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Cascade luminescence and antibacterial behavior of fluorapatite nanopowder co-doped with Pr3+, NO3- and CO32- ions

机译:氟磷灰石纳米粉体与Pr3+、NO3-和CO32-离子共掺杂的级联发光和抗菌行为

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摘要

In this study, luminescence and antibacterial behavior of pure fluorapatite (FAp) and praseodymium-nitrate-carbonate co-doped fluorapatite (PrNCFAp) nanopowders were investigated. Uniform nanopowders were synthesized by precipitation reaction followed by centrifugation and systematically characterized by XRD, FTIR, SEM-EDS, TG and PL methods. XRD analysis revealed the formation of hexagonal FAp crystals, and FTIR spectra indicate the presence of nitrate (NO3-) and carbonate (CO32-) species. SEM analyzes confirm agglomerates composed of irregular nanometer-sized spheres. Emission of FAp nanopowder occurred in the violet-blue region of the visible part of the spectrum, with redshift to the blue-green color region when Pr3+, NO(3)(- )and CO32- co-doped in the lattice. Analysis of luminescence spectra by MCR-ALS method extract three fluorophores from the PrNCFAp sample and showed simultaneous existents of emission-reabsorption-emission between dopants in FAp lattice. Antibacterial activity against pathogen Staphylococcus aureus was investigated before and after treatment of nanopowders by UVA radiation of 365 nm. Nanopowders irradiated with UVA compared to non-irradiated reduced Staphylococcus aureus by 84.9 for PrNCFAp and 33.3 for FAp in the first 0.5 h of contact, and 76.1 and 42.9 after 24 h of contact. In addition, the obtained luminescent nanomaterials showed a low degree of hemolytic activity and could potentially be candidates for further research in dentistry.
机译:本研究研究了纯氟磷灰石(FAp)和硝酸镨-碳酸酯共掺杂氟磷灰石(PrNCFAp)纳米粉末的发光和抗菌行为。采用沉淀反应和离心法合成了均匀的纳米粉体,并采用XRD、FTIR、SEM-EDS、TG和PL方法进行了系统表征。XRD分析显示六方FAp晶体的形成,FTIR光谱表明存在硝酸盐(NO3-)和碳酸盐(CO32-)物质。SEM分析证实了由不规则纳米大小的球体组成的团聚体。FAp纳米粉末的发射发生在光谱可见部分的紫蓝色区域,当Pr3+、NO(3)(-)和CO32-在晶格中共掺杂时,红移向蓝绿色区域。通过MCR-ALS方法分析发光光谱,从PrNCFAp样品中提取了三种荧光团,并显示FAp晶格中掺杂剂之间同时存在发射-重吸收-发射。通过365nm的UVA辐射研究了纳米粉末处理前后的抗菌活性 金黄色葡萄球菌.与未辐照的纳米粉末相比,用UVA辐照的纳米粉末在接触的前0.5小时内将PrNCFAp和FAp分别降低了84.9%和33.3%,在接触24小时后分别降低了76.1%和42.9%。此外,所获得的发光纳米材料显示出低程度的溶血活性,并可能成为牙科进一步研究的候选材料。

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