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通过在低压氦气和氮气气氛中激光烧蚀制备的用于生物光子学应用的锗纳米颗粒。

Germanium Nanoparticles Prepared by Laser Ablation in Low Pressure Helium and Nitrogen Atmosphere for Biophotonic Applications.

作者信息

Fronya Anastasiya A, Antonenko Sergey V, Karpov Nikita V, Pokryshkin Nikolay S, Eremina Anna S, Yakunin Valery G, Kharin Alexander Yu, Syuy Alexander V, Volkov Valentin S, Dombrovska Yaroslava, Garmash Alexander A, Kargin Nikolay I, Klimentov Sergey M, Timoshenko Victor Yu, Kabashin Andrei V

机构信息

MEPHI, Institute of Engineering Physics for Biomedicine (PhysBio), Kashirskoe sh. 31, 115409 Moscow, Russia.

Lebedev Physical Institute of the Russian Academy of Sciences, Leninskiy Pr. 53, 119991 Moscow, Russia.

出版信息

Materials (Basel). 2022 Aug 2;15(15):5308. doi: 10.3390/ma15155308.

Abstract

Due to particular physico-chemical characteristics and prominent optical properties, nanostructured germanium (Ge) appears as a promising material for biomedical applications, but its use in biological systems has been limited so far due to the difficulty of preparation of Ge nanostructures in a pure, uncontaminated state. Here, we explored the fabrication of Ge nanoparticles (NPs) using methods of pulsed laser ablation in ambient gas (He or He-N mixtures) maintained at low residual pressures (1-5 Torr). We show that the ablated material can be deposited on a substrate (silicon wafer in our case) to form a nanostructured thin film, which can then be ground in ethanol by ultrasound to form a stable suspension of Ge NPs. It was found that these formed NPs have a wide size dispersion, with sizes between a few nm and hundreds of nm, while a subsequent centrifugation step renders possible the selection of one or another NP size fraction. Structural characterization of NPs showed that they are composed of aggregations of Ge crystals, covered by an oxide shell. Solutions of the prepared NPs exhibited largely dominating photoluminescence (PL) around 450 nm, attributed to defects in the germanium oxide shell, while a separated fraction of relatively small (5-10 nm) NPs exhibited a red-shifted PL band around 725 nm under 633 nm excitation, which could be attributed to quantum confinement effects. It was also found that the formed NPs exhibit high absorption in the visible and near-IR spectral ranges and can be strongly heated under photoexcitation in the region of relative tissue transparency, which opens access to phototherapy functionality. Combining imaging and therapy functionalities in the biological transparency window, laser-synthesized Ge NPs present a novel promising object for cancer theranostics.

摘要

由于具有特殊的物理化学特性和突出的光学性质,纳米结构锗(Ge)似乎是一种有前途的生物医学应用材料,但由于难以制备出纯净、无污染状态的锗纳米结构,其在生物系统中的应用至今仍受到限制。在此,我们探索了在低残余压力(1 - 5托)下的环境气体(氦气或氦 - 氮混合物)中使用脉冲激光烧蚀法制备锗纳米颗粒(NPs)。我们表明,烧蚀材料可以沉积在基底(在我们的例子中是硅片)上形成纳米结构薄膜,然后通过超声在乙醇中研磨以形成稳定的锗纳米颗粒悬浮液。结果发现,这些形成的纳米颗粒具有广泛的尺寸分布,尺寸在几纳米到数百纳米之间,而随后的离心步骤使得可以选择一种或另一种纳米颗粒尺寸级分。纳米颗粒的结构表征表明它们由锗晶体聚集体组成,被氧化壳覆盖。所制备纳米颗粒的溶液在450 nm左右表现出占主导地位的光致发光(PL),这归因于氧化锗壳中的缺陷,而一部分相对较小(5 - 10 nm)的纳米颗粒在633 nm激发下在725 nm左右表现出红移的PL带,这可归因于量子限制效应。还发现所形成的纳米颗粒在可见光和近红外光谱范围内表现出高吸收,并且在相对组织透明区域的光激发下可被强烈加热,这为光疗功能开辟了途径。在生物透明窗口中结合成像和治疗功能,激光合成的锗纳米颗粒为癌症诊疗提供了一种新型的有前途的对象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/329a/9369467/8c98d6cb7771/materials-15-05308-g001.jpg

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