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Fast Measurement of Dielectric Conductivity for Space Application by Surface Potential Decay Method 被引量:1
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作者 全荣辉 周凯 +2 位作者 方美华 池卫英 张振龙 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第6期104-106,共3页
Surface potential decay of polymers for electrical insulation can help to determine the dark conductivity for spacecraft charging analysis. Due to the existence of radiation-induced conductivity, it decays fast in the... Surface potential decay of polymers for electrical insulation can help to determine the dark conductivity for spacecraft charging analysis. Due to the existence of radiation-induced conductivity, it decays fast in the first few hours after irradiation and exponentially slowly for the remaining time. The measurement of dark conductivity with this method usually takes the slow part and needs a couple of days. Integrating the Fowler formula into the deep dielectric charging equations, we obtain a new expression for the fast decay part. The experimental data of different materials, dose rates and temperatures are fitted by the new expression. Both the dark conductivity and the radiation-induced conductivity are derived and compared with other methods. The result shows a good estimation of dark conductivity and radiation-induced conductivity in high-resistivity polymers, which enables a fast measurement of dielectric conductivity within about 600 rain after irradiation. 展开更多
关键词 fast Measurement of Dielectric Conductivity for Space Application by Surface Potential decay Method
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具有快上转化速率的窄光谱蓝光多重共振发光材料
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作者 田杨 苏蓉川 +3 位作者 刘俊杰 雷搏文 刘旻昊 宾正杨 《Science China Materials》 SCIE EI CAS CSCD 2024年第7期2311-2318,共8页
如何提高蓝光多重共振发光材料的反隙间窜跃速率(kRISC),并维持较快的辐射跃迁速率(kR)是促进其进一步发展和应用的关键.本论文报道了一种简单且高效的“空间限制的受体-供体-受体(SCADA)”策略,旨在加速蓝色多重共振发光分子的上转化过... 如何提高蓝光多重共振发光材料的反隙间窜跃速率(kRISC),并维持较快的辐射跃迁速率(kR)是促进其进一步发展和应用的关键.本论文报道了一种简单且高效的“空间限制的受体-供体-受体(SCADA)”策略,旨在加速蓝色多重共振发光分子的上转化过程.在多重共振中心骨架的最高占据轨道(HOMO)分布位点引入两个氰基苯受体,并在最低位占据轨道(LUMO)引入一个叔丁基咔唑给体,使发射波长蓝移的同时,减小发射的半峰宽(FWHM).此外,供体单元和受体单元呈现近距离的面对面取向,产生分子内给受体相互作用,进而增强自旋轨道耦合,加速反隙间窜跃过程.基于“SCADA”策略,本文成功开发出蓝光多重共振发光分子2DCNCz-BN,其FWHM仅为19 nm,并同时具有较快的kRISC(1.8×10^(6) s^(−1))和kR(2.0×10^(8) s^(−1)).以2DCNCz-BN为发光分子的OLED器件,最大外量子效率(EQEmax)为30.2%,并展现出较低的效率滚降,在1000 cd m^(−2)的亮度下,EQE可以维持22.3%. 展开更多
关键词 multiple resonance emitter boron-nitrogen em-bedded framework fast radiative decay rate fast reverse inter-system crossing rate narrowband blue emission
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