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Magnetic nanoribbons with embedded cobalt grown inside single-walled carbon nanotubes

机译:与嵌入的钴磁nanoribbons增长在单壁碳纳米管

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Molecular magnetism and specifically magnetic molecules have recently gained plenty of attention as key elements for quantum technologies, information processing, and spintronics. Transition to the nanoscale and implementation of ordered structures with defined parameters is crucial for advanced applications. Single-walled carbon nanotubes (SWCNTs) provide natural one-dimensional confinement that can be implemented for encapsulation, nanosynthesis, and polymerization of molecules into nanoribbons. Recently, the formation of atomically precise graphene nanoribbons inside SWCNTs has been reported. However, there have been only a limited amount of approaches to form ordered magnetic structures inside the nanotube channels and the creation of magnetic nanoribbons is still lacking. In this work we synthesize and reveal the properties of cobalt-phthalocyanine based nanoribbons (CoPcNRs) encapsulated in SWCNTs. Raman spectroscopy, transmission electron microscopy, absorption spectroscopy, and density functional theory calculations allowed us to confirm the encapsulation and to reveal the specific fingerprints of CoPcNRs. The magnetic properties were studied by transverse magnetooptical Kerr effect measurements, which indicated a strong difference in comparison with the pristine unfilled SWCNTs due to the impact of Co incorporated atoms. We anticipate that this approach of polymerization of encapsulated magnetic molecules inside SWCNTs will result in a diverse class of protected low-dimensional ordered magnetic materials for various applications.
机译:分子磁学和磁性最近获得了大量的分子注意作为量子的关键元素技术、信息处理和自旋电子学。实现有序结构的定义高级应用程序的参数是至关重要的。单壁碳纳米管(SWCNTs)提供天然一维约束,可以实现封装、nanosynthesis和分子聚合成nanoribbons。最近,自动精确的形成石墨烯带的制作都在SWCNTs报道。量的方法形成有序的磁性内部结构和纳米通道建立磁nanoribbons仍在缺乏。基于cobalt-phthalocyanine的属性在SWCNTs nanoribbons (CoPcNRs)封装。拉曼光谱、透射电子显微镜、吸收光谱和密度功能允许我们理论计算确认封装和揭示特定的CoPcNRs指纹。研究了横向属性magnetooptical克尔效应测量,表示强烈的差异比较原始的空缺SWCNTs的影响公司注册的原子。方法聚合的封装磁分子SWCNTs将导致内部不同阶级的低维的保护要求对各种磁性材料应用程序。

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