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首页> 外文期刊>Journal of spectroscopy >Chitosan-Capped Au Nanoparticles for Laser Photothermal Ablation Therapy: UV-Vis Characterization and Optothermal Performances
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Chitosan-Capped Au Nanoparticles for Laser Photothermal Ablation Therapy: UV-Vis Characterization and Optothermal Performances

机译:壳聚糖包覆的金纳米粒子用于激光光热消融治疗:紫外可见光表征和光热性能。

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摘要

We have reported on the synthesis and characterization of near-infrared- (NIR-) absorbing colloidal nanoparticles prepared by exploiting the one-step reaction of HAuCl4 and Na2S2O3, followed by their stabilization with chitosan. This reaction also produces a big amount of unwanted nanoparticles detuned with respect to the NIR spectral region. For this reason, it is usually assumed that the product has to be filtered and enriched to enhance its NIR absorption, and the possible exploitation of the simpler raw product has never been worthy to be considered. Aiming to investigate this missing aspect, we chose to avoid the purification steps and rather focused on the preparation of the unrefined colloid, identifying the synthesis conditions that maximize its NIR absorbance and, subsequently, testing it as an optothermal transducer by measuring its molar heating rate (MHR). As expected, we found that the performances of the raw colloid are indeed lower than those of its refined version, but only to a limited extent. Moreover, MHR is unexpectedly higher than that deducible for other classical NIR-absorbing nanoparticles, like Au nanorods or Au nanostars. Thus, the product of the simpler preparation protocol appears as a competitive trade-off solution between easy manufacturing and optothermal performances.
机译:我们已经报道了利用HAuCl4和Na2S2O3的一步反应,然后用壳聚糖稳定化制备的近红外(NIR-)吸收胶体纳米颗粒的合成和表征。该反应还产生相对于NIR光谱区域失谐的大量不需要的纳米颗粒。因此,通常认为必须对产物进行过滤和浓缩以提高其近红外吸收率,而从未考虑过使用较简单的粗产物的可能性。为了研究这一遗漏的方面,我们选择避免​​纯化步骤,而是专注于未精制胶体的制备,确定可最大化其近红外吸收率的合成条件,随后通过测量其摩尔加热速率将其作为光热传感器进行测试(MHR)。不出所料,我们发现原始胶体的性能确实低于其精制胶体的性能,但仅在一定程度上。此外,MHR意外地高于其他经典的近红外吸收纳米粒子(如Au纳米棒或Au纳米星)的推导值。因此,较简单的制备方案的产品似乎是易于制造和光热性能之间的竞争性折衷解决方案。

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