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作 者:李绒 李浩 郭玉影 付雅 林波 王楠楠 LI Rong;LI Hao;GUO Yu-ying;FU Ya;LIN Bo;WANG Nan-nan(School of Chemistry and Materials Engineering,Chaohu University,Anhui Hefei 238024,China)
机构地区:[1]巢湖学院化学与材料工程学院,安徽合肥238024
出 处:《广州化工》2023年第23期23-27,共5页GuangZhou Chemical Industry
基 金:巢湖学院大学生创新训练项目(No.S202110380002)。
摘 要:以尿素、FeCl_(3)和NaCl混合物为原材料,无水乙醇作为溶剂,经过干燥后采用一锅合成法制备了高性能的氧气还原反应(ORR)催化剂Fe_(2)N@g-C_(3)N_(4)。通过TEM测试,Fe_(2)N纳米颗粒被封装在g-C_(3)N_(4)纳米管中,这种结构保护了活性颗粒,提升了材料的稳定性。通过计时电流法测试,电化学活性在60000 s模拟反应后仅衰减3%。ORR动力学分析表明,催化剂在高电位下的Tafel斜率为80 mV·dec^(-1),在低电位下为125 mV·dec^(-1),与市售参考催化剂的数值非常接近,表明它们的反应机理相似。A high performance oxygen reduction reaction(ORR)catalyst Fe_(2)N@g-C_(3)N_(4)was prepared by one pot synthesis method,using urea,FeCl_(3)and NaCl mixture as raw materials,anhydrous ethanol as solvent.The structure,morphology and electrocatalytic properties of the catalyst materials were studied.Through TEM test,Fe_(2)N nanoparticles were encapsulated in g-C_(3)N_(4)nanotubes.The active particles was protected from corrosion and the stability of the material was improved.Through the chronoamperometric test,the electrochemistry property showed only 3%attenuation after 60000 s of simulated reaction process.The onset potential was up to 0.89 V,which was 10 mV negative shift compared to the commercial Pt/C catalyst.The Tafel slope of the catalyst was 80 mV·dec^(-1)at high potential and 125 mV·dec^(-1)at low potential,which was very close to the value of commercial reference catalyst,indicating their similar reaction mechanism.
关 键 词:氧还原反应 氮化铁 电催化剂 纳米管 g-C_(3)N_(4)
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