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Fullerene-functionalized carbon nanotubes as Improved optical limiting devices

机译:富勒烯官能化的碳纳米管作为改进的光学限制器件

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We report the synthesis, characterization and optical limiting behavior of a nanohybrid built by grafting C_(60)-fullerenes on carbon nanotubes (CNTs). The nonlinear optical limiting properties of the CNT-C_(60) complex were investigated at wavelengths where C_(60) does not absorb. We found that the nanohybrid had superior performances to those of CNTs and ful-lerenes, either taken individually or as a mixture. This enhanced optical limitation of the nanohybrid suggests not only cooperative but also synergistic effects between the two carbon forms. A mechanism involving higher excitonic states of the CNTs formed by Auger recombination of low energy excitons is proposed.
机译:我们报告了通过在碳纳米管(CNT)上接枝C_(60)-富勒烯建立的纳米杂化体的合成,表征和光学限制行为。在C_(60)不吸收的波长下研究了CNT-C_(60)络合物的非线性光学极限性质。我们发现,无论是单独使用还是混合使用,纳米杂化物都具有比CNT和富勒烯更好的性能。纳米杂化物的这种增强的光学限制不仅暗示了两种碳形式之间的协同作用,而且还暗示了协同作用。提出了通过低能激子的俄歇重组形成的碳纳米管的高激子态的机理。

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