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从经过重新审视的湿化学路线制备相纯、单晶和具有二次谐波产生效率的 BiFeO3 纳米粒子,用于谐波生物成像。

Preparation from a revisited wet chemical route of phase-pure, monocrystalline and SHG-efficient BiFeO nanoparticles for harmonic bio-imaging.

机构信息

Department of Clinical Medicine, Trinity Translational Medicine Institute (TTMI), Trinity College Dublin, Dublin 8, Ireland.

CRANN Institute and AMBER centre, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Sci Rep. 2018 Jul 11;8(1):10473. doi: 10.1038/s41598-018-28557-w.

DOI:10.1038/s41598-018-28557-w
PMID:29992985
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6041297/
Abstract

We present two new synthetic routes for bismuth ferrite harmonic nanoparticles (BiFeO HNPs). Both phase-pure and mixed phase BiFeO materials were produced after improvement of the solvent evaporation and sol-gel combustion routes. Metal nitrates with a series of dicarboxylic acids (tartronic, tartaric and mucic) were used to promote crystallization. We found that the longer the carbon backbone with a hydroxyl group attached to each carbon, the lower the annealing temperature. We also demonstrate that nanocrystals more readily formed at a given temperature by adding glycerol but to the detriment of phase purity, whereas addition of NaCl in excess with mucic acid promotes the formation of phase-pure, monocrystalline nanoparticles. This effect was possibly associated with a better dispersion of the primary amorphous precursors and formation of intermediate complexes. The nanoparticles have been characterized by XRD, TEM, ζ-potential, photon correlation spectroscopy, two-photon microscopy and Hyper-Rayleigh Scattering measurements. The improved crystallization leads to BiFeO HNPs without defect-induced luminescence and with a very high averaged second harmonic efficiency (220 pm/V), almost triple the efficiency previously reported. This development of simple, scalable synthesis routes which yield phase-pure and, crucially, monocrystalline BiFeO HNPs demonstrates a significant advance in engineering the properties of nanocrystals for bio-imaging and diagnostics applications.

摘要

我们提出了两种新的铋铁氧体谐波纳米粒子(BiFeO HNPs)的合成路线。通过改进溶剂蒸发和溶胶-凝胶燃烧路线,得到了纯相和混合相的 BiFeO 材料。我们使用一系列金属硝酸盐和二羧酸(酒石酸、酒石酸和粘酸)来促进结晶。我们发现,带有一个羟基的碳原子的碳链越长,退火温度越低。我们还证明,通过添加甘油可以在给定温度下更容易形成纳米晶,但不利于相纯度,而过量的粘酸与 NaCl 一起添加则促进了纯相、单晶纳米颗粒的形成。这种效应可能与初级非晶前体的更好分散和中间配合物的形成有关。通过 XRD、TEM、ζ-电位、光子相关光谱、双光子显微镜和超瑞利散射测量对纳米颗粒进行了表征。改进的结晶导致 BiFeO HNPs 没有缺陷诱导的发光,并且具有非常高的平均二次谐波效率(220 pm/V),几乎是之前报道的三倍。这种简单、可扩展的合成路线的发展,产生了纯相、至关重要的单晶 BiFeO HNPs,这是在生物成像和诊断应用中对纳米晶体性能进行工程设计的重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8061/6041297/8e902c0401af/41598_2018_28557_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8061/6041297/f1138340577d/41598_2018_28557_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8061/6041297/8e902c0401af/41598_2018_28557_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8061/6041297/f1138340577d/41598_2018_28557_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8061/6041297/8e902c0401af/41598_2018_28557_Fig4_HTML.jpg

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