论文标题

离子对11CB液晶介电介电常数的影响及其与Batio3纳米颗粒的胶体的影响

The impact of ionic contribution to dielectric permittivity in 11CB liquid crystal and its colloids with BaTiO3 nanoparticles

论文作者

LOs, Joanna, Drozd-Rzoska, Aleksandra, Rzoska, Sylwester J., Czuprynski, Krzysztof

论文摘要

该报告显示了静态介电常数(介电常数)和Lo频率(LF)域中介电介电常数的实际部分在11CB和基于BATIO3的纳米胶体的大量样品中的温度行为。该研究涵盖了各向同性液体(I),列(N),Smectoc A(SMA)和固体晶体(CR)阶段。对于每个阶段,显示了纳米颗粒显着调节的预跨波动的优势。作者考虑在静态域中对介电常数(EPS(t))的演变进行单独关注,这些进化主要是由永久偶极矩及其排列以及低频(LF)域Deltaeps'(f)= EPS'(f)'(f)-eps(eps'(eps'(eps'(eps'(eps f)),lf ins lf ins lf ins in lf ins in lf ins in lf ins in lf ins in lf ins in lf,离子相关的极化机制。所有这些都导致有关I-N,N-SMA和SMA-CR转变的新实验证据。将预科效应的强度和程度关注,关键指数和相变的不连续性。在SMA-N转变附近的预科效应的有力证据是值得注意的,尤其是关于Deltaeps的(F,T)。研究通过直流电导率补充 - 参数也与LF结构域有关。最后,检查关系EPS'(f,t)= af^(-3/2)+EPS(F代表频率,A是恒定参数)通常用于讨论LC化合物及其LF域中其纳米固体中的介电光谱的有效性。

The report shows the temperature behavior of the real part of dielectric permittivity in the static (dielectric constant) and lo-frequency (LF) domains in bulk samples of 11CB and BaTiO3-based nanocolloids. The study covers the Isotropic Liquid (I), Nematic (N), Smectoc A (SmA) and Solid CRystal (Cr) phases. For each phase, the dominance of pretransitional fluctuations, significantly moderated by nanoparticles is shown. The authors consider separate focus on dielectric constant(Eps(T)) evolution in the static domain yielding mainly response from permanent dipole moments and their arrangement and in the low-frequency (LF) domain DeltaEps'(f)=Eps'(f)-Eps(where Eps'(f) is for the real part of dielectric permittivity in the LF domain).which is associated solely with ionic-related polarization mechanism. All these lead to new experimental evidence concerning I-N, N-SmA and SmA-Cr transitions.focusing on the strength and extent of pretransitional effects, critical exponents and phase transition discontinuities. The strong evidence for pretransitional effects near SmA-N transition is notable, particularly regarding DeltaEps'(f,T). Studies are supplemented by DC electric conductivity - the parameter also related to LF domain. Finally, the validity of the relation Eps'(f,T) = Af^(-3/2)+Eps (where f stands for the frequency and A is a constant parameter) often used for discussing dielectric spectra in LC compounds and its nanocollids in the LF domain, is examined.

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