Qi Mingying, Wu Guozhong, Chen Shimou, Liu Yaodong
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
Radiat Res. 2007 May;167(5):508-14. doi: 10.1667/RR0727.1.
The applications of room-temperature ionic liquids in the nuclear fuel cycle and radiation chemistry depend on a comprehensive knowledge of their stability and chemical properties under radiation conditions. In this work, the effect of gamma radiation on pure ionic liquid [bmim][PF6] was investigated in detail. The radiolysis of [bmim][PF6] leads to an increase of UV-vis absorbance and a decrease of fluorescence intensity with increasing radiation dose. Raman spectra proved that gamma radiation induced significant chemical scission of the n-butyl group (e.g. C-H and C-C scission) and damage to the [PF6]- anion. When the irradiated [bmim][PF6] samples were cooled, two crystal structures were found to coexist, and they suffered a continuous destruction under irradiation; their dose dependence, however, was different.
室温离子液体在核燃料循环和辐射化学中的应用取决于对其在辐射条件下的稳定性和化学性质的全面了解。在这项工作中,详细研究了γ辐射对纯离子液体[bmim][PF6]的影响。随着辐射剂量的增加,[bmim][PF6]的辐射分解导致紫外可见吸光度增加和荧光强度降低。拉曼光谱证明,γ辐射导致丁基发生显著的化学断裂(如C-H和C-C断裂)以及对[PF6]-阴离子的破坏。当辐照后的[bmim][PF6]样品冷却时,发现两种晶体结构共存,并且它们在辐照下持续遭到破坏;然而,它们的剂量依赖性有所不同。