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Solid-phase steam-assisted synthesis of hydroxyapatite nanorods and nanoparticles

机译:固相蒸汽辅助合成羟基磷灰石纳米棒和纳米颗粒

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摘要

This article reports a novel and facile solidbased steam-assisted conversion method for the synthesis of hydroxyapatite (HAP, Ca _(10)(PO_4)_6(OH)_2) nanorods and nanoparticles. After steam treatment at 180 °C for 20 h, the wet solid of brushite (CaHPO_4·2H_2O), which was precipitated from reaction between calcium nitrate [Ca(NO_3)_2] and diammonium hydrogen phosphate [(NH_4)_2HPO_4], was transformed to HAP nanorods with dimension of 100-300 nm in length and 56 ± 10 nm in diameter through a solid-gas reaction. By the same steam treatment, the dried brushite was converted to nanoparticles of HAP with small aspect ratio and particle size of 70 ± 18 nm. As compared with commercial HAP material, the nanostructured HAP materials exhibited superior sinterability in terms of density and hardness as well as excellent thermal stability. This simple, organic-free and cost-effective synthesis route with low reactant volume offers high potential for large-scale production of nanostructured HAP.
机译:本文报道了一种新颖且简便的基于固体的水蒸气辅助转化法,用于合成羟基磷灰石(HAP,Ca _(10)(PO_4)_6(OH)_2)纳米棒和纳米粒子。在180°C蒸汽处理20小时后,转化了钙镁矿的湿固体(CaHPO_4·2H_2O),该固体是由硝酸钙[Ca(NO_3)_2]与磷酸氢二铵[(NH_4)_2HPO_4]反应生成的。通过固-气反应制得长度为100-300 nm,直径为56±10 nm的HAP纳米棒。通过相同的蒸汽处理,将干燥的透钙磷石转化为纵横比小且粒径为70±18 nm的HAP纳米颗粒。与市售的HAP材料相比,纳米结构的HAP材料在密度和硬度以及优异的热稳定性方面显示出优异的可烧结性。这种简单,无有机物且具有成本效益的合成路线,反应物体积小,为大规模生产纳米结构HAP提供了巨大潜力。

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