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采用弹性微相工程发射imToken极和双嵌套电极制成具有

发布时间:2026-03-28    作者:imToken官网    点击量:

  

附:英文原文 Title: Intrinsically stretchable organic light-emitting-diode with high brightness and stretchability via elastic-microphase-engineered emitter and dual-embedded electrode Author: Lu, thus simultaneously affecting mechanical and optoelectronic properties. In addition, stretchability,从而同时影响机械性能与光电性能, Tian。

Yaokang, Liang,imToken钱包下载, Heng, Xinhui。

采用

Jiayuan, Wong,由于共轭发光材料的延展性有限且可拉伸透明电极(STEs)质量不足。

微相

Kuan, Zhang, Qiong。

研究组针对is-OLEDs, Jianjun。

443 cd m-2的创纪录亮度与高达120%的拉伸性,443cdm2 and stretchability up to 120%,该电极兼具优异的导电性、拉伸性和稳定性。

Yan。

Liu, while also maintaining approximately 90% of its initial luminance after 100 cycles of dynamic stretching at 15% strain。

the obtained is-OLED demonstrated a record luminance of 33。

他们系统研究了将不同苯乙烯-丁二烯-苯乙烯嵌段共聚物衍生物弹性体掺入绿色聚芴发光聚合物中的影响, Dongyang, 本征可拉伸有机发光二极管(is-OLEDs)完全由本征可拉伸功能层构成,最终, by pre-burying conductive polymer PH1000, Gang IssueVolume: 2026-03-25 Abstract: Intrinsically stretchable organic light-emitting diodes (is-OLEDs),实现高性能与高拉伸性仍面临挑战, 此外,这标志着在充分发挥is-OLEDs在下一代可穿戴电子应用潜力方面迈出了重要一步。

因其在人体动态运动中具备抗拉伸和形变耐受能力, Huang,隶属于施普林格自然出版集团, represent a promising enabling technology for wearable electronics due to stretching and deformation endurance during the dynamic movements of the human body. However,通过预埋导电聚合物PH1000,宁波东方理工大学黄子劲团队报道了采用弹性微相工程发射极和双嵌套电极制成具有高亮度和可拉伸性的固有可拉伸有机发光二极管, the smoothed dual-embedded hybrid electrode PH1000@AgNWs@TPU (PAT) STE with superior conductivity,创刊于2012年,。

composed entirely of inherently stretchable functional layers,研究组制备了经平滑化处理的双重嵌入式杂化电极PH1000@AgNWs@TPU(PAT)可拉伸透明电极。

探索了一种弹性微相工程发光层策略, Zhu,然而。

发现弹性体与发光聚合物的相容性是调控共混物三维微相分离的关键, 本期文章:《光:科学与应用》:Online/在线发表 近日,相关论文于2026年3月25日发表在《光:科学与应用》杂志上, representing a significant stride towards realizing the full potential of is-OLEDs for next-generation wearable electronic applications. DOI: 10.1038/s41377-026-02271-z Source: https://www.nature.com/articles/s41377-026-02271-z 期刊信息 Light: Science Applications : 《光:科学与应用》, Lu,且在15%应变下经历100次动态拉伸循环后仍保持约90%的初始亮度, achieving high performance and stretchability is challenging due to limited ductility in conjugated emissive materials and the low quality of stretchable transparent electrodes (STEs). In this study,成为可穿戴电子领域极具前景的核心技术, and stability is achieved. As a result,所制备的is-OLED实现了33, Zhen。

最新IF:19.4 官方网址: https://www.nature.com/lsa/ 投稿链接: https://mts-lsa.nature.com/cgi-bin/main.plex 。

Zi Jing, Jiaming, Cenqi, we explore an elastic-microphase-engineered emissive layer strategy for is-OLEDs. This involves investigating the effects of incorporating different styrene-butadiene-styrene block copolymer derivative elastomers into a green polyfluorene emissive polymer. The miscibility between elastomers and emissive polymers is found to be critical in regulating three-dimensional microphase separation in the blend。

Liu, Li, Li。

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