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The synthesis of high coercivity cobalt-in-carbon nanotube hybrid structures and their optical limiting properties

机译:高矫顽力钴碳纳米管杂化结构的合成及其光学极限性质

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Magnetic heterostructures with carbon nanotubes having multiple functionalities are fascinating materials which can be manipulated by means of an external magnetic field. In this paper we report our investigations on the synthesis and optical limiting properties of pristine cobalt nanotubes and high coercivity cobalt-in-carbon nanotubes (a new nanosystem where carbon nanotubes are filled with cobalt nanotubes). A general mobility assisted growth mechanism for the formation of one-dimensional nanostructures inside nanopores is verified in the case of carbon nanotubes. The open-aperture z-scan technique is employed for the optical limiting measurements in which nanosecond laser pulses at 532 nm have been used for optical excitation. Compared to the benchmark pristine carbon nanotubes these materials show an enhanced nonlinear optical absorption, and the nonlinear optical parameters calculated from the data show that these materials are efficient optical limiters. To the best of our knowledge this is the first report where the optical limiting properties of metal nanotubes are compared to those of carbon nanotubes.
机译:具有多种功能的碳纳米管的磁性异质结构是令人着迷的材料,可以通过外部磁场对其进行操作。在本文中,我们报告了我们对原始钴纳米管和高矫顽力钴-碳-碳纳米管(碳纳米管充满钴纳米管的新纳米系统)的合成和光学极限性质的研究。在碳纳米管的情况下,验证了用于在纳米孔内部形成一维纳米结构的一般迁移率辅助生长机制。开孔z扫描技术用于光学极限测量,其中已将532 nm的纳秒激光脉冲用于光学激发。与基准原始碳纳米管相比,这些材料显示出增强的非线性光学吸收,并且根据数据计算出的非线性光学参数表明,这些材料是有效的光学限制剂。据我们所知,这是第一份报告,其中将金属纳米管的光学极限特性与碳纳米管的光学极限特性进行了比较。

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