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高性能压电纳米发电机的进展:用于取向和排列的BaTiO/PDMS复合材料的简单电场切换

Advancing High-Performance Piezoelectric Nanogenerators: Simple Electric Field Switching for Orientated and Aligned BaTiO/PDMS Composite.

作者信息

Yun Je Moon, Kwon Guhyun, Choi Jae-Hak, Kim Kwang-Ho

机构信息

Department of Polymer NanoEngineering, Dong-Eui University, 176 Eomgwang-ro, Busanjin-gu, Busan 47340, Republic of Korea.

Center for Brain Busan 21 Plus Program, Busan 47340, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 16;16(41):55598-55608. doi: 10.1021/acsami.4c14452. Epub 2024 Oct 7.

Abstract

Barium titanate (BaTiO) is renowned for its high dielectric constant and remarkable piezoelectric attributes, positioning it as a key element in the advancement of environmentally sustainable devices. Nevertheless, the effectiveness of piezoelectric nanogenerators (PENGs) that integrate BaTiO nanoparticles (NPs) and poly(dimethylsiloxane) (PDMS) poses a challenge, thereby restricting their utility in energy harvesting applications. This study presents a direct approach involving the cyclic manipulation of direct current (DC) power supply terminals to achieve unidirectional alignment of BaTiO NPs within a PDMS matrix, aiming to enhance the performance of the PENGs. Examination of the morphology and evaluation of diffraction planes, notably (111) and (200), in the aligned BaTiO PENGs exhibited well-oriented structures resulting from the repetitive switching between two electrodes, leading to improved piezoelectric properties. The BaTiO PENGs manifested notably higher output power (∼15 V and 1.91 μA) in contrast to devices containing randomly distributed polarized BaTiO-PDMS composite films. The generated power was sufficient to directly operate six light-emitting diodes (LEDs) connected in series, with a collective nominal voltage of around 14 V, encompassing red, green, and blue LEDs. Nanoindentation verified the enhanced piezoelectric characteristics attributed to the alignment, sensitivity to bending, and energy-cohesive effects of clustered BaTiO one-dimensional (1D) pillars. These findings suggest a widely applicable technique for aligning and situating nanoparticles vertically within a polymer matrix, exploiting the intrinsic dielectric properties of the nanoparticles through a straightforward electric field switching mechanism.

摘要

钛酸钡(BaTiO)以其高介电常数和卓越的压电特性而闻名,使其成为环境可持续设备发展中的关键元素。然而,整合了钛酸钡纳米颗粒(NPs)和聚二甲基硅氧烷(PDMS)的压电纳米发电机(PENGs)的效能面临挑战,从而限制了它们在能量收集应用中的效用。本研究提出了一种直接方法,涉及对直流(DC)电源端子进行循环操作,以实现钛酸钡纳米颗粒在PDMS基质内的单向排列,旨在提高PENGs的性能。对排列后的钛酸钡PENGs的形态进行检查以及对衍射面(特别是(111)和(200))进行评估,结果显示由于在两个电极之间的重复切换而产生了取向良好的结构,从而改善了压电性能。与包含随机分布的极化钛酸钡 - PDMS复合膜的器件相比,钛酸钡PENGs表现出显著更高的输出功率(约15 V和1.91 μA)。所产生的功率足以直接驱动六个串联连接的发光二极管(LED),其总标称电压约为14 V,包括红色、绿色和蓝色LED。纳米压痕验证了由于聚集的钛酸钡一维(1D)柱的排列、对弯曲的敏感性和能量凝聚效应而增强的压电特性。这些发现表明了一种广泛适用的技术,可通过简单的电场切换机制利用纳米颗粒的固有介电特性,在聚合物基质内垂直排列和定位纳米颗粒。

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