首页> 美国卫生研究院文献>Scientific Reports >Dually functioned core-shell NaYF4:Er3+/Yb3+@NaYF4:Tm3+/Yb3+ nanoparticles as nano-calorifiers and nano-thermometers for advanced photothermal therapy
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Dually functioned core-shell NaYF4:Er3+/Yb3+@NaYF4:Tm3+/Yb3+ nanoparticles as nano-calorifiers and nano-thermometers for advanced photothermal therapy

机译:具有双重功能的核壳NaYF4:Er3 + / Yb3 + @ NaYF4:Tm3 + / Yb3 +纳米粒子可作为纳米量热剂和纳米温度计用于先进的光热疗法

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摘要

To realize photothermal therapy (PTT) of cancer/tumor both the photothermal conversion and temperature detection are required. Usually, the temperature detection in PTT needs complicated instruments, and the therapy process is out of temperature control in the present investigations. In this work, we attempt to develop a novel material for achieving both the photothermal conversion and temperature sensing and control at the same time. To this end, a core-shell structure with NaYF4:Er3+/Yb3+ core for temperature detection and NaYF4:Tm3+/Yb3+ shell for photothermal conversion was designed and prepared. The crystal structure and morphology of the samples were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Furthermore, the temperature sensing properties for the NaYF4:Er3+/Yb3+ and core-shell NaYF4:Er3+/Yb3+@NaYF4:Tm3+/Yb3+ nanoparticles were studied. It was found that the temperature sensing performance of the core-shell nanoparticles did not become worse due to coating of NaYF4:Tm3+/Yb3+ shell. The photothermal conversion behaviors were examined in cyclohexane solution based on the temperature response, the NaYF4:Er3+/Yb3+@NaYF4:Tm3+/Yb3+ core-shell nanoparticles exhibited more effective photothermal conversion than that of NaYF4:Er3+/Yb3+ nanoparticles, and a net temperature increment of about 7 °C was achieved by using the core-shell nanoparticles.
机译:为了实现癌症/肿瘤的光热疗法(PTT),需要光热转换和温度检测。通常,PTT中的温度检测需要复杂的仪器,并且在本研究中治疗过程超出了温度控制范围。在这项工作中,我们尝试开发一种新颖的材料,以同时实现光热转换和温度感测与控制。为此,使用具有用于温度检测的NaYF4:Er 3 + / Yb 3 + 核和NaYF4:Tm 3 + 的核-壳结构设计并制备了用于光热转化的/ Yb 3 + 壳。通过X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征样品的晶体结构和形态。此外,NaYF4:Er 3 + / Yb 3 + 和核壳型NaYF4:Er 3 + / Yb <研究了sup> 3 + @ NaYF4:Tm 3 + / Yb 3 + 纳米粒子。发现核壳纳米粒子的温度传感性能并没有因为NaYF4:Tm 3 + / Yb 3 + 壳的包覆而变差。根据温度响应NaYF4:Er 3 + / Yb 3 + @ NaYF4:Tm 3 + 对环己烷溶液的光热转化行为进行了研究。与NaYF4:Er 3 + / Yb 3 + 纳米粒子相比,sup> / Yb 3 + 核-壳纳米粒子表现出更有效的光热转化,通过使用核-壳纳米粒子,获得了约7 C的净温度增量。

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