首页> 外文期刊>Solid state ionics >MIXED ANION EFFECT OF SILVER ION CONDUCTING GLASSES IN THE SYSTEMS AGI-AG2MOO4-AG3PO4 AND AGI-AG2MOO4-AG2PO3.5 AND STRUCTURAL STUDY BY P-31 MAS-NMR
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MIXED ANION EFFECT OF SILVER ION CONDUCTING GLASSES IN THE SYSTEMS AGI-AG2MOO4-AG3PO4 AND AGI-AG2MOO4-AG2PO3.5 AND STRUCTURAL STUDY BY P-31 MAS-NMR

机译:银离子传导玻璃在AGI-AG2MOO4-AG3PO4和AGI-AG2MOO4-AG2PO3.5系统中的混合阴离子效应及P-31 MAS-NMR的结构研究

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Glasses of various compositions were prepared in the systems AgI-Ag2MoO4-Ag3PO4 and AgI-Ag2MoO4-Ag2PO3.5; their silver ion conductivities were measured and the structures of constituent oxoanions were investigated by P-31 MAS-NMR. In the AgI-Ag2MoO4-Ag3PO4 glasses with a constant AgI content, the conductivities linearly changed with the composition parameter y = [P]/([P] + [Mol]), which denotes the ratio of the number of phosphorus atoms to the total number of phosphorus and molybdenum atoms in the glasses. It was found from P-31 MAS-NMR spectra that the framework structure of the oxoanions: MoO42- and and PO43- did not change by mixing two kinds of oxosalts Ag2MoO4 and Ag3PO4. On the other hand, in the system AgI-Ag2MoO4-Ag2PO3.5 a distinct enhancement of conductivity was observed by mixing two kinds of oxosalts, Ag2MoO4 and Ag2PO3.5, at around the composition parameter y = 0.6-0.8 for the glasses with a constant AgI content. P-31 MAS-NMR spectra revealed that the framework structure of the oxoanions was changed by mixing two kinds of oxosalts Ag2MoO4 and Ag2PO3.5. The amount of Q(1-Mo) unit, which was a terminal unit with one bridging oxygen combined with a Mo atom, showed a maximum at around y = 0.6-0.8. These results suggest that the conductivity enhancement by mixing two kinds of oxosalts is related to the structural change of oxoanions forming framework structure of the glasses and that the appearance of the structural unit Q(1-Mo) is closely related to the conductivity enhancement in the glasses. [References: 13]
机译:在AgI-Ag2MoO4-Ag3PO4和AgI-Ag2MoO4-Ag2PO3.5系统中制备了各种组成的玻璃。通过P-31 MAS-NMR测定了它们的银离子电导率,并研究了含氧阴离子的结构。在具有恒定AgI含量的AgI-Ag2MoO4-Ag3PO4玻璃中,电导率随组成参数y = [P] /([P] + [Mol])线性变化,y表示磷原子数与磷原子数之比。玻璃中磷和钼原子的总数。从P-31 MAS-NMR光谱发现,通过混合两种含氧盐Ag2MoO4和Ag3PO4,含氧阴离子的骨架结构:MoO42-和PO43-没有变化。另一方面,在系统AgI-Ag2MoO4-Ag2PO3.5中,通过混合两种含氧盐Ag2MoO4和Ag2PO3.5观察到了电导率的明显提高,对于含A的玻璃,其组成参数y = 0.6-0.8左右。恒定的AgI含量。 P-31 MAS-NMR光谱表明,通过混合两种含氧盐Ag2MoO4和Ag2PO3.5改变了含氧阴离子的骨架结构。 Q(1-Mo)单元的量是具有一个桥接氧与Mo原子结合的末端单元,其在y = 0.6-0.8附近显示最大值。这些结果表明,混合两种含草酸盐的电导率提高与形成玻璃骨架结构的含氧阴离子的结构变化有关,并且结构单元Q(1-Mo)的出现与玻璃中的电导率提高密切相关。眼镜。 [参考:13]

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