R. M. Baptista, B. Silva, J. Oliveira, Bernardo Almeida, Cidália Castro, P. V. Rodrigues, Ana Machado, Etelvina de Matos Gomes, Michael Belsley
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引用次数: 0
Abstract
This study describes the synthesis and characterization of the lead-free organic ferroelectric perovskite N-methyl-N’-diazabicyclo [2.2.2]octonium)-ammonium trichloride (MDABCO-NH4Cl3). The electrospinning technique was employed to obtain nanofibers embedded with this perovskite in a PVC polymer for hybrid fiber production. The dielectric, piezoelectric, and pyroelectric properties of these fibers were carefully examined. Based on measurements of the dielectric permittivity temperature and frequency dependence, together with the pyroelectric results, a transition from a high temperature paraelectric to a ferroelectric phase that persisted at room temperature was found to occur at 438 K. The measured pyroelectric coefficient yielded values as high as 290 μC K−1 m−2, which is in between the values reported for MDABCO-NH4I3 and the semiorganic ferroelectric triglycine sulfate (TGS). The hybrid nanofibers exhibited good morphological characteristics and demonstrated very good piezoelectric properties. Specifically, a piezoelectric coefficient of 42 pC/N was obtained when applying a periodical force of 3 N and a piezoelectric voltage coefficient of geff = 0.65 V mN−1. The performance of these fibers is on par with that of materials discussed in the existing literature for the fabrication of nano energy-harvesting generators. Importantly, the perovskite nanocrystals within the fibers are protected from degradation by the surrounding polymer, making them a promising environmentally friendly platform for flexible mechanical energy harvesting.
本研究介绍了无铅有机铁电包晶石 N-甲基-N'-二氮杂双环[2.2.2]辛二铵-三氯化铵(MDABCO-NH4Cl3)的合成和表征。)利用电纺丝技术,在聚氯乙烯聚合物中嵌入这种包晶体,从而获得纳米纤维,用于生产混合纤维。对这些纤维的介电、压电和热释电特性进行了仔细研究。根据对介电常数的温度和频率依赖性以及热释电结果的测量,发现在 438 K 时发生了从高温介电相向铁电相的过渡,这种过渡在室温下持续存在。混合纳米纤维具有良好的形态特征,并表现出非常好的压电特性。具体来说,当施加 3 N 的周期力时,压电系数为 42 pC/N,压电电压系数为 geff = 0.65 V mN-1。这些纤维的性能与现有文献中讨论的用于制造纳米能量收集发电机的材料相当。重要的是,纤维内的包光体纳米晶体受到周围聚合物的保护,不会降解,因此是一种很有前途的柔性机械能采集环保平台。