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   电致发光高分子 的翻译结果: 查询用时:0.281秒
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电致发光高分子
相关语句
  electroluminescent polymers
     EFFECTS OF ELECTRON ELECTRON INTERACTIONS ON THE POLARIZATION CHARACTERISTICS OF ELECTROLUMINESCENT POLYMERS
     电子 -电子相互作用对电致发光高分子极化特性的影响(英文)
短句来源
     The behaviors of the electroluminescent polymers under applied electric fields were studied by using the tight binding model of electron lattice coupling and solving the real tmie Newton dynamical equation.
     用电子-晶格耦合的紧束缚模型和求介实时牛顿动力学方程的方法研究了具有额外电子和空穴的电致发光高分子在外电场中的行为。
短句来源
  “电致发光高分子”译为未确定词的双语例句
     It was discovered that (1) the extra electron and hole injected by the applied electric field make the lattice relaxation, and bipolaron excitons are formed.
     发现外电场注入的额外电子和空穴使电致发光高分子晶格弛豫,形成双极化子激子;
短句来源
  相似匹配句对
     Electroluminescence(EL)
     电致发光
短句来源
     Multi-color Polymer Light-emitting Diode
     多色高分子薄膜电致发光器件
短句来源
     FLUORESCENCE AND ELECTROLUMINESCENCEPROPERTIES OF Tb3+CONTAINING POLYMER
     三价铽离子高分子配合物的光致发光和电致发光
短句来源
     Organic Electroluminescence
     有机电致发光
短句来源
     Polymer Liquid Crystals
     高分子液晶
短句来源
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  electroluminescent polymers
Synthesis and characterization of fluorene-based electroluminescent polymers containing silyl groups
      
Behavior of electroluminescent polymers with extra electron and hole under additional fields
      
The display is printed pixel-wise using solutions of differently colored electroluminescent polymers.
      


The behaviors of the electroluminescent polymers under applied electric fields were studied by using the tight binding model of electron lattice coupling and solving the real tmie Newton dynamical equation. It was discovered that (1) the extra electron and hole injected by the applied electric field make the lattice relaxation, and bipolaron excitons are formed. (2) there exists a critical electric field. When an applied field is equal to or larger than the critical field, the bipolaron exciton will be...

The behaviors of the electroluminescent polymers under applied electric fields were studied by using the tight binding model of electron lattice coupling and solving the real tmie Newton dynamical equation. It was discovered that (1) the extra electron and hole injected by the applied electric field make the lattice relaxation, and bipolaron excitons are formed. (2) there exists a critical electric field. When an applied field is equal to or larger than the critical field, the bipolaron exciton will be dissociated into positive and negative polarons, leading to photoluminescence quenching. The result is consistent with the relevant experiments, and it also implies that the bipolaron exciton is a kind of luminous species in polymers.

用电子-晶格耦合的紧束缚模型和求介实时牛顿动力学方程的方法研究了具有额外电子和空穴的电致发光高分子在外电场中的行为。发现外电场注入的额外电子和空穴使电致发光高分子晶格弛豫,形成双极化子激子;并存在一个临界电场,当外电场大于或者等于临界电场时,双极化子激子解离成正、负极化子,导致发光猝灭.该结果与电致发光高分子的光荧光被强电场猝灭的实验现象一致.这个一致性反映了双极化子激子是电致发光高分子中的一种发光实体,说明了电致发光高分子在强电场下光荧光猝灭的物理原因是在强电场作用下电致发光高分子中的双极化子激子被解离成正、负极化子

The polarization characteristics of electroluminescent polymers were studied with the theoretical model including the external field, electron electron and electron lattice interactions simultaneously. It was discovered that on site Hubbard energy and the nearest neighbor electron electron interactions increase the negative polarization of self trapping bi excitons in polymers obviously. The physical significance of negative polarization—a new phenomenon, and its possible applications were also explored....

The polarization characteristics of electroluminescent polymers were studied with the theoretical model including the external field, electron electron and electron lattice interactions simultaneously. It was discovered that on site Hubbard energy and the nearest neighbor electron electron interactions increase the negative polarization of self trapping bi excitons in polymers obviously. The physical significance of negative polarization—a new phenomenon, and its possible applications were also explored.

用同时计入电子 -电子相互作用 ,外电场及电子 -晶格相互作用的理论模型研究分析了电致发光高分子的极化特性 ,发现在位电子相互作用和相邻格点间电子的相互作用明显增加高分子中双激子态的反向极化 .本文还探讨了反向极化这个新的物理现象的意义及其可能的应用

 
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