Synthesis of nano magnesium oxide: a study on a magnesium sulfate-ammonium citrate chelation system

IF 5.1 3区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Nanoscale Pub Date : 2025-08-13 DOI:10.1039/D5NR02401C
Jiaqi Zhu, Tianpeng Wen and Jingkun Yu
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Abstract

To efficiently utilize low-cost magnesium sulfate heptahydrate resources by developing MgO ceramics with superior properties, a novel synthesis route was proposed, involving the preparation of [Mg(NH3)3]2+ complexes through the reaction of magnesium sulfate heptahydrate with ammonium citrate, followed by calcination to obtain MgO nanoparticles. These nanoparticles were subsequently sintered to fabricate MgO ceramics. The impact of calcination temperature on the phase structure, chemical composition, and morphology of MgO nanoparticles was systematically investigated, and the mechanical properties of the resulting ceramics were comprehensively evaluated. In this study, magnesium sulfate was used as the raw material and ammonium citrate as the chelating agent, and the complex was generated at 120 °C. After calcination at 1000 °C, high-purity MgO nanoparticles with a regular shape, an average particle size of 109 nm, and a lattice spacing of 0.39 nm were successfully obtained. After sintering, the MgO ceramics exhibited a bulk density of 3.41 g cm−3, demonstrating the feasibility and potential of this new approach for producing high-quality MgO ceramics from abundant magnesium sulfate heptahydrate resources.

Abstract Image

Abstract Image

纳米氧化镁的合成:硫酸镁-柠檬酸铵螯合体系的研究
为了高效利用低成本的七水硫酸镁资源,开发性能优越的MgO陶瓷,提出了一种新的合成路线,即通过七水硫酸镁与柠檬酸铵反应制备[Mg(NH3)3]2+配合物,然后煅烧得到MgO纳米颗粒。这些纳米颗粒随后被烧结制成MgO陶瓷。系统研究了煅烧温度对MgO纳米颗粒的相结构、化学组成和形貌的影响,并对制备的MgO纳米颗粒的力学性能进行了综合评价。本研究以硫酸镁为原料,柠檬酸铵为螯合剂,在120℃下生成配合物。经1000℃煅烧后,成功获得了形状规则、平均粒径为109 nm、晶格间距为0.39 nm的高纯MgO纳米颗粒。烧结后,MgO陶瓷的体积密度为3.41 g cm−3,证明了该方法从丰富的七水硫酸镁资源中制备高质量MgO陶瓷的可行性和潜力。
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来源期刊
Nanoscale
Nanoscale CHEMISTRY, MULTIDISCIPLINARY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
12.10
自引率
3.00%
发文量
1628
审稿时长
1.6 months
期刊介绍: Nanoscale is a high-impact international journal, publishing high-quality research across nanoscience and nanotechnology. Nanoscale publishes a full mix of research articles on experimental and theoretical work, including reviews, communications, and full papers.Highly interdisciplinary, this journal appeals to scientists, researchers and professionals interested in nanoscience and nanotechnology, quantum materials and quantum technology, including the areas of physics, chemistry, biology, medicine, materials, energy/environment, information technology, detection science, healthcare and drug discovery, and electronics.
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