Karelin Alexander I, Leonova Lyudmila S, Tkacheva Nelly S, Nadkhina Svetlana E, Dobrovolsky Yury A
Institute for Problems of Chemical Physics, Russian Academy of Sciences, 142432, 1 Semеnov Avenue, Chernogolovka, Moscow Region, Russian Federation.
Heliyon. 2022 Nov 7;8(11):e11450. doi: 10.1016/j.heliyon.2022.e11450. eCollection 2022 Nov.
The β-stannic acid powders(I) containing various amounts of perchloric acid with an initial concentration of 56.2 wt% HClO were studied by IR and Raman spectroscopy combined with XRD analysis and impedance spectroscopy. The addition of aqueous perchloric acid to I at room temperature leads to the adsorption compound formation. The degree of ionization of HClO is 100%. Based on these studies, a structural model has been proposed, according to which the hydrated H and ClO ions fill the pores/capillaries of I. The structure of I does not change during the adsorption process of ions. The finely dispersed powder of I turns into a viscous transparent gel with an optimal ratio of reagents, which indicates its plasticization. The electrochemical properties of the plasticized samples were investigated by impedance method. It was found that plasticization can increase the proton conductivity by more than two orders of magnitude. The plasticized samples have sensory properties. The plot of conductivity versus weight fractions of perchloric acid solution reveals a linear dependence at RH = 32% and t = 25 °C in a wide range of values. The maximum value of = 0.43 S cm is achieved at = 0.61. The straight line has a break at the very beginning due to the perchloric acid flow threshold.
采用红外光谱、拉曼光谱结合X射线衍射分析和阻抗谱研究了初始浓度为56.2 wt% HClO₄的含不同量高氯酸的β - 锡酸粉末(I)。室温下向I中加入高氯酸水溶液会导致吸附化合物的形成。HClO₄的电离度为100%。基于这些研究,提出了一种结构模型,根据该模型,水合H⁺和ClO₄⁻离子填充了I的孔隙/毛细管。在离子吸附过程中I的结构不变。I的细分散粉末在试剂比例最佳时会变成粘性透明凝胶,这表明其发生了增塑。通过阻抗法研究了增塑样品的电化学性能。发现增塑可使质子电导率提高两个多数量级。增塑样品具有传感特性。在RH = 32%和t = 25 °C的条件下,电导率σ与高氯酸溶液重量分数w的关系图在较宽的w值范围内呈现线性关系。在w = 0.61时,σ达到最大值0.43 S cm⁻¹。由于高氯酸流动阈值,直线在最开始处有一个转折点。