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高压电缆半导电屏蔽料关键问题及研究进展 被引量:11
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作者 李国倡 魏艳慧 +1 位作者 雷清泉 郝春成 《中国电机工程学报》 EI CSCD 北大核心 2022年第4期1271-1284,共14页
半导电屏蔽层作为高压电缆的重要组成部分,在电缆结构中起到均匀电场的作用。目前,我国高压电缆制造技术快速发展,然而高电压等级电缆料严重依赖进口,存在较多的技术壁垒。该文从高压电缆屏蔽料发展历程及关键问题、屏蔽料组成及关键性... 半导电屏蔽层作为高压电缆的重要组成部分,在电缆结构中起到均匀电场的作用。目前,我国高压电缆制造技术快速发展,然而高电压等级电缆料严重依赖进口,存在较多的技术壁垒。该文从高压电缆屏蔽料发展历程及关键问题、屏蔽料组成及关键性能参数、屏蔽料性能提升及改性3个方面综述了高压电缆屏蔽料的研究进展。首先,梳理高压电缆半导电屏蔽料发展历程,提炼当前屏蔽料面临的主要技术瓶颈和关键问题;其次,探讨屏蔽料导电和导热机理,从基体树脂、导电填充物和添加剂3个方面分析屏蔽料组成及性能,分析不同电压等级屏蔽料关键性能参数与技术要求;最后,探讨半导电屏蔽层配方,半导电屏蔽层–绝缘层界面特性和半导电屏蔽层性能对绝缘层电荷积聚特性的影响,并提出通过半导电屏蔽层改性抑制高压直流电缆绝缘层电荷积聚的方法。该文所做工作可为我国高压电缆半导电屏蔽料的研发、高压电缆性能评估提供理论参考。 展开更多
关键词 高压电缆 导电屏蔽料 导电填充物 电阻率稳定性 空间电荷
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Highly efficient Cu_(2)ZnSn(S,Se)_(4) bifacial solar cell via a composition gradient strategy through the molecular ink 被引量:2
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作者 Saqib Nawaz Khan Sijie Ge +7 位作者 Yuxiang Huang Han Xu Wentao Yang Ruijiang Hong Yaohua Mai Ening Gu Xianzhong Lin Guowei Yang 《Science China Materials》 SCIE EI CAS CSCD 2022年第3期612-619,共8页
The use of transparent conducting oxide(TCO)as a substrate in Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)thin-film solar cells allows for advanced applications,such as bifacial,semitransparent,and tandem solar cells with the capabil... The use of transparent conducting oxide(TCO)as a substrate in Cu_(2)ZnSn(S,Se)_(4)(CZTSSe)thin-film solar cells allows for advanced applications,such as bifacial,semitransparent,and tandem solar cells with the capability to increase power density generation.However,the efficiency of this kind of solar cell is still below 6% based on the low-cost solution process.In this work,we develop a composition gradient strategy and demonstrate a 6.82% efficient CZTSSe solar cell on F:SnO_(2)(FTO)substrate under the ambient condition.The composition gradient is realized by simply depositing the precursor inks with different Zn/Sn ratios.To verify that the high performance of the solar cell is attributed to the composition gradient strategy rather than the sole change of the Zn/Sn ratio,devices based on absorbers with varied Zn/Sn ratios are fabricated.Furthermore,the structure and surface morphology of the CZTSSe films with/without composition gradients are examined.The presence of elemental gradient through the depth of the CZTSSe films before and after annealing is confirmed by secondary ion mass spectroscopy analysis.It is found that the composition gradient enhances the crystallinity of the absorber,reduces the surface roughness as well as device parasitic losses,contributing to a higher fill factor,open-circuit voltage,and conversion efficiency. 展开更多
关键词 Cu_(2)ZnSn(S Se)_(4) composition gradient bifacial solar cell molecular ink
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