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Charge transport and electroluminescence in insulating polymers
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Notice of Violation of IEEE Publication Principles
Charge transport and electroluminescence in insulating polymers

机译:违反IEEE公布原则的通知
绝缘聚合物中的电荷传输和电致发光

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Notice of Violation of IEEE Publication Principles

"Charge Transport and Electroluminescence in Insulating Polymers,"
by Yong-Sung Choi; Ju-Ho Yun; Hyang-Kon Kim; Chung-Seog Choi; Kyung-Sup Lee,
in the Proceedings of the 2008 International Conference on Condition Monitoring and Diagnosis, 21-24 April 2008, pp 238-242

After careful and considered review of the content and authorship of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE's Publication Principles.

This paper is a near duplication of the original text from the papers cited below. The original text was copied without attribution and without permission.

Due to the nature of this violation, reasonable effort should be made to remove all past references to this paper, and future references should be made to the following articles:

"A Discussion on Charge Transport and Electroluminescence in Insulating Polymers,"
by Laurent, C.; Teyssedre, G.; Le Roy, S.,
in Proceedings of the 2005 International Symposium on Electrical Insulating Materials, 5-9 June 2005, vol. 1, pp. 7-15Polymers submitted to thermo/electrical stress suffer from ageing that can drastically affect their functional behaviour. Understanding the physico/chemical processes at play during ageing and defining transport regimes in which these mechanisms start to be critical is therefore a prime goal to prevent degradation and to develop new formulation or new materials with improved properties. It is thought that a way to define these critical regimes is to investigate under which conditions (in terms of stress parameters) light is generated in the material by electroluminescence (EL). This can happen through impact excitation/ionization involving hot carriers or upon bipolar charge recombination (a definition that excludes light from partial discharges, which would sign an advanced stage in the degradation process). After a brief review of the EL phe-nomenology under DC, we introduce a numerical model of charge transport postulating a recombinationcontrolled electroluminescence. The model output is critically evaluated with special emphasize on the comparison between simulated and experimental light emission. Finally, we comment some open questions and perspectives.
机译:违反Yong-Sung Choi违反IEEE出版原则

“绝缘聚合物中的电荷传输和电致发光”的通知;尹菊镐金yang健崔钟Se; Lee Kyung-Sup Lee,
在2008年国际状态监测与诊断会议论文集,2008年4月21日至24日,第238-242页,

由适当组成的专家委员会撰写的该论文违反了IEEE的出版原则。

该论文与以下引用的论文的原文几乎是重复的。原始文本未经署名也未经许可被复制。

由于这种侵犯的性质,应做出合理的努力以删除所有以前对本文的引用,并在以后对以下文章进行引用:

“关于绝缘聚合物中电荷传输和电致发光的讨论”,Laurent,C .; Teyssedre,G .; Le Roy,S.,
在2005年国际电气绝缘材料研讨会上的会议记录,2005年6月5日至9日,第一卷。 (第1页,第7-15页)承受热/电应力的聚合物会老化,从而严重影响其功能行为。因此,了解老化过程中正在发挥作用的物理/化学过程并定义这些机制开始变得至关重要的运输方式,是防止降解并开发性能改善的新配方或新材料的主要目标。据认为,定义这些临界状态的一种方法是研究在何种条件下(根据应力参数)通过电致发光(EL)在材料中产生光。这可以通过涉及热载流子的碰撞激发/电离或双极性电荷复合(定义不包括局部放电的光,这将指示降解过程的高级阶段)而发生。在简短地回顾了EL phe-之后 在直流电的术语学基础上,我们介绍了一个电荷迁移的数值模型,该模型假定了复合控制的电致发光。对模型输出进行严格评估,特别强调模拟和实验光发射之间的比较。最后,我们评论一些未解决的问题和观点。

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