化学
碘
沸石
放射化学
放射性碘
碘化银
丝光沸石
纳米颗粒
银纳米粒子
碘化物
无机化学
纳米技术
有机化学
催化作用
图层(电子)
卤化银
材料科学
甲状腺
内科学
医学
作者
Karena W. Chapman,Peter J. Chupas,Tina M. Nenoff
摘要
The effective capture and storage of radiological iodine (129I) remains a strong concern for safe nuclear waste storage and safe nuclear energy. Silver-containing mordenite (MOR) is a longstanding benchmark for iodine capture; however, the molecular level understanding of this process needed to develop more effective iodine getters has remained elusive. Here we probe the structure and distribution of iodine sorbed by silver-containing MOR using differential pair distribution function analysis. While iodine is distributed between γ-AgI nanoparticles on the zeolite surface and subnanometer α-AgI clusters within the pores for reduced silver MOR, in the case of unreduced silver-exchanged MOR, iodine is exclusively confined to the pores as subnanometer α-AgI. Consequently, unreduced silver-containing zeolites may offer a more secure route for radioactive iodine capture, with the potential to more effectively trap the iodine for long-term storage.
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