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首页> 外文期刊>Journal of Materials Science >Effects of surface modification on electrical properties of KNN nanorod-incorporated PVDF composites
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Effects of surface modification on electrical properties of KNN nanorod-incorporated PVDF composites

机译:表面改性对Knn Nanorod掺入的PVDF复合材料电性能的影响

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摘要

The demand of self-powered electronic devices has stimulated a great interest in daily life. To fulfill this, thrust researchers are engaged to develop different piezoelectric self-powered-based devices. The piezoelectricity is broadly dependent on the electroactive phase of the polymer structure. Herein, lead-free potassium sodium niobate (KNN) nanorods-incorporated PVDF polymer-based nanocomposite films have been developed wherein KNN nanorods have been surface-modified by three diverse surface modifiers such as 3-aminopropyltrimethoxysilane (APS), polyaniline (PANI) and polyvinylpyrrolidone (PVP) for resolving the agglomeration problem of the nanorods and to look into their effect on the microstructural growth including nucleation of polar crystals. The nanocomposite films have been developed simply by solution cast method. The growth of electroactive phases ( and ) of the PVDF polymer has been observed to be improved significantly by incorporation of surface-modified KNN nanorods. The calculated beta fraction (F()) and gamma fraction (F()) as calculated by the FTIR spectrum (98% and 99%) are maximum for the silane- and PVP-modified KNN nanorods-incorporated PVDF polymer, because of the higher molecular weight and homogeneous distribution of the nanorods throughout the PVDF matrix. The total crystallinity evaluated by XRD patterns, specifically crystal part for the surface-modified KNN nanorods-based film, has been improved (17% for pure PVDF, 45% for untreated KNN-based film and more than 50% for the surface-modified KNN-based films). The remnant polarization values are also remarkably higher (0.49C/cm(2) for silane, 0.022C/cm(2) for PVP and 0.015C/cm(2) for PANI-modified KNN nanorods-based composites, respectively) for surface-modified KNN nanorods-based composite with contrast to pure PVDF (0.001C/cm(2)) and untreated KNN-based film (0.002C/cm(2)). The dielectric constant values for modified KNN nanorods-incorporated PVDF polymer composites have also been demo
机译:自动电子设备的需求促使日常生活中的兴趣。为了实现这一点,推力研究人员正在开发不同的基于压电自动的设备。压电性广泛依赖于聚合物结构的电活性相。在此,已经开发出无铅铌酸钠(KNN)纳米霉素掺入的PVDF聚合物基纳米复合膜,其中KNN纳米棒通过三种不同的表面改性剂如3-氨基丙基三甲氧基硅烷(APS),聚苯胺(PANI)和聚乙烯吡咯烷酮(PVP)用于解决纳米棒的附聚问题,并研究其对微结构生长的影响,包括极性晶体的成核。已经简单地通过溶液浇铸方法开发了纳米复合膜。通过掺入表面改性的KNN纳米棒,已经观察到PVDF聚合物的电活性阶段(和)的生长显着改善。由FTIR光谱(98%和99%)计算的计算出​​的β馏分(F())和γ馏分(F())是硅烷和PVP改性的Knnorods掺入的PVDF聚合物的最大值,因为在整个PVDF基质中纳米棒的较高分子量和均匀分布。通过XRD图案评价的总结晶度,特别是晶体部分用于基于表面改性的KNN纳米棒的薄膜(纯PVDF的17%,对于未处理的KNN基薄膜为45%,表面改性超过50%基于KNN的薄膜)。硅烷的残余偏振值也非常高(0.49℃/ cm(2),用于PVP的PVP和0.015℃/ cm(2)的用于表面的PANI改性KNN纳米棒复合材料的0.015℃/ cm(2)。 - 用纯PVDF(0.001℃/ cm(2))和未处理的KNN基薄膜(0.002℃/ cm(2))对比度为基于KNN纳米杆的复合物。改性KNN纳米棒掺入的PVDF聚合物复合材料的介电常数值也是DE​​MO

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