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Metal nanoparticle fluids with magnetically induced electrical switching properties

机译:金属纳米颗粒和磁性液体诱导电气开关特性

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We report the successful preparation of solvent-free metal nanoparticle (NP) fluids with multiple-functionalities, such as rheological properties, magnetism, ionic conductivity, and electrical properties, allowing for facile synthesis and mass production. The gold nanoparticles (Au_(NPs)) used in this study were synthesized using tetraoctylammonium bromide (TOABr) in toluene and then directly phase-transferred to solvent-free low-molecular-weight (M_w) imidazolium-type ionic liquid media containing thiol groups (i.e., IL-SH). Magnetic metal fluids (i.e., MIL-SH-Au_(Nps)) were prepared by the addition of FeCI3 powder to metal fluids (i.e., IL-SH-Au_(NPs)). These fluids showed relatively high ionic and electrical conductivities compared with those of conventional metal NP fluids based on organic ILs with high M_w. Furthermore, it was demonstrated that these fluids could be used as electric switches operated using an external magnetic field in organic media.
机译:我们报告的成功制备无溶剂金属纳米粒子(NP)的液体多种机能,如流变属性、磁性离子电导率电气性能,允许轻率合成和大规模生产。纳米颗粒(Au_ (NPs))用于本研究使用tetraoctylammonium合成溴化在甲苯(TOABr),然后直接化,无溶剂低分子量(M_w) imidazolium-type离子液体媒体含有硫醇团体(例如,IL-SH)。MIL-SH-Au_ (Nps))的准备FeCI3粉末金属液体(例如,IL-SH-Au_ (NPs))。离子和电子导率比较高与传统的金属基于NP的液体有机与高M_w盲降。这些液体可以作为证明使用一个外部电气开关操作在媒体有机磁场。

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