Greenhouse film-based triboelectric nanogenerator for raindrop energy collection and preparation method

A nano-generator and greenhouse film technology, applied in the direction of triboelectric generators, etc., can solve the problem that the output efficiency of triboelectric nano-generators is not very high, and achieve the effects of improving output performance, solving poor adhesion, and efficient collection

Active Publication Date: 2022-06-24
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In summary, the output efficiency of some triboelectric nanogenerators reported to harvest raindrop energy is not very high

Method used

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  • Greenhouse film-based triboelectric nanogenerator for raindrop energy collection and preparation method
  • Greenhouse film-based triboelectric nanogenerator for raindrop energy collection and preparation method
  • Greenhouse film-based triboelectric nanogenerator for raindrop energy collection and preparation method

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Experimental program
Comparison scheme
Effect test

Embodiment

[0048] 1) Prepare a modified film (superhydrophobic film) with superhydrophobic properties on the upper surface;

[0049] 1.1) Place the PE film in an inductively coupled plasma etcher;

[0050] 1.2) The set ICP power is 100W and the RF power is 50W; the gas is selected as O 2 and CHF 3 , O 2 and CHF 3 The flow rates were set to 15:45 sccm, and the air pressure was 30 mTorr; the upper surface of the PE film was etched for 10 min by an inductively coupled plasma etching device, so that a nano-textured structure was formed on the upper surface of the PE film, and the Structured PE film;

[0051] 1.3) The set ICP power is 100W, the RF power is 50W, and the gas is carbon tetrafluoride C 4 F 8 , C 4 F 8 The flow rate is set to 50sccm; the air pressure is 30mTorr; the upper surface of the PE film is deposited for 30s by an inductively coupled plasma etching device, so that a fluorocarbon layer is deposited on the upper surface of the nano-textured structure on the PE film, a...

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Abstract

The invention discloses a greenhouse film-based frictional nanogenerator for collecting raindrops and a preparation method thereof. The substrate and the conductive polymer are functionally modified, and strong adhesion between the two can be achieved by simple spin coating, brush coating, etc., and the thickness is thin enough to meet the transparency requirements, thus successfully preparing the film lower electrode. In addition, a very thin copper tape was pasted on the superhydrophobic surface of the superhydrophobic modified film to construct the upper electrode of the film, and to construct a frictional device with high output efficiency based on the superhydrophobic modified greenhouse film and the two-electrode working mode. Nanogenerator: On the premise of meeting the requirements of transparency as a whole, a triboelectric nanogenerator with high output performance is prepared to realize the collection of raindrop energy in the environment. Compared with the original film, the output performance of the triboelectric nanogenerator constructed by using the superhydrophobic modified film in the present invention is greatly improved, and the construction process of the triboelectric nanogenerator is simple and easy to realize.

Description

technical field [0001] The invention relates to a triboelectric nanogenerator based on the principles of triboelectric electrification and electrostatic induction and a preparation method thereof, in particular to the use of a greenhouse film as a triboelectric layer material, and a novel double-electrode structure to construct a triboelectric nanogenerator and its preparation Methods for raindrop energy collection in the environment. Background technique [0002] Greenhouse cultivation is one of the typical forms of agricultural production and consists of a transparent medium that transmits short-wavelength solar radiation. Covering materials, skeletons, cultivation facilities and technical equipment required to control the microclimate inside the greenhouse are the essential elements that make up the greenhouse. Among them, the materials covering the outside of the greenhouse frame are the most important components of the greenhouse, usually including plastic films, glass...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02N1/04C08J7/12C08J7/044C08L23/06
CPCH02N1/04C08J7/123C08J7/044C08J2323/06C08J2465/00C08J2425/18
Inventor 平建峰张琪应义斌
Owner ZHEJIANG UNIV
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