the sur-face of nickel foam(NF).The specific structure of the as-prepared FeOOH@CoMoO_(4)/NF-400s provided pronounced porosity and extensive surface area,enhancing rapid electron transport and exposing abundant active sites to improve catalytic reactions.Furthermore,the introduction of FeOOH,which induces electron transfer from FeOOH to CoMoO_(4),confirms their strong electronic interaction,thereby leading to an accelerated surface catalytic reaction.Consequently,the constructed FeOOH@CoMoO_(4)/NF-400s heterostructure demonstrated exceptional oxygen evolu-tion reaction(OER)activity,requiring an overpotential of 199 mV to deliver the current density of 10 mA·cm^(-2),cou-pled with the superior Tafel slope value of 49.56 mV·dec^(-1)and outstanding stability over 20 h under the current densities of both 10 and 100 mA·cm^(-2). 展开更多
关键词 template sacrifice approach zeolitic imidazolate framework-67 oxygen evolution reaction electrocatalystS
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贝壳状Ni_(3)S_(2)/NiMoP_(2)异质结构电催化剂高效大电流密度电解水/尿素复合系统 被引量:2
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作者 王佳奕 庆绍军 +3 位作者 童希立 项婷 张坤 徐良骥 《燃料化学学报(中英文)》 北大核心 2025年第1期116-127,共12页
水-尿素电解是实现氨氮废水脱氮及高效绿色产氢的有效途径之一,但该技术面临的关键难题是缺乏高活性和大电流耐久性的双功能电催化剂。本研究采用水热耦合气相磷化法,在泡沫镍(NF)上合成了一种贝壳状Ni_(3)S_(2)/NiMoP_(2)异质结构催化... 水-尿素电解是实现氨氮废水脱氮及高效绿色产氢的有效途径之一,但该技术面临的关键难题是缺乏高活性和大电流耐久性的双功能电催化剂。本研究采用水热耦合气相磷化法,在泡沫镍(NF)上合成了一种贝壳状Ni_(3)S_(2)/NiMoP_(2)异质结构催化剂,得益于其片状层叠的非均相纳米结构、丰富的氧空位和高效的电子传质,该电催化剂在析氢反应(HER)和尿素氧化反应(UOR)中表现出优异的活性,产生1000 mA/cm^(2)的大电流密度分别仅需−0.205和1.423 V(vs.RHE)的超低电位。双功能Ni_(3)S_(2)/NiMoP_(2)催化剂组装的水-尿素系统的电解活性得到显著提升,仅需要1.580 V的槽压来驱动500 mA/cm^(2)电流密度实现HER和UOR,比全水解系统的电压低159 mV。此外,它在高电流条件下表现出优异的耐久性,可以连续稳定运行长达100 h。 展开更多
关键词 Ni_(3)S_(2)/MoNiP_(2) 异质结构 电催化剂 尿素氧化 制氢
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金属有机框架衍生材料在储能领域的研究进展 被引量:1
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作者 余佳慧 贺珂 +3 位作者 李梦雨 杨志广 陈倩倩 范冰冰 《硅酸盐通报》 北大核心 2025年第7期2680-2692,共13页
能源存储需求增长与环保重视促使高效可持续能源存储技术发展。金属有机框架(MOF)衍生材料具有高孔隙率、低密度、大比表面积、孔道规则且孔径可调,以及拓扑结构多样性和可裁剪性等特点,被广泛用作电极材料、电催化剂、电池隔膜等储能... 能源存储需求增长与环保重视促使高效可持续能源存储技术发展。金属有机框架(MOF)衍生材料具有高孔隙率、低密度、大比表面积、孔道规则且孔径可调,以及拓扑结构多样性和可裁剪性等特点,被广泛用作电极材料、电催化剂、电池隔膜等储能材料。通过使用不同的合成方法,合成不同类型的MOF材料,改变其结构,以提高能效。本文综述了近年来常见的MOF衍生材料的种类及其在金属电池、锂硫电池、超级电容器、太阳能电池等储能领域的应用研究进展,提出了MOF衍生材料所面临的问题与挑战,并对其在未来能源存储领域实现可持续发展进行了展望。 展开更多
关键词 MOF衍生材料 能源存储 结构调控 电化学性能 电极材料 电催化剂 电池隔膜
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Ni掺杂WP_(2)纳米线自支撑电极的制备及其碱性电催化析氢性能
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作者 张剑桥 刘洋 +6 位作者 何艳 周娅玲 杨帆 程诗慧 夏斌 王众 陈世建 《无机化学学报》 北大核心 2025年第8期1610-1616,共7页
首先采用水热法在碳布(CC)上生长了Ni掺杂WO_(3)纳米线(Ni-WO_(3)NWs/CC),然后利用高真空固相磷化法将其磷化,得到CC表面生长Ni掺杂WP_(2)纳米线复合材料(Ni-WP_(2)NWs/CC)。研究其电催化析氢性能发现,Ni掺杂能够有效降低电催化析氢反... 首先采用水热法在碳布(CC)上生长了Ni掺杂WO_(3)纳米线(Ni-WO_(3)NWs/CC),然后利用高真空固相磷化法将其磷化,得到CC表面生长Ni掺杂WP_(2)纳米线复合材料(Ni-WP_(2)NWs/CC)。研究其电催化析氢性能发现,Ni掺杂能够有效降低电催化析氢反应中的过电位。其中,当Ni、W物质的量之比为10%时制备得到的10%Ni-WP_(2)NWs/CC表现出最佳的催化性能。在碱性条件下,当电流密度为10和100 mA·cm^(-2)时,10%Ni-WP_(2)NWs/CC所需的过电位分别为115和190 mV。经过Ni掺杂后,10%Ni-WP_(2)NWs/CC的电化学活性表面积明显增加。此外,在长时间的电催化条件下,该催化剂依然能保持良好的工作稳定性。 展开更多
关键词 电催化产氢 过渡金属磷化物 掺杂 自支撑电极
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NiCu/ZnO异质结光热电催化剂用于高效析氢反应
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作者 靳浩东 刘青青 +4 位作者 师朝阳 魏丹阳 于杰 徐旭辉 徐明丽 《无机化学学报》 北大核心 2025年第6期1068-1082,共15页
通过溶剂热-电沉积法成功制备了一种具有丰富活性位点的镍铜合金/氧化锌/泡沫镍(NiCu/ZnO/NF)异质界面结构复合催化剂,并对其形貌结构、物相构成、析氢反应(HER)性能、光热性能和全解水性能进行了测试和分析。研究表明:NiCu/ZnO/NF具有... 通过溶剂热-电沉积法成功制备了一种具有丰富活性位点的镍铜合金/氧化锌/泡沫镍(NiCu/ZnO/NF)异质界面结构复合催化剂,并对其形貌结构、物相构成、析氢反应(HER)性能、光热性能和全解水性能进行了测试和分析。研究表明:NiCu/ZnO/NF具有优异的HER催化性能,在10 mA·cm^(-2)的电流密度下所需的过电位仅为25 mV。高效的催化活性可能是由于NiCu/ZnO异质界面结构的协同效应加快了电子转移速率和优化了HER过程。此外,NiCu/ZnO/NF还表现出了优异的光热转换性能,在光照条件下其HER过电位显著降低,在10 mA·cm^(-2)的电流密度下过电位降低至8 mV。此外,将NiCu/ZnO/NF集成到自设计的电解槽-热电装置进行全解水反应,其在50 mA·cm^(-2)电流密度时的槽电压低至0.88 V。 展开更多
关键词 电催化剂 NiCu/ZnO复合材料 异质界面 析氢反应 电解水 集成热电装置
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用于催化硼氢化钠氧化的非晶态球壳NiFeP催化剂研究
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作者 李建琦 耿江涛 邵志刚 《电源技术》 北大核心 2025年第7期1503-1510,共8页
直接硼氢化钠燃料电池(DBFC)因其高能量密度和安全性方面的优势成为热点研究方向。然而,为DBFC开发高效低成本的阳极催化剂仍面临挑战。在泡沫镍基底上制备了一种中空球壳结构的非晶态NiFeP催化剂,并对其物理结构及电化学性能进行了系... 直接硼氢化钠燃料电池(DBFC)因其高能量密度和安全性方面的优势成为热点研究方向。然而,为DBFC开发高效低成本的阳极催化剂仍面临挑战。在泡沫镍基底上制备了一种中空球壳结构的非晶态NiFeP催化剂,并对其物理结构及电化学性能进行了系统研究。结果显示,催化剂在硼氢化物氧化反应(BOR)中的峰值电流密度达到300.7 mA/cm^(2),将催化剂应用于DBFC装置,峰值功率密度可达621.3 mW/cm^(2)。其良好的BOR性能可归因于非晶态物种包含的高活性位点带来的内在催化活性提升和三维中空球壳结构带来的大比表面积。 展开更多
关键词 直接硼氢化钠燃料电池 非晶态合金 中空球壳结构 电催化剂
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CO_(2)电还原的膜电极组件电解槽研究挑战
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作者 滕瑞 程军 +4 位作者 王家昊 李雪纯 吕洪坤 章康 侯成龙 《洁净煤技术》 北大核心 2025年第10期73-86,共14页
在“双碳”战略目标背景下,积极发展碳捕集、碳利用与碳封存(CCUS)技术是实现绿色低碳可持续发展的核心路径。二氧化碳电化学还原技术作为一种极具前景的碳利用策略,能够借助清洁电力,在常温常压下将捕获的CO_(2)直接转化为具有显著经... 在“双碳”战略目标背景下,积极发展碳捕集、碳利用与碳封存(CCUS)技术是实现绿色低碳可持续发展的核心路径。二氧化碳电化学还原技术作为一种极具前景的碳利用策略,能够借助清洁电力,在常温常压下将捕获的CO_(2)直接转化为具有显著经济价值的化学品,如一氧化碳、乙烯和甲醇等。这不仅实现了CO_(2)的资源化利用,也为可再生能源的消纳提供了新途径,相较于其他碳利用技术具有显著优势。然而,当前针对CO_(2)电还原技术的研究仍主要局限于实验室规模,亟需向工业化规模推进。膜电极电解槽(MEA)作为低温二氧化碳电还原反应器之一,具有欧姆电阻低、结构紧凑和易于扩展等优点,有望实现二氧化碳电解技术的规模化应用。尽管如此,MEA电解槽在规模化进程中仍面临严峻挑战,其内部复杂的多相传输环境极易引发电极“水淹”(阴极液态水积聚)和“盐析”(阴极盐结晶析出)现象,这不仅严重损害了催化剂的长期稳定性,更显著阻碍了CO_(2)向催化剂活性位点的有效传输。此外,随着电解槽电极面积的扩大,反应物、电流密度以及产物浓度在电极平面和堆栈单元间的分布不均匀性问题更为显著。与此同时,电解槽内部的热积聚问题更为明显,这对电解系统的稳定运行造成了严重威胁。本综述从MEA电解槽CO_(2)电还原的基本工作原理出发,系统性地梳理和剖析了制约其大规模产业化发展的核心问题。本文着重论述和分析了催化剂长期耐久性问题、电解槽运行稳定性问题、从实验室规模到工业级发展的工程放大问题以及面向系统级优化的模拟问题。通过整合分析该领域的最新研究进展、本文旨在为CO_(2)电解的工业化发展提供相应参考。 展开更多
关键词 碳移除 CO_(2)电还原 膜电极 电解槽 电催化剂
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硫掺杂氧化钨电催化剂的析氢性能研究
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作者 贾鹏飞 杨军 +2 位作者 李硕 郑璐瑶 张煜国 《陕西科技大学学报》 北大核心 2025年第1期107-114,125,共9页
通过硫掺杂来改善氧化钨(WO_(3))电催化剂活性不足和反应动力学缓慢的问题.采用二次煅烧法成功合成了硫掺杂氧化钨(S-WO_(3))电催化剂,并系统地研究了掺杂浓度对其形貌、结构和电化学性能的影响.结果表明,硫掺入氧化钨后能够在引入氧缺... 通过硫掺杂来改善氧化钨(WO_(3))电催化剂活性不足和反应动力学缓慢的问题.采用二次煅烧法成功合成了硫掺杂氧化钨(S-WO_(3))电催化剂,并系统地研究了掺杂浓度对其形貌、结构和电化学性能的影响.结果表明,硫掺入氧化钨后能够在引入氧缺陷的同时调控电子结构,显著提高了氧化钨的电催化活性.使用硫粉量为0.11 g的S-WO_(3)-1催化剂具有最佳的硫掺杂浓度.为了实现10 mA cm^(-2)的电流密度仅仅需要161 mV过电位,并且能够持续长达30000 s的析氢过程,显示出优异的催化活性和循环稳定性.本研究为开发掺杂型高效析氢电催化剂提供了新途径. 展开更多
关键词 电催化剂 析氢反应 氧化钨 硫掺杂 电子结构
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