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裸金纳米粒子和水中的热电子。

Naked Gold Nanoparticles and hot Electrons in Water.

机构信息

Laboratoire de Chimie Physique, CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91405, Orsay, France.

Department of Chemistry and Biochemistry, Mount Allison University, E4L1E4, NB, Canada.

出版信息

Sci Rep. 2018 May 8;8(1):7258. doi: 10.1038/s41598-018-25711-2.

Abstract

The ionizing radiation in aqueous solutions of gold nanoparticles, stabilized by electrostatic non-covalent intermolecular forces and steric interactions, with antimicrobial compounds, are investigated with picosecond pulse radiolysis techniques. Upon pulse radiolysis of an aqueous solution containing very low concentrations of gold nanoparticles with naked surfaces available in water (not obstructed by chemical bonds), a change to Cerenkov spectrum over a large range of wavelengths are observed and pre-solvated electrons are captured by gold nanoparticles exclusively (not by ionic liquid surfactants used to stabilize the nanoparticles). The solvated electrons are also found to decay rapidly compared with the decay kinetics in water. These very fast reactions with electrons in water could provide an enhanced oxidizing zone around gold nanoparticles and this could be the reason for radio sensitizing behavior of gold nanoparticles in radiation therapy.

摘要

采用皮秒脉冲辐解技术研究了由静电非共价分子间力和空间位阻相互作用稳定的金纳米粒子在含有抗菌化合物的水溶液中的离子辐射。当脉冲辐解含有非常低浓度的金纳米粒子的水溶液时,这些金纳米粒子的表面是裸露的,可以在水中(没有被化学键阻挡)进行,观察到在很大波长范围内的切伦科夫光谱的变化,并且预溶剂化电子被金纳米粒子(而不是用于稳定纳米粒子的离子液体表面活性剂)专门捕获。还发现溶剂化电子的衰减速度比在水中的衰减动力学快得多。这些与水中电子的非常快速反应可以在金纳米粒子周围提供一个增强的氧化区,这可能是金纳米粒子在放射治疗中具有放射增敏作用的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6095/5940662/fd03e59c50d5/41598_2018_25711_Fig1_HTML.jpg

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