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首页> 外文期刊>Bulletin of materials science >Deterioration of hydrogen-bonded superprotonic conductors belonging to CsHSO$_4$–CsH$_2$PO$_4$–H$_2$O salt system: a single-crystal neutron diffraction investigation
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Deterioration of hydrogen-bonded superprotonic conductors belonging to CsHSO$_4$–CsH$_2$PO$_4$–H$_2$O salt system: a single-crystal neutron diffraction investigation

机译:属于CSHSO $ _4 $ -CSH $ _2 $ PO $ _4 $ -h $ _2 $ O盐系统:单晶中子衍射调查

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Single-crystal neutron diffraction investigation on Cs$_4$(HSO$_4$)$_3$(H$_2$PO$_4$) and Cs$_6$H(HSO$_4$)$_3$(H$_2$PO$_4$)$_4$ superprotonic crystals, belonging to CsHSO$_4$–CsH$_2$PO$_4$–H$_2$O salt system, is under taken to elucidate the precise hydrogen atom positions in these crystals. The investigation revealed that these crystals are very sensitive to the ambient conditions and can undergo deterioration due to fluctuation in air moisture content. Cs$_6$H(HSO$_4$)$_3$(H$_2$PO$_4$)$_4$ crystals are more stable as compared to Cs$_4$(HSO$_4$)$_3$(H$_2$PO$_4$). Crystal structure of Cs$_6$H(HSO$_4$)$_3$(H$_2$PO$_4$)$_4$ is obtained both before and after deterioration,it is found that the asymmetric O–HO hydrogen bond between the PO$_4$ and SO$_4$ ions of this crystal becomes stronger after deterioration. This led to the shrinkage of the unit cell, and most likely prevented further deterioration. Diabatic state model for hydrogen bonds is used to obtain the energy contour for the O–H$ldots$O hydrogen bond of Cs$_6$H(HSO$_4$)$_3$(H$_2$PO$_4$)$_4$ crystal. The influence of this change in the hydrogen bonding on the proton conduction ability ofthe crystal is discussed.
机译:单晶中子衍射调查CS $ _4 $(HSO $ _4 $)$ _ 3 $(h $ _2 $ po $ _4 $)和cs $ _6 $ h(hso $ _4 $)$ _ 3 $(h $ _2 $ PO $ _4 $)$ _ 4 $ SUPERPORONICLALLS,属于CSHSO $ _4 $ -CSH $ _2 $ PO $ _4 $ -h $ _2 $ O盐系统,以阐明这些晶体中的精确氢原子位置。调查显示,这些晶体对环境条件非常敏感,并且可以由于空气含量波动而导致劣化。 CS $ _6 $ H(HSO $ _4 $)$ _ 3 $(h $ _2 $ po $)$ _ 4 $晶体与cs $ _4 $相比更稳定(hso $ _4 $)$ _ 3 $(h $ _2 $ PO $ _4 $)。 CS $ _6 $ H(HSO $ _4 $)的晶体结构$ _ 3 $(H $ _2 $ PO $ _4 $)$ _ 4 $在恶化之前和之后获得,发现不对称O-HO氢键之间PO $ _4 $等$ _4 $ 2晶体在恶化后变得更强劲。这导致了单位细胞的收缩,并且最有可能预防进一步恶化。用于氢键的酸性状态模型用于获得o-h $ ldots $ o氢键的能量轮廓为cs $ _6 $ h(hso $ _4 $)$ _ 3 $(h $ _2 $ po $ _4 $) $ _4 $ crystal。讨论了氢键对晶体质子传导能力的影响。

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