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Fabrication and excellent electroresponsive properties of ideal PMMA@BaTiO3 composite particles

机译:理想PMMA @ BATIO3复合颗粒的制造和优异的电烙位性能

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A series of core–shell-structured poly(methylmethacrylate)@BaTiO _(3) (PMMA@BT) composite particles were constructed via the self-assembly of BT nanoparticles on the surfaces of PMMA cores through the covalent bonding of siloxane groups at room temperature. The PMMA@BT composite particles were characterized by scanning electron microscopy, transmission electron microscopy, infrared spectroscopy, X-ray diffraction, video-based optical contact angle measurement, thermogravimetric analysis, and impedance analysis. The electroresponses of the obtained PMMA@BT composite particles were all stronger than that of pure BT, and the electroresponse depended on the weight percentage of the BT shell. The PMMA@BT particles with the optimal core–shell structure contained 58.14 wt% of BT shell. The surface hydrophilicity of the optimal particles was close to that of pure BT, and the dielectric constant was the greatest among the series of synthesized PMMA@BT particles. Thus, the optimized PMMA@BT particles demonstrated the strongest electroresponsive behavior in gelatin hydrogel elastomer, as demonstrated by polarized microscopy and dynamic mechanical analysis. The excellent electroresponsive property of the optimal PMMA@BT particles is reflected by the large sensitivity of the increase in storage modulus for the gelatin hydrogel elastomer containing the composite particles (21% at E = 0.8 kV mm ~(?1) and a particle loading of 1.0 wt%), far greater than that of pure BT particles (4.7%). Based on the sensitive electroresponsive properties, the PMMA@BT particles have potential applications as electroresponsive materials.
机译:通过在PMMA芯的表面上通过硅氧烷基团在室内的共价键合来构建一系列核 - 壳结构的聚(甲基丙烯酸甲酯)@batio_(3)(PMMA @)(PMMA @)复合颗粒。通过在室内的硅氧烷基团的共价键合温度。通过扫描电子显微镜,透射电子显微镜,红外光谱,X射线衍射,视频光接触角测量,热重分析和阻抗分析,表征PMMA @ BT复合颗粒。所获得的PMMA @ BT复合颗粒的电势超出比纯BT的电势更强,电响应依赖于BT壳的重量百分比。具有最佳核 - 壳结构的PMMA @ BT颗粒含有58.14wt%的Bt壳。最佳颗粒的表面亲水性接近纯BT,介电常数在一系列合成的PMMA @ BT颗粒中是最大的。因此,优化的PMMA @ BT颗粒在明胶水凝胶弹性体中表现出最强的电抗性行为,如通过偏振显微镜和动态力学分析所证明的。最佳PMMA @ BT颗粒的优异电阻性能通过含有复合颗粒的明胶水凝胶弹性体的储存量模增加的大敏感性来反映(21%在E = 0.8kVmm〜(α1)和颗粒载荷1.0wt%)远大于纯Bt颗粒(4.7%)。基于敏感的电敏电阻性,PMMA @ BT颗粒具有潜在的应用作为电偏移材料。

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