摩擦纳米发电机的高频感应 High frequency sensing of triboelectric nanogenerators任务书

 2022-01-31 21:51:14

全文总字数:7690字

1. 毕业设计(论文)的内容和要求

The purpose of this study is to investigate, design, and manufacture flexible triboelecrtric nanogenerators (TENGs), and to explore the effects of high-frequency electromagnetic waves on flexible TENG output performance, and to explore the physical mechanisms that produce such effects. In this study, polyvinylidene fluoride nanofibers (PVDF NFs) and PVDF NFs with various nanofillers were first prepared and characterized as the main TENG material. TENG is then assembled and subjected to performance tests at different frequencies of electromagnetic waves and with different frictional layer materials to explore potential mechanisms. The content and requirements of my graduation thesis are as follows:本课题旨在研究、设计和制造柔性电子摩擦纳米发电机(TENG),并且探索高频电磁波对TENG输出性能的影响,进而探索产生这种影响的物理机制。

本实验首先制备聚偏氟乙烯纳米纤维(PVDF NFs)和掺杂别的纳米填充物聚偏氟乙烯纳米纤维(PVDF NFs),将其作为TENG的摩擦层。

对这些纳米纤维进行表征。

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2. 实验内容和要求

Experiments conducted in this project include:1. Read the literature to understand the classification of nanogenerators and the principle and structure of TENG.2. Design and carry out the preparation experiment on TENGs.3. To understand and test high frequency response of TENG4. Read literature and explain its potential mechanism in combination with professional knowledge.To complete the experiment, the following requirements are required:1. Consult as much new literature at home and abroad as possible2. Plan the experiment as carefully as possible in advance3. Carefully record the phenomena during the experimentAnalyze the causes of problems carefully本课题所做实验包括:1. 阅读文献,了解纳米发电机的分类以及TENG的原理和结构。

2. 设计并进行摩擦纳米发电机的制备实验。

3. 了解并测试TENG的高频响应4. 阅读文献并结合专业知识,阐述其潜在的机理。

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3. 参考文献

[1]. A, M. T.;A, J. W.;A, J. W.;B, M. M.;A, H. Y.;A, G. S.;B, F. Y.;A, M. E.; C, W. H. A. J. N. E., Enhanced output in polyvinylidene fluoride nanofibers based triboelectric nanogenerator by using printer ink as nano-fillers. 77.

[2]. Chen, H.;Bai, L.;Li, T.;Zhao, C.;Zhang, J.;Zhang, N.;Song, G.;Gan, Q.; Xu, Y. J. N. E., Wearable and Robust Triboelectric Nanogenerator Based on Crumpled Gold Films. 2018, 46, 73-80.

[3]. Kim, S. M.;Ha, J.; Kim, J. B. J. I. F., The effect of dielectric constant and work function on triboelectric nanogenerators: Analytical and numerical study. 2016, 176 (1), 251-256.

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4. 毕业设计(论文)计划

2021.1.9-2021.1.31 查阅文献资料2021.2.1-2021.2.28 拟定实验方案,撰写开题报告2021.3.1-2021.3.31 完成初步实验室工作开展初步测试2021.4.1-2021.4.30 进行中期检查,完成实验和测试2021.5.1-2021.6.15 撰写毕业论文,答辩

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