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tin phthalocyanine
相关语句
  酞菁锡
    Photovoltaic Effects in Organic Polycrystalline Tin Phthalocyanine (SnPc) Film
    酞菁锡(SnPc)多晶薄膜的光电压特性研究
短句来源
    Herein we employed 3,4-polyethylenedioxythiophene (PEDT) as the polymer material, and tetracyanoquinodimethane (TCNQ) and tin phthalocyanine (SnPc) as small molecules.
    本文分别从小分子有机物和聚合物两大类别选择了具有代表性的酞菁锡(SnPc)、TCNQ(7,7,8,8-四氰基苯醌二甲烷)和PEDT(3,4-聚乙撑二氧噻吩)。
短句来源
    Exciton Transitions and Charge Transfer Excitations in Polycrystalline Tin Phthalocyanine Film Studied by Stark Spectroscopy
    用斯塔克光谱技术研究酞菁锡薄膜中的激子跃迁和电荷转移
短句来源
    Stark spectroscopy(electroreflection spectroscopy) technique was applied to investigate the exciton transitions and charge transfer excitations in a Tin phthalocyanine(SnPc) polycrystalline film.
    采用斯塔克(Stark)光谱(电场调制反射光谱)技术研究了酞菁锡(SnPc)多晶薄膜中的激子跃迁和电荷转移。
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Stark spectroscopy(electroreflection spectroscopy) technique was applied to investigate the exciton transitions and charge transfer excitations in a Tin phthalocyanine(SnPc) polycrystalline film. A series of intermolecular charge transfer(CT) spectral bands was observed, which demonstrated the unique advantage and high sensibility of Stark spectroscopy in revealing weak CT transitions buried under strong Frenkel exciton bands. Photovoltaic action spectrum was measured for an ITO/SnPc/Al sandwiched...

Stark spectroscopy(electroreflection spectroscopy) technique was applied to investigate the exciton transitions and charge transfer excitations in a Tin phthalocyanine(SnPc) polycrystalline film. A series of intermolecular charge transfer(CT) spectral bands was observed, which demonstrated the unique advantage and high sensibility of Stark spectroscopy in revealing weak CT transitions buried under strong Frenkel exciton bands. Photovoltaic action spectrum was measured for an ITO/SnPc/Al sandwiched device. The role that CT excitons played in photoconductivity was discussed.

采用斯塔克(Stark)光谱(电场调制反射光谱)技术研究了酞菁锡(SnPc)多晶薄膜中的激子跃迁和电荷转移。观察到一系列分子间电荷转移所形成的双分子激子谱带,显示了斯塔克光谱技术在探测淹没于弗伦克尔(Frenkel)激子带下面的微弱电荷转移跃迁方面具有独特的优点和很高的灵敏度。结合光电压作用谱的测量分析,认为弗伦克尔激子激发和电荷转移激子的形成、传输及解离在SnPc及同类材料的电导和光电导初级过程中发挥了重要作用

 
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