基于蓝光TADF材料mSOAD,英文名bis(3-(9,9-dimethyl-9,10-dihydroacridine)phenyl)sulfone非掺杂白色有机电致发光二极管
英文名:bis(3-(9,9-dimethyl-9,10-dihydroacridine)phenyl)sulfone (mSOAD)
日文简单来说就是:mSOAD
中文名:蓝光TADF材料mSOAD
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基于蓝光TADF材料mSOAD非掺杂白色有机电致发光二极管
科研人员采用一种基于锯齿状吖啶/砜衍生物的超薄磷光发射器合成双(3-(9,9-二甲基-9,10-二氢吖啶)苯基)砜(mSOAD)的简单方法,实现了非掺杂白色有机发光二极管(WOLED)的**率和高颜色稳定性。
采用优化调整薄款会发光体的选址和的数量,获得了31.9cda的电压电流速率、额定功率速率和外量子速率(EQE)1, 30.4 lm W区别做到1%和17.3%。在国际联盟灯光促进会会(CIE)地图坐标为(0.469±0.008,0.382±0.004)的情况发生下,从4V到8V也换取了比较稳定的乳白色光谱图。你们察觉,对载流子和激子的**约束具备有关键因素反应;纤薄发射成功器的地点和数对电子元件耐腐蚀性同样有有很大作用。

Using a simple method employing ultra-thin phosphorescent emitters into bis(3-(9,9-dimethyl-9,10-dihydroacridine)phenyl)sulfone (mSOAD) based on zig-zag acridine/sulfone derivative, high efficiency and high color stability of non-doped white organic light-emitting diodes (WOLEDs) are realized. After optimization of the location and quantity of the ultra-thin emitters, maximum current efficiency, power efficiency and external quantum efficiency (EQE) of the WOLEDs of 31.9 cd A−1, 30.4 lm W−1 and 17.3%, respectively, are achieved. The stable white spectra are also obtained with the Commission Internationale de I’Eclairage (CIE) coordinates of (0.469 ± 0.008, 0.382 ± 0.004) from 4 V to 8 V. We find that efficient confinement to carriers and excitons has a key role; the location and quantity of ultra-thin emitters also have a large effect on device performance.
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生物制品科技信息有限的子公司带来彩石协调一致物,热成功激活延期荧光(TADF)板材,聚众帮助延期荧光(AIDF)板材,聚众帮助变色AIE板材的全屋定制合并近红外TADF原子蓝光TADF相关材料DBTCz-TrzDBFCz-TrzBDBTCz-TrzBDBFCz-Trz红光/近红外TADF会发光文件BPPZ-PXZmDPBPZ-PXZ源于芴酮的橙红光热缴活推迟荧光(TADF)村料DMAC-FOSPAC-FOTICTTADF文件;TADF(一般包括MRTADF与TICTTADF)文件D-π-A型AIE-TADF近红外发光字装修材料TADF分子式DPK-DCFDPK-DCF围绕于硅胶材料纳米技术塑料再生颗粒近红外TADF分子式TPA-DCPP近红外带光产品DCPA-TPADCPA-BBPA清香硼表达的并苯原子PyNB开环大分子DPNB根据吡嗪多巴胺受体的DPXZ-BPDFTPXZ-BPF通过吡嗪的红白色热致延长荧光装修材料橙红光TADF分子式DPXZ-BPDPA

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