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超轻、柔韧、仿生机纳米纤维素/银纳米线气凝胶用于电磁干扰屏蔽。

Ultralight, Flexible, and Biomimetic Nanocellulose/Silver Nanowire Aerogels for Electromagnetic Interference Shielding.

机构信息

Laboratory for Cellulose & Wood Materials, Swiss Federal Laboratories for Materials Science and Technology (Empa), 8600 Dübendorf, Switzerland.

Department of Information Technology and Electrical Engineering, Swiss Federal Institute of Technology in Zurich (ETH Zürich), 8092 Zürich, Switzerland.

出版信息

ACS Nano. 2020 Mar 24;14(3):2927-2938. doi: 10.1021/acsnano.9b07452. Epub 2020 Mar 4.

Abstract

Ultralight and highly flexible biopolymer aerogels, composed of biomimetic cellular microstructures formed from cellulose nanofibers and silver nanowires, are assembled a convenient and facile freeze-casting method. The lamellar, honeycomb-like, and random porous scaffolds are successfully achieved by adjusting freezing approaches to modulate the relationships between microstructures and macroscopic mechanical and electromagnetic interference (EMI) shielding performances. Combining the shielding transformation arising from compression and the controlled content of building units, the optimized lamellar porous biopolymer aerogels can show a very high EMI shielding effectiveness (SE), which exceeds 70 or 40 dB in the X-band while the density is merely 6.2 or 1.7 mg/cm, respectively. The corresponding normalized surface specific SE (defined as the SE divided by the material density and thickness) is up to 178235 dB·cm/g, far surpassing that of the so-far reported shielding materials. Antibacterial properties and hydrophobicity are also demonstrated extending the versatility and application potential of the biopolymer hybrid aerogels.

摘要

超轻、高柔韧的生物聚合物气凝胶由仿生细胞微结构组成,这些微结构由纤维素纳米纤维和银纳米线形成,通过一种方便、简单的冷冻铸造方法进行组装。通过调整冷冻方法来调节微观结构与宏观机械和电磁干扰(EMI)屏蔽性能之间的关系,成功地实现了层状、蜂窝状和随机多孔支架。通过结合压缩引起的屏蔽转换和构建单元的受控含量,优化的层状多孔生物聚合物气凝胶可以表现出非常高的 EMI 屏蔽效能(SE),在 X 波段下超过 70 或 40 dB,而密度仅分别为 6.2 或 1.7 mg/cm。相应的归一化比表面 SE(定义为 SE 除以材料密度和厚度)高达 178235 dB·cm/g,远远超过迄今为止报道的屏蔽材料。还展示了抗菌性能和疏水性,从而扩展了生物聚合物杂化气凝胶的多功能性和应用潜力。

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