Liang Chaobo, Ruan Kunpeng, Zhang Yali, Gu Junwei
Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, P. R. China.
ACS Appl Mater Interfaces. 2020 Apr 15;12(15):18023-18031. doi: 10.1021/acsami.0c04482. Epub 2020 Apr 2.
Flexible electromagnetic interference (EMI) shielding materials with excellent thermal conductivities and Joule heating performances are of urgent demand in the communication industry, artificial intelligence, and wearable electronics. In this work, highly conductive silver nanowires (AgNWs) were prepared using the polyol method. Cellulose sheets were then prepared by dissolving natural cotton in a green and efficient NaOH/urea aqueous solution. Finally, multifunctional flexible EMI shielding AgNWs/cellulose films were fabricated based on vacuum-assisted filtration and hot-pressing. AgNWs are evenly embedded in the inner cellulose matrix and overlap with each other to form a 3D network. AgNWs/cellulose films, with a thickness of 44.5 μm, obtain the superior EMI shielding effectiveness of 101 dB, which is the highest value ever reported for shielding materials with the same thickness. In addition, AgNWs/cellulose films present excellent tensile strength (60.7 MPa) and tensile modulus (3.35 GPa), ultrahigh electrical conductivity (σ, 5571 S/cm), and excellent in-plane thermal conductivity coefficient (λ, 10.55 W/mK), which can effectively dissipate the heat accumulation. Interestingly, AgNWs/cellulose films also show outstanding Joule heating performances, good stability, and sensitive temperature response at driving voltages, absolutely safe for the human body. Therefore, our fabricated multifunctional flexible AgNWs/cellulose films have broad prospects in the fields of EMI shielding and protection of outdoor large-scale power transformers and wearable electronics.
具有优异热导率和焦耳热性能的柔性电磁干扰(EMI)屏蔽材料在通信行业、人工智能和可穿戴电子领域有着迫切需求。在这项工作中,采用多元醇法制备了高导电性的银纳米线(AgNWs)。然后将天然棉花溶解在绿色高效的NaOH/尿素水溶液中制备纤维素片材。最后,基于真空辅助过滤和热压制备了多功能柔性EMI屏蔽AgNWs/纤维素薄膜。AgNWs均匀地嵌入内部纤维素基质中并相互重叠形成三维网络。厚度为44.5μm的AgNWs/纤维素薄膜具有101dB的优异EMI屏蔽效能,这是相同厚度屏蔽材料所报道的最高值。此外,AgNWs/纤维素薄膜具有优异的拉伸强度(60.7MPa)和拉伸模量(3.35GPa)、超高电导率(σ,5571S/cm)以及优异的面内热导率系数(λ,10.55W/mK),能够有效消散热量积累。有趣的是,AgNWs/纤维素薄膜还表现出出色的焦耳热性能、良好的稳定性以及在驱动电压下敏感的温度响应,对人体绝对安全。因此,我们制备的多功能柔性AgNWs/纤维素薄膜在EMI屏蔽以及户外大型电力变压器和可穿戴电子设备的防护领域具有广阔前景。