首页> 外文期刊>Journal of Molecular Structure >Crystal structure, phase transition, electrical and optical properties of p-hydroxypyridinium iodate [C5H6NO (IO3)](2)
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Crystal structure, phase transition, electrical and optical properties of p-hydroxypyridinium iodate [C5H6NO (IO3)](2)

机译:对羟基吡啶碘酸碘酸碘岩的晶体结构,相转移,电气和光学性质[C5H6NO(IO3)](2)

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摘要

The structural investigation of a new hybrid iodate compound [C5H6NO (IO3)](2) denoted as HPI was performed using single crystal and powder X-ray diffraction. The synthesized compound was also characterized using DSC, FT-IR, C-13 Mass/NMR, diffuse reflectance (DRS), fluorescence and complex impedance spectroscopy (CIS). The new hybrid iodate salt crystallizes in the monoclinic system and in the acentric space group "Pn". DSC and VT-XRPD measurements revealed that HPI undergoes a first order phase transition at 383 K showing a discontinuous increase of the molar volume and entropy. The temperature variation of AC and bulk conductivity plots of HP1 showed two straight-line regions with a change in slope around 380 K corresponding to the structural phase transition. The bulk resistance, deduced from the thermal variation of Z' and Z '' in both phases is found to decrease with rise in temperature, suggesting a negative temperature coefficient of resistance (NTCR) behavior of this compound. The electrical sigma(tot) (omega, T) conductivity obeyed to the Jonscher's power law and the temperature dependence of the S (T) parameter showed that the electrical conductivity of the HPI compound may be treated using correlated barrier hopping (CBH) model. The hopping of the proton H+ as a charge carrier may take place through the N-H center dot center dot center dot O and O-H center dot center dot center dot O hydrogen bonds. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用单晶和粉末X射线衍射进行为HPI的新型杂交碘化合物[C5H6 NO(IO3)](2)的结构研究。合成化合物的特征在于使用DSC,FT-IR,C-13质量/ NMR,漫反射率(DRS),荧光和复杂阻抗光谱(CIS)。新的杂交碘盐在单斜晶体系中结晶,并在龈针中的“Pn”中结晶。 DSC和VT-XRPD测量显示,HPI在383K处经过一阶相转变,显示摩尔体积和熵的不连续增加。 HP1的AC和散装电导率图的温度变化显示了两个直线区域,其斜率的变化约为380 k,对应于结构相位转变。从两个相中Z'和Z''的热变化推导的散热性被发现随着温度升高而降低,表明该化合物的负抗性(NTCR)行为的负温度系数(NTCR)。遵守Jonscher的权力法的电动Σ(Tot)(Omega,T)电导率和S(t)参数的温度依赖性表明,可以使用相关的屏障跳跃(CBH)模型来处理HPI化合物的电导率。作为电荷载体的质子H +的跳跃可以通过N-H中心点中心点中心点O和O-H中心点中心点中心点O氢键来进行。 (c)2018年elestvier b.v.保留所有权利。

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