Graphene film achieves electrostatic protection of ultra-high voltage solar array

Aiming at the problem that the solar array of space power station is prone to electrostatic damage under ultra-high voltage, a graphene transparent conductive film with high transmittance and conductivity is developed to realize zero potential on the packaging surface of the fully flexible solar cel...

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Main Authors: Zhang Qi, Lan Zhicheng, Cui Xinyu, Zhang Wei
Format: Article
Language:zho
Published: National Computer System Engineering Research Institute of China 2024-03-01
Series:Dianzi Jishu Yingyong
Subjects:
Online Access:http://www.chinaaet.com/article/3000164126
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author Zhang Qi
Lan Zhicheng
Cui Xinyu
Zhang Wei
author_facet Zhang Qi
Lan Zhicheng
Cui Xinyu
Zhang Wei
author_sort Zhang Qi
collection DOAJ
description Aiming at the problem that the solar array of space power station is prone to electrostatic damage under ultra-high voltage, a graphene transparent conductive film with high transmittance and conductivity is developed to realize zero potential on the packaging surface of the fully flexible solar cell module, and achieve the purpose of charge release. Under the experimental conditions of 750 V ultra-high voltage, the fully flexible solar cell modules encapsulated by graphene film did not show electrostatic discharge and the electrical properties of the solar cell modules did not change, which proved the ability of graphene film in electrostatic protection under ultra-high voltage condition.
format Article
id doaj-art-f1173f9adf3d40c09fd28b69f3260dc7
institution Kabale University
issn 0258-7998
language zho
publishDate 2024-03-01
publisher National Computer System Engineering Research Institute of China
record_format Article
series Dianzi Jishu Yingyong
spelling doaj-art-f1173f9adf3d40c09fd28b69f3260dc72025-08-20T03:30:35ZzhoNational Computer System Engineering Research Institute of ChinaDianzi Jishu Yingyong0258-79982024-03-0150311511810.16157/j.issn.0258-7998.2339733000164126Graphene film achieves electrostatic protection of ultra-high voltage solar arrayZhang Qi0Lan Zhicheng1Cui Xinyu2Zhang Wei3Tianjin Institute of Power Source, Tianjin 300381, ChinaTianjin Institute of Power Source, Tianjin 300381, ChinaTianjin Institute of Power Source, Tianjin 300381, ChinaTianjin Institute of Power Source, Tianjin 300381, ChinaAiming at the problem that the solar array of space power station is prone to electrostatic damage under ultra-high voltage, a graphene transparent conductive film with high transmittance and conductivity is developed to realize zero potential on the packaging surface of the fully flexible solar cell module, and achieve the purpose of charge release. Under the experimental conditions of 750 V ultra-high voltage, the fully flexible solar cell modules encapsulated by graphene film did not show electrostatic discharge and the electrical properties of the solar cell modules did not change, which proved the ability of graphene film in electrostatic protection under ultra-high voltage condition.http://www.chinaaet.com/article/3000164126graphenefully flexible solar arrayultra-high voltageelectrostatic protection
spellingShingle Zhang Qi
Lan Zhicheng
Cui Xinyu
Zhang Wei
Graphene film achieves electrostatic protection of ultra-high voltage solar array
Dianzi Jishu Yingyong
graphene
fully flexible solar array
ultra-high voltage
electrostatic protection
title Graphene film achieves electrostatic protection of ultra-high voltage solar array
title_full Graphene film achieves electrostatic protection of ultra-high voltage solar array
title_fullStr Graphene film achieves electrostatic protection of ultra-high voltage solar array
title_full_unstemmed Graphene film achieves electrostatic protection of ultra-high voltage solar array
title_short Graphene film achieves electrostatic protection of ultra-high voltage solar array
title_sort graphene film achieves electrostatic protection of ultra high voltage solar array
topic graphene
fully flexible solar array
ultra-high voltage
electrostatic protection
url http://www.chinaaet.com/article/3000164126
work_keys_str_mv AT zhangqi graphenefilmachieveselectrostaticprotectionofultrahighvoltagesolararray
AT lanzhicheng graphenefilmachieveselectrostaticprotectionofultrahighvoltagesolararray
AT cuixinyu graphenefilmachieveselectrostaticprotectionofultrahighvoltagesolararray
AT zhangwei graphenefilmachieveselectrostaticprotectionofultrahighvoltagesolararray