Kum-Onsa Pornsawan, Phromviyo Nutthakritta, Thongbai Prasit
Materials Science and Nanotechnology Program, Faculty of Science, Khon Kaen University Khon Kaen 40002 Thailand.
Sustainable Infrastructure Research and Development Center, Department of Civil Engineering, Faculty of Engineering, Khon Kaen University Khon Kaen 40002 Thailand.
RSC Adv. 2020 Nov 6;10(66):40442-40449. doi: 10.1039/d0ra06980a. eCollection 2020 Nov 2.
Three-phase gold nanoparticle-NaYCuTiO (Au-NYCTO)/poly(vinylidene fluoride) (PVDF) composites with 0.095-0.487 hybrid particle volume fractions () were fabricated. Au nanoparticles with a diameter of ∼10 nm were decorated on the surfaces of high-permittivity NYCTO particles using a modified Turkevich's method. The polar β-PVDF phase was confirmed to exist in the composites. Significantly enhanced dielectric permittivity of ∼98 (at 1 kHz) was obtained in the Au-NYCTO/PVDF composite with = 0.487, while the loss tangent was suppressed to 0.09. Abrupt changes in the dielectric and electrical properties, which signified percolation behavior, were not observed even when = 0.487. Using the effective medium percolation theory model, the percolation threshold ( ) was predicted to be at = 0.69, at which was estimated to ∼0.19 and close to the theoretical value for the conductor-insulator composites ( = 0.16). A largely enhanced dielectric response in the Au-NYCTO/PVDF composites was contributed by the interfacial polarization effect and a high permittivity of the NYCTO ceramic filler. Au nanoparticles can produce the local electric field in the composites, making the dipole moments in the β-PVDF phase and NYCTO particles align with the direction of the electric field.
制备了具有0.095 - 0.487混合颗粒体积分数()的三相金纳米颗粒 - NaYCuTiO(Au - NYCTO)/聚偏氟乙烯(PVDF)复合材料。使用改进的Turkevich方法在高介电常数NYCTO颗粒表面修饰了直径约为10 nm的金纳米颗粒。证实复合材料中存在极性β - PVDF相。在 = 0.487的Au - NYCTO/PVDF复合材料中,在1 kHz时获得了显著增强的介电常数98,同时损耗角正切被抑制到0.09。即使 = 0.487时,也未观察到介电和电学性能的突然变化,这表明不存在渗流行为。使用有效介质渗流理论模型,预测渗流阈值()为 = 0.69,此时估计为0.19,接近导体 - 绝缘体复合材料的理论值( = 0.16)。Au - NYCTO/PVDF复合材料中显著增强的介电响应是由界面极化效应和NYCTO陶瓷填料的高介电常数共同作用的结果。金纳米颗粒可以在复合材料中产生局部电场,使β - PVDF相和NYCTO颗粒中的偶极矩与电场方向对齐。