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Dielectric relaxation and alternating current conductivity of lanthanum gadolinium and erbium-polyvinyl alcohol doped films

机译:镧g和掺-聚乙烯醇薄膜的介电弛豫和交流电导率

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摘要

Fourier transform infrared (FTIR) spectrum dielectric constant, ε′, loss tangent, tan(δ), electric modulus, >M*, and ac conductivity, σac, of pure polyvinyl alcohol (PVA) as well as La-, Gd-, and Er-PVA doped samples have been carried out. The dielectric properties have been studied in the temperature and frequency ranges; 300–450 K and 1 kHz–4 MHz, respectively. FTIR measurements reveal that La3+, Gd3+, and Er3+ ions form complex configuration within PVA structure. Two relaxation processes, namely, ρ and α were observed in pure PVA sample. The first process is due to the interfacial or Maxwell-Wagner-Sillers polarization. The second one is related to the micro-Brownian motion of the main chains. For doped PVA samples, α-relaxation process splits into αa and αc. This splitting is due to the segmental motion in the amorphous (αa) and crystalline (αc) phases of PVA matrix. Electric modulus analysis was discussed to understand the mechanism of the electrical transport process. The behavior of ac conductivity for all PVA samples indicates that the conduction mechanism is correlated barrier hopping.
机译:纯聚乙烯醇(PVA)的傅立叶变换红外(FTIR)光谱介电常数ε',损耗角正切值tan(δ),电模量> M *和交流电导率σac已进行了La-,Gd-和Er-PVA掺杂的样品。已经在温度和频率范围内研究了介电性能。 300–450 K和1 kHz-4 MHz。 FTIR测量表明,La 3 + ,Gd 3 + 和Er 3 + 离子在PVA结构内形成复杂的构型。在纯PVA样品中观察到两个弛豫过程,即ρ和α。第一个过程是由于界面或Maxwell-Wagner-Sillers极化。第二个与主链的微布朗运动有关。对于掺杂的PVA样品,α松弛过程分为αa和αc。这种分裂是由于PVA基质的非晶相(αa)和结晶相(αc)发生了分段运动。讨论了电模量分析以了解电传输过程的机理。所有PVA样品的交流电导率行为表明,其传导机制与势垒跳跃相关。

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