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基于第一性原理计算的水辐射分解产生水合电子的初始产率。

Initial yield of hydrated electron production from water radiolysis based on first-principles calculation.

作者信息

Kai Takeshi, Toigawa Tomohiro, Matsuya Yusuke, Hirata Yuho, Tezuka Tomoya, Tsuchida Hidetsugu, Yokoya Akinari

机构信息

Nuclear Science and Engineering Center, Japan Atomic Energy Agency 2-4 Shirane Shirakata, Tokai-mura, Naka-gun Ibaraki 319-1195 Japan.

Faculty of Health Sciences, Hokkaido University Kita-12 Nishi-5, Kita-ku Sapporo Hokkaido 060-0812 Japan.

出版信息

RSC Adv. 2023 Mar 1;13(11):7076-7086. doi: 10.1039/d2ra07274b.

Abstract

Many scientific insights into water radiolysis have been applied for developing life science, including radiation-induced phenomena, such as DNA damage and mutation induction or carcinogenesis. However, the generation mechanism of free radicals due to radiolysis remains to be fully understood. Consequently, we have encountered a crucial problem in that the initial yields connecting radiation physics to chemistry must be parameterized. We have been challenged in the development of a simulation tool that can unravel the initial free radical yields, from physical interaction by radiation. The presented code enables the first-principles calculation of low energy secondary electrons resulting from the ionization, in which the secondary electron dynamics are simulated while considering dominant collision and polarization effects in water. In this study, using this code, we predicted the yield ratio between ionization and electronic excitation from a delocalization distribution of secondary electrons. The simulation result presented a theoretical initial yield of hydrated electrons. In radiation physics, the initial yield predicted from parameter analysis of radiolysis experiments in radiation chemistry was successfully reproduced. Our simulation code helps realize a reasonable spatiotemporal connection from radiation physics to chemistry, which would contribute to providing new scientific insights for precise understanding of underlying mechanisms of DNA damage induction.

摘要

许多关于水辐射分解的科学见解已被应用于生命科学的发展,包括辐射诱导的现象,如DNA损伤、突变诱导或致癌作用。然而,辐射分解产生自由基的机制仍有待充分理解。因此,我们遇到了一个关键问题,即必须对连接辐射物理学和化学的初始产率进行参数化。我们在开发一种能够揭示辐射物理相互作用产生的初始自由基产率的模拟工具方面面临挑战。所提出的代码能够对电离产生的低能二次电子进行第一性原理计算,其中在考虑水中主要碰撞和极化效应的同时模拟二次电子动力学。在本研究中,使用该代码,我们从二次电子的离域分布预测了电离与电子激发之间的产率比。模拟结果给出了水合电子的理论初始产率。在辐射物理学中,成功再现了从辐射化学中辐射分解实验的参数分析预测的初始产率。我们的模拟代码有助于实现从辐射物理学到化学的合理时空连接,这将有助于为精确理解DNA损伤诱导的潜在机制提供新的科学见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffcb/9977407/f04d4086c3fa/d2ra07274b-f1.jpg

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