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α-Fe_2O_3@dopamine core-shell nanocomposites and their highly enhanced photoacoustic performance

机译:α-Fe_2O_3@ dopamine核壳纳米复合材料及其光声性能大大增强

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摘要

In this work, multifunctional alpha-Fe2O3@dopamine core-shell nanocomposites consisting of alpha-Fe2O3 core surrounded by a thin dopamine (DA) shell have been successfully fabricated. The crystal structure, surface morphology and optical properties of the samples were determined by XRD, SEM, TEM and UV-vis, respectively, indicating that the presence of thin DA shell could affect the optical properties of Fe2O3 nanostructures. When it was incubated with NIH3T3 cells and injected in living body, the concave shape Fe2O3@dopamine nanocomposites exhibited the highest cell viability (94.6% within 16 h), and harmless to the living body. Moreover, the concave shape Fe2O3@dopamine nanocomposites also displayed the highest image contrast and distinguishability (3.74 times of control group, and 1.5 times of purchased Au nanoparticles). Thus, alpha-Fe2O3@dopamine core-shell structures are promising candidates for precise photoacoustic imaging and therapeutic process.
机译:在这项工作中,已经成功制造了由被薄多巴胺(DA)壳包围的α-Fe2O3核组成的多功能α-Fe2O3@多巴胺核-壳纳米复合材料。分别通过XRD,SEM,TEM和UV-vis测定了样品的晶体结构,表面形貌和光学性质,表明存在薄的DA壳会影响Fe2O3纳米结构的光学性质。将其与NIH3T3细胞一起孵育并注入活体内后,凹形的Fe2O3 @ dopamine纳米复合材料表现出最高的细胞活力(16 h内为94.6%),并且对活体无害。而且,凹形的Fe2O3 @多巴胺纳米复合材料还显示出最高的图像对比度和可分辨性(对照组的3.74倍,购买的Au纳米颗粒的1.5倍)。因此,α-Fe2O3@多巴胺核壳结构是用于精确的光声成像和治疗过程的有希望的候选者。

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