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首页> 外文期刊>ACS nano >Hydrothermal Galvanic-Replacement-Tethered Synthesis of Ir-Ag-IrO2 Nanoplates for Computed Tomography-Guided Multiwavelength Potent Thermodynamic Cancer Therapy
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Hydrothermal Galvanic-Replacement-Tethered Synthesis of Ir-Ag-IrO2 Nanoplates for Computed Tomography-Guided Multiwavelength Potent Thermodynamic Cancer Therapy

机译:用于计算断层扫描导向多波长有效热力癌症治疗的IR-Ag-IRO2纳米层的水热量电催化合成

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摘要

Beyond the synthesis of typical nanocrystals, various breakthrough approaches have been developed to provide more useful structural features and functionalities. Among them, galvanic replacement, a structural transformation reaction accompanied by constituent element substitution, has been applied to various areas. However, the innovative improvement for galvanic replacement needs to be considered because of the limitation of applicable element pairs to maintain structural stability. To expand the boundary of galvanic-replacement-mediated synthesis, we have become interested in the Group 9 metallic element Ir, which is considered a fascinating element in the field of catalysis, but whose size and shape regulation has been conventionally regarded as difficult. To overcome the current limitations, we developed a hydrothermal galvanic-replacement-tethered synthetic route to prepare Ir-Ag-IrO2 nanoplates (IrNPs) with a transverse length of tens of nanometers and a rough surface morphology. A very interesting photoreactivity was observed from the prepared IrNPs, with Ag and IrO2 coexisting partially, which showed photothermal conversion and photocatalytic activity at different ratios against extinction wavelengths of 473, 660, and 808 nm. The present IrNP platform showed excellent photothermal conversion efficiency under near-infrared laser irradiation at 808 nm and also represented an effective cancer treatment in vitro and in vivo through a synergistic effect with reactive oxygen species (ROS) generation. In addition, computed tomography (CT) imaging contrast effects from Ir and IrO2 composition were also clearly observed.
机译:除了典型纳米晶体的合成之外,已经开发出各种突破性方法来提供更有用的结构特征和功能。其中,电流替代品,伴有组成元素替代的结构转化反应,已应用于各种区域。然而,由于适用元对来维持结构稳定性,因此需要考虑对电流更换的创新改善。为了扩大电置置换介导的合成的边界,我们对第9组金属元素IR感兴趣,这被认为是催化领域的迷人元素,但其大小和形状调节通常被认为是困难的。为了克服目前的限制,我们开发了一种加热电流替代系列合成途径,用于制备IR-Ag-IrO2纳米板(Irnps),其横向长度为数十纳米和粗糙的表面形态。从制备的IrNPS中观察到非常有趣的光反应性,其中Ag和IrO2部分共存,其在不同比例下显示出光热转化和光催化活性,以消除473,660和808nm的消光波长。本发明的IRNP平台在808nm下近红外激光照射下显示出优异的光热转换效率,并且还通过与活性氧(ROS)产生的协同效应在体外和体内具有有效的癌症治疗。此外,还清楚地观察到来自IR和IRO2组合物的计算断层扫描(CT)成像对比度效果。

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