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Multilayer-Structured Wood Electroless Cu–Ni Composite Coatings for Electromagnetic Interference Shielding

机译:用于电磁干扰屏蔽的多层结构木化学无电镀Cu-Ni复合涂层

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The lightweight multilayer-structured electromagnetic interference shielding composite coatings with controllable electromagnetic gradient on wood surface were prepared via a simple multiple electroless copper–nickel (Cu–Ni) approach. The surface morphology, conductivity, hydrophobicity property and electromagnetic shielding effectiveness of the composite coatings were investigated. The surface roughness and conductivity of the composite coatings were enhanced with the increase in the number of depositions. The surface morphology demonstrated that the roughness was decreased with the process of multiple electroless. The coatings were compact and homogeneous as the deposition run was three. Here, the Sa (Sa illustrated Surface Roughness) value of coatings was 4.497 μm. The ideal conductivity of composite coatings can be obtained as the number of depositions was four. Electromagnetic shielding effectiveness reached average 90.69 dB in the frequency range from 300 kHz to 2.0 GHz. This study provides a new pathway for fabricating lightweight multilayer-structured electromagnetic interference shielding with controllable electromagnetic gradient and hydrophobic composite coatings-based wood.
机译:通过简单的多种无电铜镍(Cu-Ni)方法制备具有可控电磁梯度的轻质多层结构的电磁干扰屏蔽复合涂层。研究了复合涂料的表面形态,电导率,疏水性性和电磁屏蔽效果。随着沉积次数的增加,增强了复合涂层的表面粗糙度和导电性。表面形态表明,随着多种无电的过程降低了粗糙度。涂层紧凑且均匀,因为沉积运行是三个。这里,涂层的SA(SA图示的表面粗糙度)值为4.497μm。随着沉积的数量为4,可以获得复合涂层的理想导电性。电磁屏蔽有效性平均达到90.69 dB,频率范围为300 kHz至2.0 GHz。该研究提供了一种新的途径,用于制造具有可控电磁梯度和疏水复合涂料的木材的轻质多层结构的电磁干扰屏蔽。

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