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Proton irradiation effect on single-wall carbon nanotubes in a poly (3-octylthiophene) matrix

机译:质子辐照对聚(3-辛基噻吩)基体中单壁碳纳米管的影响

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Proton irradiation effects on interband transitions in single-wall carbon nanotubes matrixed in poly(3-octylthiophene) were investigated. The interband transitions were measured using an optical absorption technique. Two interband transitions were observed, at 0.71 and 1.28 eV in a sample that was subject to 2 MeV proton irradiation to fluences ranging between 5.0X10~(10) cm~(-2) and 5.6 X 10~(15) cm~(-2). The optical absorption spectra were collected after cooling the sample to 10 K. The total integrated areas of the two transitions were monitored as a function of proton fluence. The results indicate that proton irradiation to fluences as high as 5.6 X 10~(15) cm~(-2) has little effect on the interband transitions in carbon nanotubes. However, small radiation-related degradation has been observed as judged by the broadening of the interband transition spectra and by the reduction of the radial breathing mode intensity observed by Raman scattering.
机译:研究了质子辐照对聚(3-辛基噻吩)中单壁碳纳米管中带间跃迁的影响。使用光学吸收技术测量带间跃迁。在经过2 MeV质子辐照的样品中,观察到两个带间跃迁,分别为0.71和1.28 eV,注量范围为5.0X10〜(10)cm〜(-2)和5.6 X 10〜(15)cm〜(- 2)。将样品冷却至10 K后收集光吸收光谱。监测两个跃迁的总积分面积与质子通量的关系。结果表明,质子辐照通量高达5.6 X 10〜(15)cm〜(-2)对碳纳米管的带间跃迁几乎没有影响。然而,通过带间过渡光谱的加宽和通过拉曼散射观察到的径向呼吸模式强度的降低,可以判断出与辐射有关的微小降解。

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