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钕掺杂氟化镧纳米粒子的稳定水胶体溶液,有望用于近红外光谱范围内的发光生物成像。

Stable Aqueous Colloidal Solutions of Nd: LaF Nanoparticles, Promising for Luminescent Bioimaging in the Near-Infrared Spectral Range.

作者信息

Popov Alexandr, Orlovskaya Elena, Shaidulin Artem, Vagapova Ekaterina, Timofeeva Elena, Dolgov Leonid, Iskhakova Lyudmila, Uvarov Oleg, Novikov Grigoriy, Rähn Mihkel, Tamm Aile, Vanetsev Alexander, Fedorenko Stanislav, Eliseeva Svetlana, Petoud Stephane, Orlovskii Yurii

机构信息

Prokhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia.

Institute of Physics, University of Tartu, W.Ostwaldi Str. 1, 50411 Tartu, Estonia.

出版信息

Nanomaterials (Basel). 2021 Oct 26;11(11):2847. doi: 10.3390/nano11112847.

Abstract

Two series of stable aqueous colloidal solutions of Nd: LaF single-phase well-crystallized nanoparticles (NPs), possessing a fluorcerite structure with different activator concentrations in each series, were synthesized. A hydrothermal method involving microwave-assisted heating (HTMW) in two Berghof speedwave devices equipped with one magnetron (type I) or two magnetrons (type II) was used. The average sizes of NPs are 15.4 ± 6 nm (type I) and 21 ± 7 nm (type II). Both types of NPs have a size distribution that is well described by a double Gaussian function. The fluorescence kinetics of the F level of the Nd ion for NPs of both types, in contrast to a similar bulk crystal, demonstrates a luminescence quenching associated not only with Nd-Nd self-quenching, but also with an additional Nd-OH quenching. A method has been developed for determining the spontaneous radiative lifetime of the excited state of a dopant ion, with the significant contribution of the luminescence quenching caused by the presence of the impurity OH- acceptors located in the bulk of NPs. The relative quantum yield of fluorescence and the fluorescence brightness of an aqueous colloidal solution of type II NPs with an optimal concentration of Nd are only 2.5 times lower than those of analogous Nd: LaF single crystals.

摘要

合成了两系列稳定的钕掺杂氟化镧单相结晶良好的纳米颗粒(NPs)水胶体溶液,每一系列中激活剂浓度不同,其具有氟铈矿结构。采用水热法,在两台配备一个磁控管(I型)或两个磁控管(II型)的伯格霍夫速波装置中进行微波辅助加热(HTMW)。NPs的平均尺寸为15.4±6nm(I型)和21±7nm(II型)。两种类型的NPs的尺寸分布都能用双高斯函数很好地描述。与类似的块状晶体相比,两种类型NPs中钕离子F能级的荧光动力学表明,发光猝灭不仅与钕-钕自猝灭有关,还与额外的钕-羟基猝灭有关。已开发出一种方法来测定掺杂离子激发态的自发辐射寿命,其中位于NPs主体中的杂质羟基受体的存在对发光猝灭有显著贡献。具有最佳钕浓度的II型NPs水胶体溶液的相对荧光量子产率和荧光亮度仅比类似的钕掺杂氟化镧单晶低2.5倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77b2/8625732/279efd1d307c/nanomaterials-11-02847-g001.jpg

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