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Co-Pt nanoparticles encapsulated in carbon cages prepared by sonoelectrodeposition

机译:通过声电沉积法将Co-Pt纳米颗粒封装在碳笼中

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Co-Pt nanoparticles encapsulated in carbon cages have been prepared by sonoelectrodeposition followed by annealing in a CO atmosphere. Sonoelectrodeposition is a useful technique to make metallic nanoparticles, using ultrasound during electrodeposition to remove nanoparticles as they grow on the cathode surface. We used an electrolyte containing chloroplatinic acid and cobalt chloride and found that the atomic ratio of Co:Pt in the as-formed materials varied from 0.2 to 0.8 as the deposition current density was changed from 15 to 35mAcm- 2. However, the as-deposited materials were inhomogeneous, comprising a mixture of Pt-rich and Co-rich nanoparticles. X-ray diffraction indicated that subsequent heat treatment (700 °C for 1h) under CO gas created an ordered CoPt alloy phase that exhibited hard magnetic properties. Transmission electron microscopy showed many of the resulting nanoparticles to be encapsulated in carbon cages, which we ascribe to Co-catalyzed decomposition of CO during annealing. The thickness of the carbon cages was about ten layers, which may have helped reduce sintering during annealing. The size of the resultant nanoparticles was about 100 nm diameter, larger than the typical 5-10nm diameter of as-deposited nanoparticles.
机译:封装在碳笼中的Co-Pt纳米粒子是通过超声电沉积,然后在CO气氛中退火制备的。声电沉积是一种制造金属纳米粒子的有用技术,在电沉积过程中使用超声波去除纳米粒子在阴极表面生长时可以去除纳米粒子。我们使用了一种含氯铂酸和氯化钴的电解质,发现当沉积电流密度从15mA变为35mAcm-2时,形成的材料中Co:Pt的原子比从0.2变为0.8。沉积的材料是不均匀的,包括富Pt和富Co纳米颗粒的混合物。 X射线衍射表明,随后在CO气中进行的热处理(700°C,1小时)产生了有序的CoPt合金相,该相显示出硬磁性能。透射电子显微镜显示许多所得的纳米颗粒被封装在碳笼中,这归因于退火过程中Co催化的CO分解。碳笼的厚度约为十层,这可能有助于减少退火过程中的烧结。所得纳米颗粒的尺寸为约100nm直径,大于所沉积的纳米颗粒的典型5-10nm直径。

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