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首页> 外文期刊>Nanoscale >Tailoring Ti3C2Tx nanosheets to tune local conductive network as an environmentally friendly material for highly efficient electromagnetic interference shielding
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Tailoring Ti3C2Tx nanosheets to tune local conductive network as an environmentally friendly material for highly efficient electromagnetic interference shielding

机译:裁剪Ti3C2Tx nanosheets调整当地作为一种环境友好型导电网络为高效的电磁材料干扰屏蔽

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摘要

Environmentally friendly materials that exhibit high-performance electromagnetic interference (EMI) shielding are extremely necessary. Herein, we fabricated ultrathin Ti3C2Tx (U-Ti3C2Tx) MXene nanosheets (NS) by atomic-layer tailoring the layer thickness of Ti3C2Tx MXene. The U-Ti3C2Tx NS composites with highly efficient EMI shielding effectiveness can reduce secondary reflection, demonstrating its environmentally friendly performance. The U-Ti3C2Tx NS composite with 80 wt% loading exhibits an EMI shielding effectiveness of 58.1 dB at a thickness of 1 mm. Shielding performance analysis of different layer thicknesses shows that electron transport has an important contribution to the EMI shielding performance. Furthermore, the polarization induced by defects and terminal atoms plays an important role in the EMI shielding performance. Based on the electromagnetic (EM) wave response mechanism, a novel approach to effectively tune the EMI attenuation and shielding effectiveness can be achieved by adjusting the local conductive network. These findings will offer an effective strategy for designing environmentally friendly 2D materials with high-performance EMI shielding.
机译:环境友好材料展览高性能的电磁干扰(EMI)保护是非常必要的。我们制作超薄Ti3C2Tx MXene (U-Ti3C2Tx)nanosheets (NS)通过原子层裁剪层的厚度Ti3C2Tx MXene。NS和高效的EMI屏蔽复合材料效果可以减少二次反射,证明其环保的性能。wt %加载展品EMI屏蔽58.1 dB的有效性在1毫米的厚度。不同层的屏蔽性能分析厚度显示电子传递的重要贡献EMI屏蔽的性能。引起的缺陷和终端原子扮演重要的角色在EMI屏蔽性能。基于电磁(EM)波响应机制,有效地优化的新方法EMI衰减和屏蔽效能可以通过调整当地导电吗网络。环保设计的策略2 d与高性能EMI屏蔽材料。

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