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可重复使用的放射性 hackmanite,具有伽马辐射暴露记忆功能。

Reusable radiochromic hackmanite with gamma exposure memory.

机构信息

Department of Chemistry, University of Turku, FI-20014 Turku, Finland.

University of Turku Graduate School (UTUGS), Doctoral Programme in Physical and Chemical Sciences (PCS), FI-20014 Turku, Finland.

出版信息

Mater Horiz. 2022 Oct 31;9(11):2773-2784. doi: 10.1039/d2mh00593j.

Abstract

Radiochromic films are used as position-sensitive dose meters in medical physics and radiation processing. The currently available films like those based on lithium-10,12-pentacosdiynoate or leucomalachite green are either toxic or non-reusable, or both. There is thus a great need for a sustainable solution for radiochromic detection. In the present work, we present a suitable candidate: hackmanite with the general formula NaAlSiO(Cl,S). This material is known as a natural intelligent material capable of changing color when exposed to ultraviolet radiation or X-rays. Here, we show for the first time that hackmanites are also radiochromic when exposed to alpha particles, beta particles (positrons) or gamma radiation. Combining experimental and computational data we elucidate the mechanism of gamma-induced radiochromism in hackmanites. We show that hackmanites can be used for gamma dose mapping in high dose applications as well as a memory material that has the one-of-a-kind ability to remember earlier gamma exposure. In addition to satisfying the requirements of sustainability, hackmanites are non-toxic and the films made of hackmanite are reusable thus showing great potential to replace the currently available radiochromic films.

摘要

放射色迹胶片被用作医学物理学和辐射加工中的位置敏感剂量计。目前可用的胶片,如基于 10,12-戊二炔酸锂或隐色孔雀绿的胶片,要么有毒,要么不可重复使用,或者两者兼而有之。因此,非常需要一种可持续的放射色迹检测解决方案。在本工作中,我们提出了一个合适的候选物:卤斑铜矿,其通式为 NaAlSiO(Cl,S)。这种材料是一种天然的智能材料,当暴露于紫外辐射或 X 射线时,其颜色会发生变化。在这里,我们首次表明,卤斑铜矿在暴露于α粒子、β粒子(正电子)或γ辐射时也是放射色迹的。通过实验和计算数据的结合,我们阐明了卤斑铜矿中γ诱导放射色迹的机制。我们表明,卤斑铜矿可用于高剂量应用中的γ剂量测绘,以及作为一种记忆材料,具有独一无二的能力,可以记住早期的γ暴露。除了满足可持续性的要求外,卤斑铜矿无毒,由卤斑铜矿制成的胶片可重复使用,因此具有取代目前可用的放射色迹胶片的巨大潜力。

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