首页> 外文期刊>The Journal of Chemical Physics >Anomalous low frequency dispersion and dielectric relaxation in the layered intercalated compounds Cd(0.75)PS(3)A(0.5)(H2O) [A = K, Cs]
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Anomalous low frequency dispersion and dielectric relaxation in the layered intercalated compounds Cd(0.75)PS(3)A(0.5)(H2O) [A = K, Cs]

机译:层状插层化合物Cd(0.75)PS(3)A(0.5)(H2O)中的异常低频分散和介电弛豫[A = K,Cs]

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The dielectric response in the layered Cd(0.75)PS(3)A(0.5)(H2O) [A=K, Cs] in which hydrated alkali cations reside in the interlamellar space, have been investigated as a function of frequency and temperature. In these materials the layers art electrically insulating, the alkali ions immobile and the electrical response due to the intercalated water molecules. The dielectric behavior shows two phenomena, an anomalous dispersion of the complex dielectric susceptibility at low frequencies and a dielectric relaxation at higher frequencies. At low frequencies the complex dielectric permittivity of both compounds show a power law dispersion with a transition to a smaller exponent above a crossover frequency, omega(c),. It was found that although omega(c), shifts to higher frequency with increasing temperature the magnitude of the complex permittivity at the crossover frequency showed no variation. The loss peak showed a similar shift to higher frequencies with temperature. The dielectric relaxation showed increasing departure from an ideal Debye response with temperature. The results have bean rationalized by considering the intercalated water molecules as forming a H-bonded network structure. The dielectric behavior is described in the context of a percolation structure for this network. The anomalous low frequency dispersion arises due to imperfect transport on this structure and the dielectric loss due to the fact that the water molecules possess a permanent dipole moment. (C) 1998 American Institute of? Physics. [S0021-9606(98)51703-5]. [References: 36]
机译:研究了层状Cd(0.75)PS(3)A(0.5)(H2O)[A = K,Cs]在层间空间中的层间介电响应随频率和温度的变化。在这些材料中,这些层是电绝缘的,由于离子分子的插入而使碱离子无法移动并且产生电响应。介电行为表现出两种现象,即低频率下复杂电介质磁化率的异常分散和高频率下的电介质弛豫。在低频下,两种化合物的复介电常数均表现出幂律色散,并在超过交叉频率ω(c)时过渡为较小的指数。已发现尽管ω(c)随着温度的升高而移向更高的频率,但在交叉频率处的复介电常数的大小没有变化。损耗峰显示出随温度向更高频率的相似移动。介电弛豫表明与理想德拜响应的偏离随着温度的增加而增加。通过考虑插入的水分子形成H键网络结构,使结果合理化。在该网络的渗滤结构的背景下描述了介电行为。异常的低频色散是由于在该结构上传输不完善而引起的,并且由于水分子具有永久偶极矩这一事实而导致了介电损耗。 (三)1998年美国研究所?物理。 [S0021-9606(98)51703-5]。 [参考:36]

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