首页> 外文期刊>Journal of materials science >One-pot electrochemical synthesis and assessment of super- capacitive and super-paramagnetic performances of Co~(2+) doped Fe_3O_4 ultra-fine particles
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One-pot electrochemical synthesis and assessment of super- capacitive and super-paramagnetic performances of Co~(2+) doped Fe_3O_4 ultra-fine particles

机译:Co〜(2+)掺杂Fe_3O_4超细颗粒的一锅法电化学合成及超电容和超顺磁性能评估

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摘要

AbstractHere, we report a facile and one-step fabrication of Co2+doped iron oxide nanoparticles (Co-IONPs). In this procedure, Co-IONPs are galvanostatically deposited from an additive-free aqueous solution of mixed iron(III) nitrate, iron(II) chloride and cobalt chloride salts. The obtained data from XRD, FE-SEM and energy-dispersive X-ray revealed that the deposited Co-IONPs sample has composition of Co2+doped magnetite crystal structure with fine particles (size ≈ 15 nm) morphology. The obtained electrochemical data showed that Co-IONPs are capable to deliver specific capacitances as high as 214.1 and 166.8 F g−1at the discharge loads of 0.25 and 1 A g−1, respectively, and capacity retentions of 95.1 and 88.6% after 2000 galvanostatic charging/discharging cycling. And about 20% enhanced in the charge storage ability of iron oxide electrode was obtained through 15 wt% Co2+doping. Furthermore, the results of vibrating sample magnetometer measurements confirmed an improvement in the superparamagnetic behavior of IONPs via Co2+doping. Based on the obtained results, our developed one-step electrochemical preparation platform is introduced as a facile procedure for the preparation of metal ion doped magnetite nanoparticles.
机译: 摘要 在这里,我们报道了一种简便且一步一步制备Co 2 + 掺杂的氧化铁纳米粒子(Co-IONPs)。在此过程中,Co-IONPs是从无添加剂的混合硝酸铁(III),氯化铁(II)和氯化钴盐的水溶液中恒电流沉积的。通过XRD,FE-SEM和能量色散X射线获得的数据表明,沉积的Co-IONPs样品具有Co 2 + 掺杂磁铁矿晶体结构,具有细小颗粒((≈15nm)形态学。所获得的电化学数据表明,Co-IONPs在放电负荷为0.25和1A g -1 -1 的比电容。 >,并且在2000次恒电流充电/放电循环后,容量保持率分别为95.1和88.6%。 15%(重量)的Co 2 + 掺杂可以使氧化铁电极的电荷存储能力提高约20%。此外,振动样品磁力计的测量结果证实,通过Co 2 + 掺杂可以改善IONPs的超顺磁性能。基于获得的结果,介绍了我们开发的一步法电化学制备平台,作为制备金属离子掺杂磁铁矿纳米粒子的简便方法。

著录项

  • 来源
    《Journal of materials science》 |2018年第3期|2291-2300|共10页
  • 作者单位

    Materials and Nuclear Research School, Nuclear Science and Technology Research Institute (NSTRI);

    Faculty of Chemistry, Center of Excellence in Electrochemistry, University of Tehran,Biosensor Research Center, Endocrinology and Metabolism Molecular-Cellular Sciences Institute, Tehran University of Medical Sciences;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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