A Friendly Environmental Route for the Fabrication of Spinel Co3O4 Nanorods, Using Inorganic Precursor Salt and Aqueous Extracts of Moringa oleifera Leaves

G. Mata, Joseph K'ekuboni Malongwe, P. O. Lohohola, J. L. Muswema, O. M. Mvele, Remy Imboyo Ndjoko, H. M. Kalele, Désiré Kabuya Tshibangu, Paul Kavuna Mahuku, G. Ekoko
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Abstract

Nowadays many researchers are focused on the sytnhesis of nanoscale tricobalt tetraoxide (Co3O4) particles, owing to their unique properties. These particles have indeed many potential technological applications. The present investigation deals with the fabrication of this spinel oxide: it was successfully synthesized through a friendly environmental method, using cobalt (II) chloride as cobalt precursor and aqueous extract of Moringa oleifera leaves. The latter contains alkaloids as a base source while flavonoids present in the leaves acted as capping agent to prevent the particles agglomeration. Alkaloids present in the leaves were hydrolyzed in water and consequently, hydroxilated Co2+ leads to the formation of Co3O4 powder via calcination. The electronic transmission microscopy has revealed the single crystalline nanorods morphology of the synthetised materials. These nanorods are about several hundred nanometers long and several tens of nanometers in diameter. The bulk Co3O4 is known to be antiferromagnetic, the vibrating sample magnetometer data (at room temperature) of the prepared powder exhibited the lower coercivity and remanence, signaling that the produced spinel was pure and was constituted of superparamagnetic particles made of Co3O4. The UV–visible spectrum exhibited a photoluminescence peak in the visible light range positioned at about 538nm, suggesting this spinel as a visible light emitting material and as photocatalyst under visible light.
用无机前驱体盐和辣木叶水提物制备尖晶石Co3O4纳米棒的环保途径
由于纳米四氧化三钴(Co3O4)具有独特的性能,目前许多研究人员都在关注其合成。这些粒子确实有许多潜在的技术应用。本文研究了这种氧化尖晶石的制备方法:以氯化钴为钴前驱体,以辣木叶水提物为原料,采用环境友好的方法成功地合成了这种氧化尖晶石。后者含有生物碱作为碱源,而叶片中存在的黄酮类化合物作为封盖剂,防止颗粒团聚。存在于叶子中的生物碱在水中被水解,因此,羟基化的Co2+通过煅烧形成Co3O4粉末。电子透射显微镜显示了合成材料的单晶纳米棒形态。这些纳米棒大约有几百纳米长,直径几十纳米。Co3O4为反铁磁体,制备的粉末的振动样品磁强计数据(室温下)显示出较低的矫顽力和剩余物,表明制备的尖晶石是纯的,由Co3O4制成的超顺磁性颗粒组成。紫外可见光谱在538nm左右的可见光范围内出现光致发光峰,表明该尖晶石是一种可见光发射材料,在可见光下具有光触媒作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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