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Shape-Controlled Synthesis of Au Nanostructures Using EDTA Tetrasodium Salt and Their Photothermal Therapy Applications

机译:EDTA四钠盐的形状控制合成Au纳米结构及其光热治疗应用

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摘要

Tuning the optical properties of Au nanostructures is of paramount importance for scientific interest and has a wide variety of applications. Since the surface plasmon resonance properties of Au nanostructures can be readily adjusted by changing their shape, many approaches for preparing Au nanostructures with various shapes have been reported to date. However, complicated steps or the addition of several reagents would be required to achieve shape control of Au nanostructures. The present work describes a facile and effective shape-controlled synthesis of Au nanostructures and their photothermal therapy applications. The preparation procedure involved the reaction of HAuCl4 and ethylenediaminetetraacetic acid (EDTA) tetrasodium salt, which acted as a reducing agent and ligand, at room temperature without the need for any toxic reagent or additives. The morphology control from spheres to branched forms and nanowire networks was easily achieved by varying the EDTA concentration. Detailed investigations revealed that the four carboxylic groups of the EDTA tetrasodium salt are essential for effective growth and stabilization. The produced Au nanowire networks exhibited a broad absorption band in the near-infrared (NIR) region, thereby showing efficient cancer therapeutic performance by inducing the selective photothermal destruction of cancerous glioblastoma cells (U87MG) under NIR irradiation.
机译:调整Au纳米结构的光学性质对于科学兴趣至关重要,具有广泛的应用。由于可以通过改变其形状容易地调节Au纳米结构的表面等离子体共振特性,所以迄今为止已经报道了许多制备具有各种形状的Au纳米结构的方法。然而,将需要复杂的步骤或添加几种试剂来实现对金纳米结构的形状控制。本工作描述了一种简便有效的金纳米结构的形状控制合成及其光热疗法的应用。制备过程涉及HAuCl4与乙二胺四乙酸(EDTA)四钠盐在室温下的反应,该四钠盐充当还原剂和配体,不需要任何有毒的试剂或添加剂。通过改变EDTA浓度,可以轻松实现从球形到分支形式以及纳米线网络的形态控制。详细的研究表明,EDTA四钠盐的四个羧基对于有效生长和稳定至关重要。产生的Au纳米线网络在近红外(NIR)区域显示出较宽的吸收带,从而通过在NIR照射下诱导对胶质母细胞瘤细胞(U87MG)的选择性光热破坏而显示出有效的癌症治疗性能。

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