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Core/shell-structured nickelitrogen-doped onion-like carbon nanocapsules with improved electromagnetic wave absorption properties

机译:具有改善的电磁波吸收特性的核/壳结构镍/氮掺杂洋葱状碳纳米胶囊

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Core/shell-structured nickelitrogen-doped onion-like carbon (Ni/(C, N)) nanocapsules are synthesized by a modified arc-discharge method using N2 gas as the source of N atoms. Core/shell-structured Ni/C nanocapsules are also prepared for comparison. The Ni/(C, N) nanocapsules with diameters of 10–80 nm exhibit a clear core/shell structure. The doping of N atoms introduces more lattice defects into the (C, N) shells and creates more disorderly C in the (C, N) shells. This leads to a slight shift in the dielectric resonance peak to the lower frequency side and an increase in the dielectric loss tangent for the Ni/(C, N) nanocapsules in comparison with the Ni/C nanocapsules. The magnetic permeability of both types of nanocapsules remains almost unaltered since the N atoms exist only in the (C, N) shells. The reflection loss (RL) of the Ni/(C, N) nanocapsules not only reaches a high value of -35 dB at 13.6 GHz, but also is generally improved in the low-frequency S and C microwave bands covering 2–8 GHz as a result of the N-doping-induced additional dipolar polarization and dielectric loss from the (C, N) shells.
机译:核/壳结构的镍/氮掺杂洋葱状碳(Ni /(C,N))纳米胶囊是通过使用N2气体作为N原子源的改进的电弧放电方法合成的。还制备了核/壳结构的Ni / C纳米胶囊用于比较。直径为10–80 nm的Ni /(C,N)纳米胶囊具有清晰的核/壳结构。 N原子的掺杂会在(C,N)壳层中引入更多的晶格缺陷,并在(C,N)壳层中产生更多的无序C。与Ni / C纳米胶囊相比,这导致Ni /(C,N)纳米胶囊的介电共振峰向低频侧的轻微偏移和介电损耗正切的增加。两种类型的纳米胶囊的磁导率几乎保持不变,因为N原子仅存在于(C,N)壳中。 Ni /(C,N)纳米胶囊的反射损耗(RL)不仅在13.6 GHz处达到-35 dB的高值,而且在覆盖2–8 GHz的低频S和C微波频带中通常也得到改善由于N掺杂引起了额外的偶极极化和(C,N)壳的介电损耗。

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