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通过在钛酸钡纳米填料上使用银纳米颗粒提高基于聚偏氟乙烯的柔性复合材料的介电常数和机械收获响应。

Increasing Permittivity and Mechanical Harvesting Response of PVDF-Based Flexible Composites by Using Ag Nanoparticles onto BaTiO Nanofillers.

作者信息

Horchidan Nadejda, Ciomaga Cristina Elena, Curecheriu Lavinia Petronela, Stoian George, Botea Mihaela, Florea Mihaela, Maraloiu Valentin Adrian, Pintilie Lucian, Tufescu Florin Mihai, Tiron Vasile, Rotaru Aurelian, Mitoseriu Liliana

机构信息

Dielectrics, Ferroelectrics & Multiferroics Group, Faculty of Physics, Al. I. Cuza University of Iasi, Bv. Carol I, no. 11, 700506 Iasi, Romania.

Department of Exact & Natural Sciences, Institute of Interdisciplinary Research, Al. I. Cuza University of Iasi, Bv. Carol I, no. 11, 700506 Iasi, Romania.

出版信息

Nanomaterials (Basel). 2022 Mar 12;12(6):934. doi: 10.3390/nano12060934.

Abstract

The role of Ag addition on the structural, dielectric, and mechanical harvesting response of 20%(Ag - (1 - )BaTiO) - 80%PVDF ( = 0, 2, 5, 7 and 27 vol.%) flexible composites is investigated. The inorganic fillers were realized by precipitating fine (3 nm) silver nanoparticles onto BaTiO nanoparticles (60 nm average size). The hybrid admixtures with a total filling factor of 20 vol.% were embedded into the PVDF matrix. The presence of filler enhances the amount of β-PVDF polar phase and the BaTiO filler induces an increase of the permittivity from 11 to 18 (1 kHz) in the flexible composites. The addition of increasing amounts of Ag is further beneficial for permittivity increase; with the maximum amount ( = 27 vol.%), permittivity is three times larger than in pure PVDF (εr ~ 33 at 1 kHz) with a similar level of tangent losses. This result is due to the local field enhancement in the regions close to the filler-PVDF interfaces which are additionally intensified by the presence of silver nanoparticles. The metallic addition is also beneficial for the mechanical harvesting ability of such composites: the amplitude of the maximum piezoelectric-triboelectric combined output collected in open circuit conditions increases from 0.2 V/cm (PVDF) to 30 V/cm for = 27 vol.% Ag in a capacitive configuration. The role of ferroelectric and metallic nanoparticles on the increasing mechanical-electric conversion response is also been explained.

摘要

研究了添加银对20%(银 - (1 - )钛酸钡) - 80%聚偏氟乙烯( = 0、2、5、7和27体积%)柔性复合材料的结构、介电和机械俘获响应的作用。通过将精细的(约3纳米)银纳米颗粒沉淀到平均尺寸约60纳米的钛酸钡纳米颗粒上制备无机填料。将总填充因子为20体积%的混合混合物嵌入聚偏氟乙烯基体中。填料的存在增加了β - 聚偏氟乙烯极性相的含量,并且钛酸钡填料使柔性复合材料的介电常数在1千赫时从11增加到18。添加越来越多的银进一步有利于介电常数的增加;在最大添加量( = 27体积%)时,介电常数比纯聚偏氟乙烯(1千赫时εr约为33)大三倍,且损耗角正切水平相似。这一结果归因于靠近填料 - 聚偏氟乙烯界面区域的局部场增强,银纳米颗粒的存在进一步强化了这种增强。金属添加物对这类复合材料的机械俘获能力也有益:在电容配置下,开路条件下收集的最大压电 - 摩擦电组合输出的幅度从0.2伏/厘米(聚偏氟乙烯)增加到 = 27体积%银时的30伏/厘米。还解释了铁电和金属纳米颗粒对机械 - 电转换响应增加的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d7/8949362/464ee97c3ba3/nanomaterials-12-00934-g001.jpg

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