Encapsulation of single-molecule magnets in carbon nanotubes

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作者
Maria del Carmen Giménez-López
Fabrizio Moro
Alessandro La Torre
Carlos J. Gómez-García
Paul D. Brown
Joris van Slageren
Andrei N. Khlobystov
机构
[1] School of Chemistry,Division of Materials, Department of Mechanical
[2] University of Nottingham,undefined
[3] University Park,undefined
[4] Instituto de Ciencia Molecular,undefined
[5] Universidad de Valencia,undefined
[6] Parque Científico,undefined
[7] Mechanics and Structures,undefined
[8] Materials and Manufacturing Engineering,undefined
[9] Faculty of Engineering,undefined
[10] University of Nottingham,undefined
[11] University Park,undefined
[12] Present address: Institut für Physikalische Chemie,undefined
[13] Pfaffenwaldring 55,undefined
[14] D-70569 Stuttgart,undefined
[15] Germany.,undefined
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摘要
Next-generation electronic, photonic or spintronic devices will be based on nanoscale functional units, such as quantum dots, isolated spin centres or single-molecule magnets. The key challenge is the coupling of the nanoscale units to the macroscopic world, which is essential for read and write purposes. Carbon nanotubes with one macroscopic and two nanoscopic dimensions provide an excellent means to achieve this coupling. Although the dimensions of nanotube internal cavities are suitable for hosting a wide range of different molecules, to our knowledge, no examples of molecular magnets inserted in nanotubes have been reported to date. Here we report the successful encapsulation of single-molecule magnets in carbon nanotubes, yielding a new type of hybrid nanostructure that combines all the key single-molecule magnet properties of the guest molecules with the functional properties of the host nanotube. The findings may pave the way to the construction of spintronic or ultrahigh-density magnetic data storage devices.
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