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碳基氧还原反应催化剂研究概述 被引量:1
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作者 罗明生 邵长科 +1 位作者 宋焕巧 王晨 《电池》 CAS 北大核心 2023年第3期328-332,共5页
氧还原反应(ORR)所用的主要催化剂Pt/C存在成本高、抗中毒能力低及稳定性差等劣势,难以进一步商业化。碳基催化剂具有成本低、导电性高、结构多变和资源丰富等优点,有替代铂基材料成为商用氧还原催化剂材料的潜力。对氧还原反应机理进... 氧还原反应(ORR)所用的主要催化剂Pt/C存在成本高、抗中毒能力低及稳定性差等劣势,难以进一步商业化。碳基催化剂具有成本低、导电性高、结构多变和资源丰富等优点,有替代铂基材料成为商用氧还原催化剂材料的潜力。对氧还原反应机理进行介绍;从碳基材料的纳米结构、杂原子掺杂碳基材料两个方面,对碳基氧还原催化剂设计方法进行阐述和总结;对碳基氧还原催化剂的发展进行展望。 展开更多
关键词 碳基材料 还原反应催化 阴极材料 燃料电池
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基于密度泛函理论的过渡金属酞菁配合物氧还原反应催化能力 被引量:1
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作者 周苏 姜缜 DE LILE J R 《上海交通大学学报》 EI CAS CSCD 北大核心 2017年第12期1422-1427,共6页
通过分析钛酞菁(TiPc)、铁酞菁(FePc)、钴酞菁(CoPc)、铜酞菁(CuPc)和镍酞菁(NiPc)5种过渡金属酞菁配合物(TMPcs)的O_2吸附能、OH吸附能、H_2O_2吸附能和H_2O吸附能,发现TMPcs的氧还原能力与O_2吸附能有一定关系,O_2吸附能越大,其氧还... 通过分析钛酞菁(TiPc)、铁酞菁(FePc)、钴酞菁(CoPc)、铜酞菁(CuPc)和镍酞菁(NiPc)5种过渡金属酞菁配合物(TMPcs)的O_2吸附能、OH吸附能、H_2O_2吸附能和H_2O吸附能,发现TMPcs的氧还原能力与O_2吸附能有一定关系,O_2吸附能越大,其氧还原反应催化能力越强.基于密度泛函理论(DFT)和量子力学原理,计算了TiPc的相关吸附能,结果显示:在5种TMPcs中TiPc的O_2吸附能力最强;TiPc的O_2吸附能大于其OH吸附能;TiPc的O_2吸附能远大于其H_2O吸附能.在分析TMPcs反应机理的基础上,根据氧还原反应中吉布斯自由能的变化,比较TiPc、FePc、CoPc和Pt作为催化剂的4种情况,理论计算结果表明,TiPc作为催化剂的氧还原反应过程中没有明显的能垒,且速率控制步骤的能垒为零.由此可得,TiPc的氧还原催化能力优于已有实验结果的其他TMPcs和Pt,有可能替代Pt作为质子交换膜燃料电池(PEMFC)的氧化还原催化剂. 展开更多
关键词 过渡金属酞菁配合物 钛酞菁配合物 还原反应催化 密度泛函理论 质子交换膜燃料电池
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Co-Co_(9)S_(8)/N掺杂科琴黑复合材料的制备及其氧还原反应催化性能
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作者 李福枝 陈真 +3 位作者 张丹 孙翱魁 石璞 贺全国 《无机化学学报》 SCIE CAS CSCD 北大核心 2021年第9期1579-1588,共10页
采用普鲁士蓝类似物作为前驱体,结合高温煅烧,制备了高导电碳(氮掺杂科琴黑)支撑、单金属引入的Co-Co_(9)S_(8)/N-KB氧还原反应(ORR)催化剂。研究了煅烧温度对ORR催化性能的影响。结果发现,在800℃下进行煅烧,所得催化剂的ORR催化活性最... 采用普鲁士蓝类似物作为前驱体,结合高温煅烧,制备了高导电碳(氮掺杂科琴黑)支撑、单金属引入的Co-Co_(9)S_(8)/N-KB氧还原反应(ORR)催化剂。研究了煅烧温度对ORR催化性能的影响。结果发现,在800℃下进行煅烧,所得催化剂的ORR催化活性最大,其起始电位和半波电位分别为0.93和0.83 V,与商业级Pt/C相当,并且极限电流密度高达5.7 mA·cm^(-2)。该催化剂的稳定性也十分优异,经过10000 s长时间持续催化后电流密度还能保持初始值的95.6%;在0.5~1.0 V之间进行5000次循环的加速老化实验之后,其半波电位仅偏移了8.6 mV。此外,在铝-空气全电池应用中,在50 mA·cm^(-2)的放电电流密度下,Co-Co_(9)S_(8)/N-KB催化剂的放电电压可达1.53 V,高于商业级Pt/C。 展开更多
关键词 硫化钴 铝-空气电池 还原反应催化
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卟啉-硫醚基共价有机框架材料用于氧还原反应电催化剂 被引量:1
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作者 张艺潆 李翠艳 +2 位作者 赵杰 余笑明 方千荣 《应用化学》 CAS CSCD 北大核心 2022年第4期647-656,共10页
氧还原反应(ORR)是能进行能量存储的核心电化学过程。由于它的动力学速率缓慢,因此亟需制备出高活性的电催化剂来促进这一反应的速率。二维共价有机框架材料(2D COFs)的π-π堆积结构可赋予骨架高导电率,并且一维有序的孔道有利于促进... 氧还原反应(ORR)是能进行能量存储的核心电化学过程。由于它的动力学速率缓慢,因此亟需制备出高活性的电催化剂来促进这一反应的速率。二维共价有机框架材料(2D COFs)的π-π堆积结构可赋予骨架高导电率,并且一维有序的孔道有利于促进中间反应体传输。因此,其在可再生能源领域中具有良好的应用前景,并有望作为能量存储与转化的强大催化平台。本文通过向2D COFs中引入金属卟啉单元及硫醚单元成功制备了两个2D COFs(JUC-600和JUC-601)。通过多种表征手段证明,这两个2D COFs均具有AA堆积的sql拓扑结构。通过电化学测试表明,Co^(2+)配位的JUC-601具有更正的ORR起始电势(0.825 V)和半波电势(0.7 V)、更高的活性表面积(7.8 mF/cm^(2)),更低的Tafel斜率(58 mV/dec)。这主要是由于JUC-601的高比表面积和高孔隙率使得中间产物能更易在COFs的表面和孔道中接触和传输。此外,Co^(2+)-卟啉单元以及硫醚单元的存在使其骨架整体的电子结构发生了变化,更有利于电子转移。这一工作不仅开发了新的二维卟啉-硫醚基COFs材料,同时也拓展了2D COFs材料在电催化领域的应用。 展开更多
关键词 共价有机框架 金属卟啉 硫醚 还原反应催化
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A CNT Intercalated Co Porphyrin-Based Metal Organic Framework Catalyst for Oxygen Reduction Reaction
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作者 Pei-Pei He Jin-Hua Shi +6 位作者 Xiao-Yu Li Ming-Jie Liu Zhou Fang Jing He Zhong-Jian Li Xin-Sheng Peng Qing-Gang He 《电化学(中英文)》 北大核心 2025年第1期31-40,共10页
The poor electronic conductivity of metal-organic framework(MOF)materials hinders their direct application in the field of electrocatalysis in fuel cells.Herein,we proposed a strategy of embedding carbon nanotubes(CNT... The poor electronic conductivity of metal-organic framework(MOF)materials hinders their direct application in the field of electrocatalysis in fuel cells.Herein,we proposed a strategy of embedding carbon nanotubes(CNTs)during the growth process of MOF crystals,synthesizing a metalloporphyrin-based MOF catalyst TCPPCo-MOF-CNT with a unique CNT-intercalated MOF structure.Physical characterization revealed that the CNTs enhance the overall conductivity while retaining the original characteristics of the MOF and metalloporphyrin.Simultaneously,the insertion of CNTs generated adequate mesopores and created a hierarchical porous structure that enhances mass transfer efficiency.X-ray photoelectron spectroscopic analysis confirmed that the C atom in CNT changed the electron cloud density on the catalytic active center Co,optimizing the electronic structure.Consequently,the E_(1/2) of the TCPPCo-MOF-CNT catalyst under neutral conditions reached 0.77 V(vs.RHE),outperforming the catalyst without CNTs.When the TCPPCo-MOF-CNT was employed as the cathode catalyst in assembling microbial fuel cells(MFCs)with Nafion-117 as the proton exchange membrane,the maxi-mum power density of MFCs reached approximately 500 mW·m^(-2). 展开更多
关键词 Metal organic framework CNT intercalated ELECTROCATALYSIS Oxygen reduction reaction Microbial fuel cell
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Ordering Degree Regulation of Pt_(2)NiCo Intermetallics for Efficient Oxygen Reduction Reaction
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作者 Chen-Hao Zhang Han-Yu Hu +3 位作者 Jun-Hao Yang Qian Zhang Chang Yang De-Li Wang 《电化学(中英文)》 北大核心 2025年第4期12-23,共12页
Alloying transition metals with Pt is an effective strategy for optimizing Pt-based catalysts toward the oxygen reduction reaction(ORR).Atomic ordered intermetallic compounds(IMC)provide unique electronic and geometri... Alloying transition metals with Pt is an effective strategy for optimizing Pt-based catalysts toward the oxygen reduction reaction(ORR).Atomic ordered intermetallic compounds(IMC)provide unique electronic and geometrical effects as well as stronger intermetallic interactions due to the ordered arrangement of metal atoms,thus exhibiting superior electrocata-lytic activity and durability.However,quantitatively analyzing the ordering degree of IMC and exploring the correlation between the ordering degree and ORR activity remains extremely challenging.Herein,a series of ternary Pt_(2)NiCo interme-tallic catalysts(o-Pt_(2)NiCo)with different ordering degree were synthesized by annealing temperature modulation.Among them,the o-Pt_(2)NiCo which annealed at 800℃for two hours exhibits the highest ordering degree and the optimal ORR ac-tivity,which the mass activity of o-Pt_(2)NiCo is 1.8 times and 2.8 times higher than that of disordered Pt_(2)NiCo alloy and Pt/C.Furthermore,the o-Pt_(2)NiCo still maintains 70.8%mass activity after 30,000 potential cycles.Additionally,the ORR activity test results for Pt_(2)NiCo IMC with different ordering degree also provide a positive correlation between the ordering degree and ORR activity.This work provides a prospective design direction for ternary Pt-based electrocatalysts. 展开更多
关键词 Fuel cell Oxygen reduction reaction ELECTROCATALYSIS Intermetallic compound Ordering degree
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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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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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MOF衍生的Zn/N共掺杂碳催化剂的制备及其电催化性能 被引量:5
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作者 白亚峰 杨子恒 +3 位作者 冯勇 刘富亮 陈晓涛 常继莹 《无机化学学报》 SCIE CAS CSCD 北大核心 2021年第6期1055-1061,共7页
氮掺杂碳载非贵金属氧还原反应(ORR)催化剂已被广泛研究,以解决燃料电池Pt基催化剂的高成本问题。通过溶剂热法制备了无定形Zn基金属有机框架,并进一步经热处理得到Zn/N共掺杂碳催化剂。测试表明ZnN/C‑900催化剂(热处理温度为900℃)具... 氮掺杂碳载非贵金属氧还原反应(ORR)催化剂已被广泛研究,以解决燃料电池Pt基催化剂的高成本问题。通过溶剂热法制备了无定形Zn基金属有机框架,并进一步经热处理得到Zn/N共掺杂碳催化剂。测试表明ZnN/C‑900催化剂(热处理温度为900℃)具有形貌均一的球形特征且比表面积高达961 m^(2)·g^(-1),N、Zn的原子含量分别为1.6%、5.87%。ZnN/C‑900催化剂表现出较高的ORR催化活性及稳定性,在碱性介质中,ZnN/C‑900催化剂的起始电位、半波电位和极限电流密度分别为0.955 V、0.855 V和7.10 mA·cm^(-2),在酸性介质中,ZnN/C‑900的起始电位、半波电位和极限电流密度分别为0.882 V、0.649 V和6.01 mA·cm^(-2),且具有较高的稳定性和抗甲醇中毒性能。 展开更多
关键词 燃料电池 还原反应催化 金属有机框架 Zn/N共掺杂 碳球
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固定漆酶聚苯胺-CoC2O4纳米复合物修饰电极的直接电化学 被引量:3
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作者 杨阳 霍文珊 +2 位作者 周政 张琪 曾涵 《无机化学学报》 SCIE CAS CSCD 北大核心 2016年第12期2117-2128,共12页
采用循环伏安法、微分脉冲伏安法、交流阻抗谱以及计时电流法等电化学方法,结合红外光谱、紫外-可见分光光度法、原子力显微镜、透射电子显微镜以及原子吸收光谱等辅助手段,表征了固定漆酶的聚苯胺-草酸钴纳米复合物的化学组成、结构和... 采用循环伏安法、微分脉冲伏安法、交流阻抗谱以及计时电流法等电化学方法,结合红外光谱、紫外-可见分光光度法、原子力显微镜、透射电子显微镜以及原子吸收光谱等辅助手段,表征了固定漆酶的聚苯胺-草酸钴纳米复合物的化学组成、结构和形貌,测试了纳米复合物固酶前后的导电性能的变化,研究了纳米复合物修饰电极上固定漆酶的直接电化学行为,评估了该电极的催化氧还原效能以及作为电化学传感器检测氧分子的性能。实验结果表明该电极在不含电子介体的溶液中以酶活性中心T2作为首要电子受体,将得到电子传递给化学吸附的氧气使其被电还原,其表观电子迁移速率为0.017 s^(-1),且具有良好的催化氧还原性能(氧还原起始电位:460 m V vs NHE,转化氧分子为水的表观速率常数为2.6×10-4 s^(-1)),酶电催化氧还原为水分子步骤为反应的速控步。该电极作为电化学传感器对氧具有极低检测限(0.20μmol·L^(-1)),宽线性响应范围(0.4~7.5μmol·L^(-1))以及对底物高亲和力(KM=122.4μmol·L^(-1))等优势。 展开更多
关键词 聚苯胺-草酸钴纳米复合物 漆酶 直接电化学 催化氧还原反应 电化学传感器
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Magneli phase titanium sub-oxide conductive ceramic Ti_nO_(2n-1) as support for electrocatalyst toward oxygen reduction reaction with high activity and stability 被引量:3
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作者 伍秋美 阮建明 +1 位作者 周忠诚 桑商斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1212-1219,共8页
Magneli phase titanium sub-oxide conductive ceramic Tin O2n-1 was used as the support for Pt due to its excellent resistance to electrochemical oxidation, and Pt/Tin O2n-1 composites were prepared by the impregnation-... Magneli phase titanium sub-oxide conductive ceramic Tin O2n-1 was used as the support for Pt due to its excellent resistance to electrochemical oxidation, and Pt/Tin O2n-1 composites were prepared by the impregnation-reduction method. The electrochemical stability of Tin O2n-1 was investigated and the results show almost no change in the redox region after oxidation for 20 h at 1.2 V(vs NHE) in 0.5 mol/L H2SO4 aqueous solution. The catalytic activity and stability of the Pt/Tin O2n-1 toward the oxygen reduction reaction(ORR) in 0.5 mol/L H2SO4 solution were investigated through the accelerated aging tests(AAT), and the morphology of the catalysts before and after the AAT was observed by transmission electron microscopy. At the potential of 0.55 V(vs SCE), the specific kinetic current density of the ORR on the Pt/Tin O2n-1 is about 1.5 times that of the Pt/C. The LSV curves for the Pt/C shift negatively obviously with the half-wave potential shifting about 0.02 V after 8000 cycles AAT, while no obvious change takes place for the LSV curves for the Pt/Tin O2n-1. The Pt particles supported on the carbon aggregate obviously, while the morphology of the Pt supported on Tin O2n-1 remains almost unchanged, which contributes to the electrochemical surface area loss of Pt/C being about 2times that of the Pt/Tin O2n-1. The superior catalytic stability of Pt/Tin O2n-1 toward the ORR could be attributed to the excellent stability of the Tin O2n-1 and the electronic interaction between the metals and the support. 展开更多
关键词 magneli phase TinO2n-1 support oxygen reduction reaction stability
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Porous layered La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3)perovskite with enhanced catalytic activities for oxygen reduction 被引量:2
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作者 XU Wei-lai XU Zhi-feng +6 位作者 CHEN Tian-yu ZHONG Xiao-cong XIE Yong-min XIE Xiao-yun CHEN Zhe-qin LIU Jia-ming WANG Rui-xiang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1305-1315,共11页
Low-cost catalysts with high activity are in immediate demand for energy storage and conversion devices.In this study,polyvinyl pyrrolidone was used as a complexing agent to synthesize La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)... Low-cost catalysts with high activity are in immediate demand for energy storage and conversion devices.In this study,polyvinyl pyrrolidone was used as a complexing agent to synthesize La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3)(LSCF)perovskite oxide.The obtained porous layered LSCF has a large specific surface area of 23.74 m^(2)/g,four times higher than that prepared by the traditional sol-gel method(5.08 m^(2)/g).The oxygen reduction reaction activity of the oxide in 0.1 mol/L KOH solution was studied using a rotating ring-disk electrode.In the tests,the initial potential of 0.88 V(vs.reversible hydrogen electrode)and the limiting diffusion current density of 5.02 mA/cm^(2)were obtained at 1600 r/min.Therefore,higher catalytic activity and stability were demonstrated,compared with the preparation of LSCF perovskite oxide by the traditional method. 展开更多
关键词 oxygen reduction reaction ELECTROCATALYST PEROVSKITE layered structure
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Fe/N-doped mesoporous carbons derived from soybeans: A highly efficient and low-cost non-precious metal catalyst for ORR 被引量:2
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作者 WU Qiu-mei DENG Da-kuan +3 位作者 HE Yi-lun ZHOU Zhong-cheng SANG Shang-bin ZHOU Zhi-hua 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期344-355,共12页
Oxygen reduction reaction(ORR)plays a crucial role in many energy storage and conversion devices.Currently,the development of inexpensive and high-performance carbon-based non-precious-metal ORR catalysts in alkaline ... Oxygen reduction reaction(ORR)plays a crucial role in many energy storage and conversion devices.Currently,the development of inexpensive and high-performance carbon-based non-precious-metal ORR catalysts in alkaline media still gains a wide attention.In this paper,the mesoporous Fe-N/C catalysts were synthesized through SiO2-mediated templating method using biomass soybeans as the nitrogen and carbon sources.The SiO2 templates create a simultaneous optimization of both the surface functionalities and porous structures of Fe-N/C catalysts.Detailed investigations indicate that the Fe-N/C3 catalyst prepared with the mass ratio of SiO2 to soybean being 3:4 exhibits brilliant electrocatalytic performance,excellent long-term stability and methanol tolerance for the ORR,with the onset potential and the half-wave potential of the ORR being about 0.890 V and 0.783 V(vs RHE),respectively.Meanwhile,the desired 4-electron transfer pathway of the ORR on the catalysts can be observed.It is significantly proposed that the high BET specific surface area and the appropriate pore-size,as well as the high pyridinic-N and total nitrogen loadings may play key roles in enhancing the ORR performance for the Fe-N/C3 catalyst.These results suggest a feasible route based on the economical and sustainable soybean biomass to develop inexpensive and highly efficient non-precious metal electrochemical catalysts for the ORR. 展开更多
关键词 biomass oxygen reduction reaction ELECTRO-CATALYST nitrogen-doped carbon
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