Mei Xiaokang, Lu Longsheng, Xie Yingxi, Yu Yu-Xiang, Tang Yong, Teh Kwok Siong
School of Mechanical & Automotive Engineering, South China University of Technology, 381#Wushan Road, Guangzhou 510641, China.
School of Chemistry and Chemical Engineering, South China University of Technology, 381#Wushan Road, Guangzhou 510641, China.
ACS Appl Mater Interfaces. 2020 Oct 28;12(43):49030-49041. doi: 10.1021/acsami.0c08868. Epub 2020 Oct 19.
In the 5G era, for portable electronics to operate at high performance and low power levels, the incorporation of superior electromagnetic interference (EMI) shielding materials within the packages is of critical importance. A desirable wearable EMI shielding material is one that is lightweight, structurally flexible, air-permeable, and able to self-clean. To this end, a bioinspired electroless silver plating strategy and a one-step electrodeposition method are utilized to prepare an EMI shielding fabric (CEF-NF/PDA/Ag/50-30) that possesses these desirable properties. Porous CEF-NF mats with a spatially distributed silver coating create efficient pathways for electron movement and enable a remarkable conductivity of 370 S mm. When tested within a frequency range of 8.2-12.4 GHz, this highly conductive fabric not only achieves an EMI shielding effectiveness (EMI SE of 101.27 dB at 5028 dB cm g) comparable to a very thin and light metal but also retains the unique properties of fabrics-being light, structurally flexible, and breathable. In addition, it exhibits a high contact angle (CA) of 156.4° with reversible surface wettability. After having been subjected to 1000 cycles of bending, the performance of the fabric only decreases minimally. This strategy potentially provides a novel way to design and manufacture an easily integrated EMI shielding fabric for flexible wearable devices.
在5G时代,为使便携式电子产品在高性能和低功耗水平下运行,在封装内加入优质的电磁干扰(EMI)屏蔽材料至关重要。理想的可穿戴EMI屏蔽材料应具备轻质、结构灵活、透气且能自清洁的特点。为此,采用一种仿生化学镀银策略和一步电沉积方法制备了一种具有这些理想特性的EMI屏蔽织物(CEF-NF/PDA/Ag/50-30)。具有空间分布银涂层的多孔CEF-NF垫为电子移动创造了高效路径,并实现了370 S mm的显著电导率。在8.2 - 12.4 GHz频率范围内测试时,这种高导电织物不仅实现了与极薄且轻的金属相当的电磁干扰屏蔽效能(在5028 dB cm g时EMI SE为101.27 dB),还保留了织物的独特特性——轻质、结构灵活且透气。此外,它具有156.4°的高接触角(CA),表面润湿性可逆。在经历1000次弯曲循环后,织物的性能仅略有下降。该策略可能为设计和制造用于柔性可穿戴设备的易于集成的EMI屏蔽织物提供一种新方法。