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Template-free preparation of anthracite-based nitrogen-doped porous carbons for high-performance supercapacitors and efficient electrocatalysts for the oxygen reduction reaction

机译:无烟煤基氮气掺杂多孔碳的无无烟煤氮掺杂多孔碳的模板制备,以及用于氧还原反应的高效电催化剂

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摘要

The conversion of coal into high-performance electrochemical energy materials, exemplified by electrodes and electrocatalysts for supercapacitors and fuel cells, is currently crucial to the advancement of high value-added, clean and non-fuel utilization of coal resources. In this work, anthracite-based nitrogen-doped porous carbon (ANPC) materials with well-defined pore architectures and adjustable nitrogen concentrations were prepared without any template: ANPC-1 by a one-step activation/doping process and ANPC-2 by a two-step process. The specific capacitance value of the ANPC-1 materials could attain a maximum of 346.0 F g(-1) at the current density of 0.5 A g(-1) in 6 M KOH. Supercapacitors composed of the ANPC-1 electrodes were able to achieve high energy densities up to 10.3 W h kg(-1) and 20.8 W h kg(-1), together with good charge/discharge stabilities of 95.4% and 91.3% after 5000 cycles, in KOH and Na2SO4 aqueous electrolytes, respectively. The ANPC-2 materials are more associated with the oxygen reduction reaction (ORR): one possessed a comparable ORR electrocatalytic activity to the commercial JM Pt/C (20% Pt) catalyst, and, moreover, its onset potential (0.96 V vs. RHE), half-wave potential (0.85 V vs. RHE), catalyst durability (95.9% activity retained after 40 000 s) and methanol tolerance were all superior to the benchmark electrocatalyst. This study provides a feasible route to rational design of coal-based multifunctional materials towards electrochemical energy storage and conversion.
机译:将煤转化为高性能电化学能源材料,通过电极和超级电容器和燃料电池的电催化剂,目前对煤炭资源的高附加值,清洁和非燃料利用的进步至关重要。在这项工作中,制备基于无烟煤的氮气掺杂多孔碳(ANPC)材料,具有明确定义的孔架构和可调节的氮浓度,而无需任何模板:ANPC-1通过一步的激活/掺杂工艺和ANPC-2两步过程。 ANPC-1材料的特定电容值可以在6M KOH中以0.5Ag(-1)的电流密度最大为346.0fg(-1)。由ANPC-1电极组成的超级电容器能够实现高达10.3WH kg(-1)和20.8WH kg(-1)的高能量密度,以及5000后的良好充电/放电稳定性为95.4%和91.3%分别在KOH和NA2SO4水溶液中循环。 ANPC-2材料与氧还原反应(ORR)更有关:一种具有与商业JM Pt / C(20%Pt)催化剂的可比较的ORR电催化活性,而且其发病势(0.96V与RHE),半波电位(0.85V与RHE),催化剂耐久性(95.9%在40 000秒后保留的活性,甲醇耐受性均优于基准电催化剂。本研究提供了一种可行的煤基多功能材料设计途径,朝向电化学能量储存和转换。

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    《RSC Advances》 |2019年第42期|共13页
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  • 正文语种 eng
  • 中图分类 化学;
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  • 入库时间 2022-08-19 17:46:21

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