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首页> 外文期刊>ACS nano >Alignment of tellurium nanorods via a magnetization-alignment- demagnetization ('MAD') process assisted by an external magnetic field
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Alignment of tellurium nanorods via a magnetization-alignment- demagnetization ('MAD') process assisted by an external magnetic field

机译:通过外部磁场辅助的磁化-对准-消磁(“ MAD”)过程对准碲纳米棒

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Tellurium (Te) nanorods have been successfully aligned on a solid substrate via a magnetization-alignment-demagnetization ("MAD") process in the presence of an external magnetic field. Te nanorods carrying a poly(tert-butyl methacrylate) shell were first converted into magnetic nanocylinders by assembling magnetite nanoparticles on their surface via a hydrophobic interaction in THF. We demonstrate that, below a critical concentration of the nanoparticles, this assembly process is able to quantitatively tune the magnetite nanoparticles' density on the nanorods in terms of their stoichiometric ratio. Due to the polymer and surfactant on their surface, the formed magnetic nanocylinders are soluble in THF and aligned when dried on a solid substrate in the presence of an external magnetic field. The demagnetization of the prealigned nanocylinders was achieved via an acid-etching process, leaving Te nanorods in an aligned state. This MAD process can be extended as a general procedure for other nonmagnetic 1-D nanostructures. Additionally, the nonetched magnetic nanocylinders can be potentially applied in field of magnetorheology.
机译:碲(Te)纳米棒已经在存在外部磁场的情况下通过磁化-对准-消磁(“ MAD”)过程成功地对准了固态衬底。首先,通过在THF中通过疏水作用将磁铁矿纳米颗粒组装在其表面上,将带有聚甲基丙烯酸叔丁酯壳的Te纳米棒转变成磁性纳米圆柱体。我们证明,在纳米颗粒的临界浓度以下,该组装过程能够根据其化学计量比定量地调节纳米棒上磁铁矿纳米颗粒的密度。由于其表面上的聚合物和表面活性剂,形成的磁性纳米圆柱体可溶于THF,并在存在外部磁场的情况下在固体基材上干燥后对齐。通过酸蚀刻工艺实现了预对准纳米圆柱体的消磁,而使Te纳米棒保持对准状态。此MAD过程可以扩展为其他非磁性1-D纳米结构的一般过程。另外,未蚀刻的磁性纳米圆柱体可以潜在地应用于磁流变学领域。

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