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基于双层电负性结构的摩擦纳米发电机,利用增强电荷产生和改善电荷俘获的联合效应提高性能

Double-Layer Electronegative Structure-Based Triboelectric Nanogenerator for Enhanced Performance Using Combined Effect of Enhanced Charge Generation and Improved Charge Trapping.

作者信息

Mondal Arun, Faraz Mohd, Dahiya Mamta, Khare Neeraj

机构信息

Department of Physics, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 25;16(38):50659-50670. doi: 10.1021/acsami.4c08964. Epub 2024 Aug 17.

Abstract

The performance of a triboelectric nanogenerator (TENG) device depends on the amount of generated surface charges during triboelectrification and the retention of surface charges. Here, we present the fabrication of a double-layer nanocomposite structure for the electronegative layer in a TENG, which resulted in the enhanced generation of surface charges and retention of generated charges. The double-layer structure is a stack of two different nanocomposite layers, in which the top layer is a nanocomposite of PVDF and MXene and the bottom layer is a nanocomposite layer of PDMS and NaNbO nanoparticles. The use of the double-layer structure for the electronegative layer enhanced the generated voltage to 150 V and the current to 4.3 μA, resulting in an output power density of 134 μW/cm, which is ∼5.8 times higher compared to the performance of a TENG with a single PVDF electronegative layer. Through systematic Kelvin probe force microscopy measurements, it is shown that the introduction of a highly electronegative MXene in the PVDF matrix improved the electron affinity of the friction layer, resulting in enhanced charge generation during contact electrification. The introduction of NaNbO ferroelectric nanoparticles in the PDMS matrix is shown to result in enhanced internal polarization and increased trap sites, resulting in the retention of generated surface charges for longer durations. The combined effect of the two layers resulted in a substantial improvement in TENG performance. The application of the TENG device in wireless communication for signal transfer is also presented.

摘要

摩擦电纳米发电机(TENG)装置的性能取决于摩擦起电过程中产生的表面电荷量以及表面电荷的保留情况。在此,我们展示了一种用于TENG负电层的双层纳米复合结构的制备方法,该结构增强了表面电荷的产生以及所产生电荷的保留。双层结构是由两个不同的纳米复合层堆叠而成,其中顶层是聚偏氟乙烯(PVDF)与MXene的纳米复合材料,底层是聚二甲基硅氧烷(PDMS)与铌酸钠(NaNbO)纳米颗粒的纳米复合层。将双层结构用于负电层使产生的电压提高到150 V,电流提高到4.3 μA,输出功率密度达到134 μW/cm,与具有单一PVDF负电层的TENG性能相比,提高了约5.8倍。通过系统的开尔文探针力显微镜测量表明,在PVDF基体中引入高负电性的MXene提高了摩擦层的电子亲和力,从而在接触起电过程中增强了电荷产生。在PDMS基体中引入铌酸钠铁电纳米颗粒可增强内部极化并增加陷阱位点,从而使所产生的表面电荷能保留更长时间。两层的综合作用使TENG性能得到显著改善。还展示了TENG装置在无线通信中用于信号传输的应用。

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