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Laser-Ablative Synthesis of Stable Aqueous Solutions of Elemental Bismuth Nanoparticles for Multimodal Theranostic Applications

机译:用于多式联运纳米粒子的元素铋纳米粒子稳定水溶液的激光烧蚀合成

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摘要

Elemental bismuth (Bi) nanoparticles (NPs), with the high atomic density of the Bi nuclei, could serve as efficient targeted agents for cancer treatment, with applications such as contrast agents for computed tomography (CT) imaging, sensitizers for image-guided X-ray radiotherapy, and photothermal therapy. However, the synthesis of elemental Bi NPs suitable for biological applications is difficult using conventional chemical routes. Here, we explore the fabrication of ultrapure Bi-based nanomaterials by femtosecond laser ablation from a solid Bi target in ambient liquids and characterize them by a variety of techniques, including TEM, SEM, XRD, FTIR, Raman, and optical spectroscopy. We found that laser-ablative synthesis using an elemental Bi solid target leads to the formation of spherical Bi NPs having the mean size of 20–50 nm and a low size-dispersion. The NPs prepared in water experience a fast (within a few minutes) conversion into 400–500 nm flake-like nanosheets, composed of bismuth subcarbonates, (BiO) CO and (BiO) CO (OH) , while the NPs prepared in acetone demonstrate high elemental stability. We introduce a procedure to obtain a stable aqueous solution of elemental Bi NPs suitable for biological applications, based on the coating of Bi NPs prepared in acetone with Pluronic F68 and their subsequent transfer to water. We also show that the laser-synthesized elemental Bi NPs, due to their vanishing band gap, exhibit remarkable absorption in the infrared range, which can be used for the activation of photothermal therapy in the near IR-to-IR window with maximum optical transparency in biological media. Exempt of any toxic synthetic by-products, laser-ablated elemental Bi NPs present a novel appealing nanoplatform for combination image-guided photoradiotherapies.
机译:元素铋(BI)纳米颗粒(NPS),具有BI核的高原子密度,可用作癌症治疗的有效靶向剂,其具有用于计算机断层扫描(CT)成像的造影剂,图像引导X的敏感剂 - 射线放疗和光热疗。然而,使用常规化学途径,适用于生物应用的元素Bi NP的合成。这里,我们通过在环境液体中的实心BI靶通过SIMTOSECOND激光烧蚀来探讨超倍向BI基础纳米材料的制造,并通过各种技术表征它们,包括TEM,SEM,XRD,FTIR,拉曼和光学光谱。我们发现使用元素Bi固体靶的激光烧蚀合成导致形成平均尺寸为20-50nm和低尺寸分散体的球形BI NP的形成。在水中制备的NPS在丙甲酸酯(Bio)Co和(Bio)Co(OH)中组成的快速(几分钟内)转化为400-500nm薄片状纳米片,而在丙酮中制备的NPS表明高元素稳定性。我们介绍一种方法,以获得适用于生物应用的稳定水溶液,适用于生物应用,基于丙酮的丙酮与Pluronic F68制备的BI NP及其随后转移到水中。我们还表明激光合成的元素BI NPS,由于它们的消失带隙,在红外范围内表现出显着的吸收,可用于最大光学透明度的近IR-TO-IR窗口中的光热疗法激活在生物媒体中。免除任何有毒的合成副产物,激光烧蚀元素Bi NPS存在一种用于组合图像引导的光辐射的新型吸引力纳米片。

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