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一种在高温下合成小尺寸且水溶性的NaYF:Yb、Ln上转换纳米颗粒的通用方法。

A general synthesis method for small-size and water-soluble NaYF:Yb, Ln upconversion nanoparticles at high temperature.

作者信息

Liu Mingda, Xu Jianwen, Zhu Kai, Yan Ming, He Min, Huang Xiaowei, Xu Yan, Wang Wei, Zhao Shibo, Zeng Qinghui

机构信息

Changchun University of Chinese Medicine Bo_Shuo Road 1035 Changchun 130117 P. R. China

Northeast Asian Institute of Traditional Chinese Medicine, Changchun University of Chinese Medicine Bo_Shuo Road 1035 Changchun 130117 P. R. China.

出版信息

RSC Adv. 2024 Dec 9;14(52):38689-38696. doi: 10.1039/d4ra07543a. eCollection 2024 Dec 3.

Abstract

In this work, we developed a general synthesis method for the water-soluble lanthanide ion-doped NaYF upconversion (UC) nanoparticles (NPs) using triethylene glycol (TEG) as a high temperature solvent and diacid as a surfactant. Since the boiling point of the TEG is as high as 289.4 °C, the synthesis temperature can be correspondingly increased to a higher temperature that is a bit lower than this one. Therefore, water-soluble UCNPs with a small size (<50 nm) can be easily prepared. The nanocrystal growth temperature could be elevated from 180 °C to 285 °C due to the superiority of the high-temperature polar solvent environment introduced in this work. The temperature-dependent nanocrystal growth mechanism and luminescent properties of UCNPs are deeply explored. Different chain length diacids, , three-carbon chain length propanedioic acid (PDA), six-carbon chain length hexanedioic acid (HDA) and nine-carbon chain length azelaic acid (AA), were used in this work to prepare the water-soluble UCNPs in polar solution, and we finally found that the fluorescent intensity and water-stability are inversely proportional to the carbon chain length of the ligand. PDA was proved to be an optimum surfactant to prepare the most stable water-soluble UCNPs. As a result, the water-soluble UCNPs we prepared can also be successfully applied in the upconversion luminescent cell imaging. This study opens up new avenues for the synthesis of water-soluble UCNPs with small sizes and provides more opportunities for their applications in fields such as biological imaging and biological detection.

摘要

在这项工作中,我们开发了一种通用的合成方法,以三甘醇(TEG)作为高温溶剂,二酸作为表面活性剂,制备水溶性镧系离子掺杂的NaYF上转换(UC)纳米颗粒(NPs)。由于TEG的沸点高达289.4°C,合成温度可以相应提高到略低于此温度的较高温度。因此,可以轻松制备尺寸小(<50 nm)的水溶性UCNPs。由于这项工作中引入的高温极性溶剂环境的优势,纳米晶体生长温度可以从180°C提高到285°C。深入探究了UCNPs的温度依赖性纳米晶体生长机理和发光特性。在这项工作中,使用了不同链长的二酸,即三碳链长的丙二酸(PDA)、六碳链长的己二酸(HDA)和九碳链长的壬二酸(AA),在极性溶液中制备水溶性UCNPs,我们最终发现荧光强度和水稳定性与配体的碳链长度成反比。事实证明,PDA是制备最稳定的水溶性UCNPs的最佳表面活性剂。因此,我们制备的水溶性UCNPs也可以成功应用于上转换发光细胞成像。这项研究为合成小尺寸水溶性UCNPs开辟了新途径,并为其在生物成像和生物检测等领域的应用提供了更多机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8f4/11626383/c650bd3206cf/d4ra07543a-f1.jpg

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