Synthesis of Green Brucite [NixMg1−x(OH)2] by Incorporation of Nickel Ions in the Periclase Phase (MgO) Applied as Pigments

Colorants Pub Date : 2024-05-20 DOI:10.3390/colorants3020011
C. Siqueira, Aline B Schons, Patricia Appelt, Weslei D. Silva, Nayara Balaba, Mário A. A. Cunha, F. Anaissi
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Abstract

Magnesium oxide is typically white and can be colorized with transition metal insertion by doping. We present the preparation of a green-colored hydroxide by the exchange of Mg2+ on the crystalline lattice with Ni2+ in MgO, using three nickel salts. MgOst was prepared by the colloidal starch suspension method, using cassava starch. The oxides and hydroxides, before and after, were characterized by X-ray diffraction (XRD), and show that a phase change occurs: a transition from periclase (MgO) to brucite (Mg(OH)2) due to the incorporation of nickel ions from different salts (acetate, chloride, and nitrate), resulting in the solid solution [NixMg1−x(OH)2]. The FTIR spectrum corroborates the crystallographic structure identified through XRD patterns, confirming the formation of a crystal structure resembling brucite. The new samples present a green color, indicative of the incorporation of the Ni2+ ions. The antimicrobial activity of products resulting from the doping of magnesium oxide with nickel and the precursor MgOst was assessed through the minimum inhibitory concentration (MIC) test. The evaluation included three bacterial strains: Staphylococcus aureus (ATCC 25923), Escherichia coli (ATCC 25922), Salmonella gallinarum (ATCC 9184), and a yeast strain, Candida albicans (ATCC 10231). The obtained results were promising; the tested samples exhibited antimicrobial activity, with a MIC ranging from 0.312 to 0.625 μg.μL−1. The nickel compound, derived from the precursor chloride salt, demonstrated superior MIC activity. Notably, all tested samples displayed bactericidal activity against the S. aureus strain and exhibited a broad spectrum of inhibition, encompassing both Gram-positive and Gram-negative strains. Only the nickel compounds derived from precursors with acetate and nitrate anions demonstrated antimicrobial activity against C. albicans, exhibiting a fungistatic behavior. Based on the conducted studies, [NixMg1−x(OH)2] has emerged as a promising antimicrobial agent, suitable for applications requiring the delay or inhibition of bacterial growth.
通过在用作颜料的包晶相(氧化镁)中掺入镍离子合成绿色青金石 [NixMg1-x(OH)2]
氧化镁通常是白色的,通过掺杂过渡金属可使其着色。我们利用三种镍盐,通过氧化镁中的镍2+与晶格上的Mg2+交换,制备了一种绿色氢氧化物。MgOst 是用木薯淀粉通过胶体淀粉悬浮法制备的。X 射线衍射 (XRD) 对制备前后的氧化物和氢氧化物进行了表征,结果表明发生了相变:由于不同盐类(醋酸盐、氯化物和硝酸盐)中的镍离子的加入,发生了从橄榄石(MgO)到青金石(Mg(OH)2)的转变,形成了固溶体 [NixMg1-x(OH)2]。傅立叶变换红外光谱证实了通过 X 射线衍射图谱确定的晶体结构,确认形成了类似于青金石的晶体结构。新样品呈现绿色,表明其中含有 Ni2+ 离子。通过最小抑菌浓度(MIC)测试评估了掺入镍的氧化镁和前体 MgOst 所产生的产品的抗菌活性。评估包括三种细菌菌株:金黄色葡萄球菌(ATCC 25923)、大肠杆菌(ATCC 25922)、胆沙门氏菌(ATCC 9184)和一种酵母菌株白色念珠菌(ATCC 10231)。测试结果表明,测试样品具有抗菌活性,其 MIC 值为 0.312 至 0.625 μg.μL-1。从前体氯盐中提取的镍化合物显示出更高的 MIC 活性。值得注意的是,所有测试样品都对金黄色葡萄球菌菌株具有杀菌活性,并表现出广泛的抑菌谱,包括革兰氏阳性和革兰氏阴性菌株。只有从带有醋酸阴离子和硝酸阴离子的前体中提取的镍化合物才对白僵菌具有抗菌活性,表现出抑菌作用。根据所进行的研究,[NixMg1-x(OH)2] 已成为一种很有前途的抗菌剂,适用于需要延缓或抑制细菌生长的应用领域。
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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