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Strong impact of LiNbO_3 fillers on local electromechanical and electrochemical properties of P(VDF-TrFe) polymer disclosed via scanning probe microscopy

机译:LiNbO_3填料对P(VDF-TrFe)聚合物的局部机电和电化学性能的强烈影响,通过扫描探针显微镜观察

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In this work, we demonstrate an alteration of mechanical, electrophysical, piezo- and ferroelectric properties of polyvinylidene fluoride/trifluoroethylene P(VDF-TrFE) copolymer at the composition of 70/30 mol% in the presence of lithium niobate (LiNbO3) fillers. The micro- and nanoscale measurements of the elastic modulus suggest a two-fold increase in the mechanical rigidity of the P(VDF-TrFE) film after embedding the LiNbO3. The enhancement of local piezo- and ferroelectric properties of the modified polymer is evidenced by the increase of the direct piezoelectric coefficient from 27.1 pm/V to 36.1 pm/V. This increase is supposed to be associated with a significant contribution from Li-ion diffusion (the surface nanoelectrochemistry effect). This suggestion is supported by the observation of irreversible dc bias voltage-induced Li-ion extraction contributing to the locally-measured piezoresponse. The dynamics of the Li-ion diffusion, studied by electrochemical strain time spectroscopy, shows a decrease of the diffusion coefficient for an area poled by dc bias voltage as compared with a pristine one. This decrease confirms the existence of irreversible electrochemical processes during the local piezoelectric measurements. At the same time, X-ray diffraction and micro-Raman data suggest the integrity of the intramolecular structure of the P(VDF-TrFE) copolymer after embedding the LiNbO3 fillers. This is a key achievement allowing to keep the structure-related parameters specific to the pure P(VDF-TrFE) copolymer. The obtained results reveal a crucial role of the fillers in attaining the desired functional behavior, thus paving the way towards the development of advanced sensors, transducers, actuators, and piezoelectric devices.
机译:在这项工作中,我们证明了在铌酸锂(LiNbO3)填料存在的情况下,聚偏二氟乙烯/三氟乙烯P(VDF-TrFE)共聚物的机械,电物理,压电和铁电性能的变化为70/30 mol%。微观和纳米尺度的弹性模量表明,在嵌入LiNbO3之后,P(VDF-TrFE)薄膜的机械刚度增加了两倍。通过直接压电系数从27.1 pm / V增加到36.1 pm / V,可以证明改性聚合物的局部压电和铁电性能得到了增强。该增加被认为与锂离子扩散的显着贡献有关(表面纳米电化学效应)。观察不可逆的直流偏置电压诱导的锂离子提取有助于局部测量的压电响应,这一观点得到了支持。通过电化学应变时间光谱法研究的锂离子扩散动力学表明,与原始电压相比,由直流偏置电压极化的区域的扩散系数降低。这种减少证实了在局部压电测量过程中存在不可逆的电化学过程。同时,X射线衍射和显微拉曼数据表明,在嵌入LiNbO3填料后,P(VDF-TrFE)共聚物的分子内结构的完整性。这是一项关键成就,可保持特定于纯P(VDF-TrFE)共聚物的结构相关参数。获得的结果揭示了填料在获得所需功能行为方面的关键作用,从而为开发高级传感器,换能器,致动器和压电设备铺平了道路。

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