2022
DOI: 10.1021/acs.langmuir.2c01130
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Efficient Synthesis of Fe/N-Doped Carbon Nanotube as Highly Active Catalysts for Oxygen Reduction Reaction in Alkaline Media

Abstract: It is of significant implication to fabricate high-performance, durable and low-cost catalysts toward to oxygen reduction reaction (ORR) to drive commercial application of fuel cells. In our work, we synthesize the Fe/N-CNT catalyst via one-pot grinding combined with calcination using a mixture of carbamide, CNTs and iron salts as precursors, the as-synthesized catalysts show the structure that Fe nanoparticles are encapsulated in the tube of intertwined CNTs with abundant active sites. The catalyst is synthes… Show more

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Cited by 14 publications
(12 citation statements)
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References 51 publications
(63 reference statements)
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“…In addition, the Tafel slopes of various catalysts were calculated so as to assess the catalytic kinetics, as depicted in Figure c–f. The Tafel slope of the Pt/CNT catalyst is 71.3 mV dec –1 , and the Tafel slopes of binary and ternary catalysts are significantly less than those of Pt/CNT and JM-Pt/C we previously reported. , Especially the PtRuFe/CNT catalyst shows the smallest Tafel slope of 36.1 mV dec –1 , implying its fastest catalytic kinetics. Figure g,h depicts the mass and specific activities of the catalysts, and JM-Pt/C was used for comparison.…”
Section: Resultscontrasting
confidence: 58%
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“…In addition, the Tafel slopes of various catalysts were calculated so as to assess the catalytic kinetics, as depicted in Figure c–f. The Tafel slope of the Pt/CNT catalyst is 71.3 mV dec –1 , and the Tafel slopes of binary and ternary catalysts are significantly less than those of Pt/CNT and JM-Pt/C we previously reported. , Especially the PtRuFe/CNT catalyst shows the smallest Tafel slope of 36.1 mV dec –1 , implying its fastest catalytic kinetics. Figure g,h depicts the mass and specific activities of the catalysts, and JM-Pt/C was used for comparison.…”
Section: Resultscontrasting
confidence: 58%
“…The S BET values of Pt/CNT, Pt 3 Ru/CNT, and PtRu/CNT catalysts synthesized by plasma thermal treatment are 229.9, 215.9, and 234.2 m 2 g −1 , which are a little lower than that (247.6 m 2 g −1 ) of CNTs reported by our previous work. 48 and the average pore diameters are about 14−20 nm, which are smaller than the diameter (20−30 nm) of CNTs. This result may be attributed to the destruction of CNTs caused by plasma, resulting in the collapse of partial pores.…”
Section: ■ Results and Discussionmentioning
confidence: 82%
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“…The multi-walled CNTs and acetone-functionalized CNTs (A-CNTs) have become a highly potent candidate to be used as the filler in composite materials owing to their high aspect ratio, high active surface area, and extraordinary mechanical characteristics. The CNTs have been used for various applications in potent areas such as rubber/polymer/metal composites, sensing, , biomedical, catalysts, and energy storage and strength. The nanocomposites with CNT reinforcement yield superior specific properties like high strength-to-weight and high stiffness-to-weight ratios. However, CNTs have strong tendency to form aggregates in solution.…”
Section: Introductionmentioning
confidence: 99%