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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Electron Paramagnetic Resonance Spectroscopy Investigation of Radical Production by Gold Nanoparticles in Aqueous Solutions Under X-ray Irradiation
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Electron Paramagnetic Resonance Spectroscopy Investigation of Radical Production by Gold Nanoparticles in Aqueous Solutions Under X-ray Irradiation

机译:X射线辐照水溶液中金纳米粒子自由基产生的电子顺磁共振谱研究

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摘要

Nanomaterials can enhance the effect of X-rays, but the mechanisms of enhancement can be complicated. Electron paramagnetic resonance (EPR) was used here to shed light on enhancement mechanisms by detecting the originally proposed physical enhancement of the effect of Xrays by as-made large gold nanoparticles. Specifically spin trap reagent 5-tertbutoxycarbonyl-5-methyl-1-pyrroline-N-oxide (BMPO) was used to trap radicals produced in aqueous solutions under X-ray irradiation. Even though only BMPO hydroxyl adducts were detected at the time of EPR measurement, both hydroxyl and superoxide radicals were found to contribute to the enhancement. The measured total enhancement was 0.7-fold per weight percent (wp) of Au in water using unfiltered X-rays. The theoretically predicted physical enhancement is 0.49 fold per wp of gold in water. This information, together with scavenging experimental results and the fact that the G-values are close for both radicals, suggest that hydroxyl and superoxide radicals contributing almost equally to the total measured enhancement. Further, the enhancement was found to be linearly dependent on the amount of large gold nanoparticles in water and no additional radical was produced beyond the amount predicted by type 1 physical enhancement, indicating that hydroxyl or superoxide radicals were not produced via catalytic pathways.
机译:纳米材料可以增强X射线的效果,但是增强机理可能很复杂。在这里,电子顺磁共振(EPR)用于通过检测原先提出的对形成的大金纳米粒子的X射线效果的物理增强来阐明增强机理。具体地,使用自旋捕获剂5-叔丁氧基羰基-5-甲基-1-吡咯啉-N-氧化物(BMPO)来捕获在X射线照射下在水溶液中产生的自由基。即使在进行EPR测量时仅检测到BMPO羟基加合物,也发现羟基和超氧自由基都有助于增强。使用未过滤的X射线,测得的总增强量为水中Au的重量百分比(wp)的0.7倍。理论上预测的物理增强是水中每wp金的0.49倍。该信息以及实验结果的清除以及两个自由基的G值均接近这一事实表明,羟基和超氧化物自由基几乎对总测得的增强贡献相同。此外,发现该增强与水中大金纳米颗粒的量线性相关,并且没有产生超过1型物理增强所预测的量的额外自由基,这表明未通过催化途径产生羟基或超氧化物自由基。

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