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Synthesis and characterization of Nd~(3+): Yb~(3+) co-doped near infrared sensitive fluorapatite nanoparticles as a bioimaging probe

机译:Nd〜(3+):Yb〜(3+)共掺杂近红外敏感氟磷灰石纳米粒子的合成及表征

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Trivalent Nd and Yb co-doped rod shaped hexagonal phase fluorapatite (FAP) nanoparticles of length and width about 32 and 13 nm, respectively were prepared by hydrothermal method and investigated the ability for 980 nm emission via Nd3+ -> Yb3+ energy transfer with the objective of utilizing them in biomedical imaging. Nd3+ -> Yb3+ energy transfer in FAP was studied as a function of both Nd3+ and Yb3+ concentrations and found that when Yb3+ concentration was 10 mol% the FAP phase has partially turned in to YbPO4 phase. The Yb3+ emission intensity at 980 nm significantly increased up to 5 mol% Yb3+ doping and then reduced drastically for further increase in its concentration. Nd3+ -> +Yb3+ energy transfer rates were evaluated from the decay curves and found that a transfer rate of 71% for 2 mol% Nd3+ co-doped with 5 mol% Yb3+. The cytocompatibility test with fibroblast like cells using MTT assay revealed that the nanoparticles are compatible with the cells. (C) 2018 Elsevier B.V. All rights reserved.
机译:采用水热法制备了长约32 nm,宽约13 nm的三价Nd和Yb共掺杂棒状六方相氟磷灰石(FAP)纳米粒子,并研究了通过目的Nd3 +-> Yb3 +能量转移的980 nm发射能力。在生物医学成像中的应用。研究了FAP中Nd3 +-> Yb3 +的能量转移与Nd3 +和Yb3 +浓度的关系,发现当Yb3 +浓度为10 mol%时,FAP相已部分转变为YbPO4相。在980 nm处,Yb3 +的发射强度显着增加,最高掺杂达到5 mol%,然后急剧降低,以进一步提高其浓度。从衰减曲线评估了Nd3 +-> + Yb3 +的能量转移速率,发现对于2摩尔%Nd3 +共掺杂5摩尔%Yb3 +,转移速率为71%。使用MTT测定法对成纤维细胞样细胞的细胞相容性测试表明,纳米颗粒与细胞相容。 (C)2018 Elsevier B.V.保留所有权利。

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