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Comparative study and multi-parameter analysis to optimize device structure of triboelectric nanogenerators

摩擦电效应 多物理 材料科学 纳米发生器 电介质 静电感应 机械工程 机械能 建模与仿真 能量收集 制作 电压 发电机(电路理论) 功率(物理) 计算机科学 电极 光电子学 有限元法 电气工程 模拟 复合材料 结构工程 工程类 替代医学 物理化学 化学 病理 压电 量子力学 医学 物理
作者
Muhammad Wajahat,Abbas Z. Kouzani,Suiyang Khoo,M. A. Parvez Mahmud
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:34 (42): 425403-425403 被引量:4
标识
DOI:10.1088/1361-6528/acd789
摘要

Abstract Triboelectric nanogenerator is becoming one of the most efficient energy harvesting device among all mechanical energy harvesters. This device consists of dielectric friction layers and metal electrode which generates electrical charges using electrostatic induction effect. There are several factors influencing the performance of this generator which needs to be evaluated prior to experiment. The absence of a universal technique for TENG simulation makes the device design and optimization hard before practical fabrication, which also lengthens the exploration and advancement cycle and hinders the arrival of practical applications. In order to deepen the understanding the core physic behind the working process of this device, this work will provide comparative analysis on different modes of TENG. Systematic investigation on different material combination, effect of material thickness, dielectric constant and impact of surface patterning is evaluated to shortlist the best material combination. COMSOL Multiphysics simulating environment is used to design, model and analyze factor affecting the overall output performance of TENG. The stationary study in this simulator is performed using 2D geometry structure with higher mesh density. During this study short circuit and open circuit condition were applied to observe the behavior of charge and electric potential produced. This observation is analyzed by plotting charge transfer/electric potential against various displacement distances of dielectric friction layers. The ouput is then provided to load ciruitary to measure the maximum output power of the models. Overall, this study provides an excellent understanding and multi-parameter analysis on basic theoretical and simulation modeling of TENG device.
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