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Enhanced microwave absorption properties of graphite nanoflakes by coating hexagonal boron nitride nanocrystals

机译:通过涂覆六方氮化硼纳米晶体增强石墨纳米薄片的微波吸收性能

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摘要

We report herein the synthesis of a novel hexagonal boron nitride nanocrystal/graphite nanoflake (h-BNNC/GNF) composite through a wet-chemistry coating of graphite nanoflakes and subsequent in-situ thermal treatment process. The characterization results of X-ray diffraction, scanning electron microscope, transmission electron microscope, energy dispersive X-ray spectrum, and X-ray photoelectron spectroscopy demonstrate that h-BNNCs with diameter of tens of nanometers are highly crystallized and anchored on the surfaces of graphite nanoflakes without obvious aggregation. The minimum reflection loss (RL) value of the h-BNNC/GNF based absorbers could reach −32.38dB (>99.99% attenuation) with the absorber thickness of 2.0mm. This result is superior to the other graphite based and some dielectric loss microwave absorption materials recently reported. Moreover, the frequency range where the RL is less than −10dB is 3.49-17.28GHz with the corresponding thickness of 5.0 to 1.5mm. This reveals a better electromagnetic microwave absorption performance of h-BNNC/GNFs from the X-band to the Ku-band. The remarkable enhancement of the electromagnetic microwave absorption properties of h-BNNC/GNFs can be assigned to the increase of multiple scattering, interface polarization as well as the improvement of the electromagnetic impedance matching of graphite nanoflakes after being coated with h-BNNCs.
机译:我们在本文中通过湿化化学涂层和随后的原位热处理过程合成新型六方氮化硼纳米晶/石墨纳米辊(H-BNNC / GNF)复合材料。 X射线衍射,扫描电子显微镜,透射电子显微镜,能量分散X射线光谱和X射线光电子能谱的表征结果表明,具有数十纳米直径的H-BNNC高度结晶和锚定在表面上石墨纳米薄片没有明显的聚集。 H-BNNC / GNF基极吸收剂的最小反射损耗(RL)值可达到-32.38dB(> 99.99%衰减),吸收器厚度为2.0mm。该结果优于其他基于石墨,最近报道的一些介电损耗微波吸收材料。此外,RL小于-10dB的频率范围为3.49-17.28GHz,相应的厚度为5.0至1.5mm。这揭示了H-BNNC / GNFS的更好的电磁微波吸收性能从X波段到KU波段。可以分配H-BNNC / GNFS的电磁微波吸收性能的显着提高,可以分配多种散射,界面偏振的增加以及石墨纳米薄膜在涂覆H-BNNC后的电磁阻抗匹配的提高。

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