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Temperature-controlled synthesis of hollow, porous gold nanoparticles with wide range light absorption

机译:中空,多孔金纳米颗粒的温度控制合成,具有宽范围光吸收

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摘要

An easy synthesis method of hollow, porous gold nanoparticles (AuHP NPs) with controlled diameter and pores sizes and with a wide range of light absorbance (continuous between 500 and 900 nm) is presented together with the explanation of the nanoparticle formation mechanism. The NPs were investigated using transmission electron microscopy (TEM) combined with the selected area electron diffraction patterns, X-ray diffraction and ultraviolet-visible spectroscopy. TEM images showed that changing the synthesis temperature allows to obtain AuHP NPs with sizes from 35 +/- 4 nm at 60 degrees C to 76 +/- 8 nm at 90 degrees C. The effects of nanoscale porosity on the far- and near-field optical properties of the nanoparticles, as well as on effective conversion of electromagnetic energy into thermal energy, were applied in simulated photothermal cancer therapy. The latter one was simulated by irradiation of two cancer cell lines SW480 and SW620 with lasers operating at 650 nm and 808 nm wavelengths. The mortality of cells after using the synthesized AuHP NPs as photosensitizers is between 20 and 50% and increases with the decrease in the diameter of the AuHP NPs. All these attractive properties of the AuHP NPs make them find application in many biomedical studies.
机译:纳米颗粒形成机制的说明,将具有受控直径和孔尺寸(连续的光吸收(连续的光吸收(连续的光吸收(连续的光吸收(连续的光吸收)容易合成。使用透射电子显微镜(TEM)来研究NPS与所选区域电子衍射图,X射线衍射和紫外 - 可见光谱合并。 TEM图像显示改变合成温度允许在90摄氏度下以60℃至76 +/- 8nm的35 +/- 4nm的尺寸获得AuHP NPS。纳米级孔隙率在远近和附近的影响纳米颗粒的场光学性质以及在模拟的光热癌疗法中应用了热能的有效转化为热能。通过用在650nm和808nm波长下操作的激光器照射两种癌细胞系SW480和SW620,模拟后一种。使用合成的AUHP NP作为光敏剂后细胞的死亡率在20至50%之间,随着AuHP NPS直径的降低而增加。所有这些有吸引力的AUHP NPS的性质使它们在许多生物医学研究中找到了应用。

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  • 来源
    《Journal of Materials Science》 |2020年第12期|共11页
  • 作者单位

    Polish Acad Sci Inst Nucl Phys PL-31342 Krakow Poland;

    Jagiellonian Univ Med Coll Inst Pediat Dept Clin Immunol PL-30663 Krakow Poland;

    Polish Acad Sci Inst Nucl Phys PL-31342 Krakow Poland;

    Jagiellonian Univ Med Coll Inst Pediat Dept Clin Immunol PL-30663 Krakow Poland;

    Polish Acad Sci Inst Nucl Phys PL-31342 Krakow Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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