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交流磁场对M-BTC材料电化学氮还原(NRR)性能的影响
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作者 高朋召 张佩 +5 位作者 李玉玲 马冯 覃航 刘小磐 郭文明 肖汉宁 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第6期162-171,共10页
本文采用水热法合成了四种MOFs催化剂,分别通过XRD、SEM及IR表征了催化剂的组成和微观结构,进而研究了催化剂的NRR活性,最后探究了交流磁场对催化剂NRR活性的影响及作用机制.结果表明:四种催化剂中,Fe-BTC在-0.376 V(vs.RHE)和80℃时具... 本文采用水热法合成了四种MOFs催化剂,分别通过XRD、SEM及IR表征了催化剂的组成和微观结构,进而研究了催化剂的NRR活性,最后探究了交流磁场对催化剂NRR活性的影响及作用机制.结果表明:四种催化剂中,Fe-BTC在-0.376 V(vs.RHE)和80℃时具有最高的氨产率和法拉第效率,分别为3.63×10^(-10) mol s^(1) cm^(-2)和0.31%;在恒电位下,当交流磁场的强度为4.355 mT,频率为50 kHz时,催化剂的氨产率和法拉第效率最大,分别为3.61×10^(-9) mol s^(-1) cm^(-2)和5.67%,比无磁场时分别提高约10倍和18倍,这种增效一方面源于交流磁场增加了N_(2)在Fe-BTC表面的吸附量,另一方面,交流磁场产生的感应电动势与电场本身的电势的叠加作用,为NRR反应提供了额外能量所致. 展开更多
关键词 电催化氮还原反应 金属有机框架 交流磁场 氨产率 法拉第效率
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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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