Bafti Arijeta, Kubuki Shiro, Ertap Hüseyin, Yüksek Mustafa, Karabulut Mevlüt, Moguš-Milanković Andrea, Pavić Luka
Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev Trg 19, 10000 Zagreb, Croatia.
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University, 1-1, Minami-Osawa, Tokyo 192-0397, Japan.
Nanomaterials (Basel). 2022 Feb 14;12(4):639. doi: 10.3390/nano12040639.
In this work, we report the effect of the addition of modifiers and network formers on the polaronic transport in iron phosphate glasses (IPG) in two systems of HfO-BO-FeO-PO, to which up to 8 mol% boron and hafnium are added. The addition of oxides significantly changes the Fe/Fe ratio, thus directly affecting the polaron number density and consequently controlling DC conductivity trends for both series studied by impedance spectroscopy. Moreover, we found that short-range polaron dynamics are also under the influence of structural changes. Therefore, we have studied them in detail using model-free scaling procedures, Summerfield and Sidebottom scaling. An attempt to construct a super-master curve revealed that in addition to change in polaron number density, also the polaron hopping lengths change, and Sidebottom scaling yields a super-master curve. The spatial extent of the localized motion of polarons is correlated with polaron number density and two distinct regions are observed. A strong increase in the spatial extent of the polaron hopping jump could be related either to the structural changes due to the addition of HfO and BO and their effects on the formation of polarons or to an inherent property of polaron transport in IP glasses with low polaron number density.
在本工作中,我们报道了在HfO-BO-FeO-PO两个体系的磷酸铁玻璃(IPG)中添加改性剂和网络形成体对极化子输运的影响,其中添加了高达8 mol%的硼和铪。氧化物的添加显著改变了Fe/Fe比,从而直接影响极化子数密度,并因此控制了通过阻抗谱研究的两个系列的直流电导率趋势。此外,我们发现短程极化子动力学也受到结构变化的影响。因此,我们使用无模型标度程序、萨默菲尔德和赛德博特标度对它们进行了详细研究。构建超主曲线的尝试表明,除了极化子数密度的变化外,极化子跳跃长度也发生了变化,并且赛德博特标度产生了一条超主曲线。极化子局域运动的空间范围与极化子数密度相关,并且观察到两个不同的区域。极化子跳跃跃迁空间范围的强烈增加可能与由于添加HfO和BO引起的结构变化及其对极化子形成的影响有关,或者与低极化子数密度的IP玻璃中极化子输运的固有性质有关。