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Core@shell nanostructures for photothermal conversion: Tunable noble metal nanoshells on cross-linked polymer submicrospheres

机译:用于光热转化的核@壳纳米结构:交联聚合物亚微球上的可调节贵金属纳米壳

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摘要

Highly cross-linked and monodispersed poly(cyclotriphosphazene-co-4,4'-sulfonyldiphenol) (PZS) submicrospheres were synthesized by one-step polycondesation. The spheres are enriched in N, P, and S atoms, and phenolic hydroxyl groups, and exhibit good water dispersion. These properties facilitate initial growth of gold nanoseeds on the PZS surface and subsequent growth of gold nanoshells. This facile fabrication method can also be used for the preparation of silver and gold-silver bimetallic nanoshells with tunable thickness by varying the mass ratio of metal salt to PZS. The core@shell structures were investigated by transmission electron microscopy, energy-dispersive X-ray spectrometry, selected-area electron diffraction and X-ray diffraction analysis. PZS@gold nanoshells showed very strong surface plasmon resonance absorption in the near infrared region (700-1100 nm), where blood and biological tissues are nearly transparent. Furthermore, PZS@gold nanoshells effectively induced photothermal conversion under laser irradiation of 808 nm and rapidly killed tumor cells, suggesting potential application in photothermal imaging and therapies using NIR lasers.
机译:通过一步缩聚反应合成了高度交联和单分散的聚(环三磷腈-co-4,4'-磺酰基二酚)(PZS)亚微球。这些球富含N,P和S原子以及酚羟基,并具有良好的水分散性。这些特性有助于金纳米种子在PZS表面上的初始生长以及金纳米壳的后续生长。通过改变金属盐与PZS的质量比,这种简便的制造方法还可用于制备厚度可调的银和金银双金属纳米壳。通过透射电子显微镜,能量色散X射线光谱法,选择区域电子衍射和X射线衍射分析研究了核@壳结构。 PZS @金纳米壳在血液和生物组织几乎透明的近红外区域(700-1100 nm)显示出非常强的表面等离子体共振吸收。此外,PZS @ gold纳米壳在808 nm激光照射下有效诱导光热转化,并迅速杀死肿瘤细胞,表明其在使用NIR激光进行光热成像和治疗中的潜在应用。

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