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电磁感应发电机和摩擦电纳米发电机在机械能收集方面的理论比较、等效变换和连接操作。

Theoretical comparison, equivalent transformation, and conjunction operations of electromagnetic induction generator and triboelectric nanogenerator for harvesting mechanical energy.

机构信息

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 100083, China.

出版信息

Adv Mater. 2014 Jun 11;26(22):3580-91. doi: 10.1002/adma.201400207. Epub 2014 Mar 27.

DOI:10.1002/adma.201400207
PMID:24677413
Abstract

Triboelectric nanogenerator (TENG) is a newly invented technology that is effective using conventional organic materials with functionalized surfaces for converting mechanical energy into electricity, which is light weight, cost-effective and easy scalable. Here, we present the first systematic analysis and comparison of EMIG and TENG from their working mechanisms, governing equations and output characteristics, aiming at establishing complementary applications of the two technologies for harvesting various mechanical energies. The equivalent transformation and conjunction operations of the two power sources for the external circuit are also explored, which provide appropriate evidences that the TENG can be considered as a current source with a large internal resistance, while the EMIG is equivalent to a voltage source with a small internal resistance. The theoretical comparison and experimental validations presented in this paper establish the basis of using the TENG as a new energy technology that could be parallel or possibly equivalently important as the EMIG for general power application at large-scale. It opens a field of organic nanogenerator for chemists and materials scientists who can be first time using conventional organic materials for converting mechanical energy into electricity at a high efficiency.

摘要

摩擦纳米发电机(TENG)是一种新兴技术,它使用功能化表面的常规有机材料有效,可将机械能转换为电能,具有重量轻、成本效益高和易于扩展的特点。在这里,我们从工作机制、控制方程和输出特性方面对 EMIG 和 TENG 进行了首次系统的分析和比较,旨在为两种技术在收集各种机械能方面的互补应用建立基础。我们还探讨了两个电源对外部电路的等效变换和连接操作,这为 TENG 可以被视为具有大内阻的电流源,而 EMIG 等效于具有小内阻的电压源提供了合理的证据。本文提出的理论比较和实验验证为将 TENG 作为一种新的能源技术来使用奠定了基础,这种技术可以与 EMIG 平行或可能等效重要,可用于大规模的一般电力应用。它为化学家开辟了一个有机纳米发电机领域,使他们可以首次使用常规有机材料将机械能高效地转换为电能。

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