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Superprotonic and ferroelastic phase transition in K3H(SO4)(2)

机译:K3H(SO4)(2)中的超质子和铁弹性相变

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Measurements of differential scanning calorimetry, complex dielectric constant, proton NMR and optical observations have been carried out for K3H(SO4)(2) above room temperature. It was found that K3H(SO4)(2) undergoes a phase transition at T-c = 478 K below the decomposition temperature of 535 K. The transition entropy is estimated to be 8.37 J/mol K, close to that at the superprotonic phase transition of M3H(SeO4)(2) crystals (M = K, Rb and Cs). Moreover, we have observed the step-wise increases of the electrical conductivity with the increase of temperature and good conductivity above T, Furthermore, above T, we have observed the motional narrowing of the H-1 NMR line caused by the mobile proton. In addition, we found from the optical observations that K3H(SO4)(2) undergoes the ferroelastic phase transition at T-c These results suggest that K3H(SO4)(2) exhibits the superprotonic conductivity above T-c and the ferroelasticity below T-c as in M3H(SeO4)(2) crystals. (C) 2004 Elsevier Ltd. All rights reserved. [References: 33]
机译:对于高于室温的K3H(SO4)(2),已进行了差示扫描量热法,复介电常数,质子NMR和光学观察的测量。发现K3H(SO4)(2)在低于535 K分解温度的Tc = 478 K处经历了相变。据估计,其转变熵为8.37 J / mol K,接近于超质子相变时的熵。 M3H(SeO4)(2)晶体(M = K,Rb和Cs)。此外,我们观察到电导率随着温度的升高逐步提高,并且在T之上具有良好的电导率。此外,在T之上,我们观察到了由移动质子引起的H-1 NMR谱线的运动变窄。此外,我们从光学观察结果中发现,K3H(SO4)(2)在Tc处经历了铁弹性相变。这些结果表明,K3H(SO4)(2)表现出高于Tc的超质子传导性,而低于Tc的铁质弹性像M3H( SeO4)(2)晶体。 (C)2004 Elsevier Ltd.保留所有权利。 [参考:33]

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