Gui Haoguan, Zhao Xiaonan, Zuo Shixiang, Liu Wenjie, Wang Chunyu, Xu Pei, Ding Yunsheng, Yao Chao
School of Petrochemical Engineering, Changzhou University, Changzhou 213164, China.
Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, Changzhou University, Changzhou 213164, China.
ACS Appl Mater Interfaces. 2023 Aug 23;15(33):39740-39751. doi: 10.1021/acsami.3c08176. Epub 2023 Aug 9.
Functional materials for electromagnetic interference (EMI) shielding are a consistently hot topic in the booming communication engineering, proceeding the development that tends to the multifunctional EMI shielding materials. Herein, a series of carbonized syndiotactic polystyrene/carbon nanotube/MXene (CsPS/CNT/MXene) hybrid aerogels were fabricated for EMI shielding and solar thermal energy conversion purposes. To fabricate the hybrid aerogels, a porous CNT/MXene framework was initially prepared using freeze-casting. Subsequently, sPS was infused into the porous structure, followed by hyper-cross-linking and carbonization of sPS under an inert atmosphere. The resulting aerogels exhibited a distinctive egg-box structure, comprising numerous nanofibrous carbon microspheres embedded within the lamellar framework. The mass ratio between CNT and MXene was regulated to identify an optimum aerogel, that is, the CCM-4-6, which exhibited impressive properties including Young's compression modulus of 0.67 MPa, a water contact angle of 137.6 ± 4.1°, a specific surface area of 110 m g, an electrical conductivity of 43.0 S m, and an EMI SE value of 40 dB. Meanwhile, phase-change composites were fabricated through encapsulating paraffin wax within the hybrid aerogels. For the CCM-4-6 aerogel, a noteworthy encapsulation ratio was achieved at about 76.7%, along with remarkable latent heat, good thermal reliability, and commendable solar thermal energy conversion capacity. This study presents a facile route to prepare multifunctional EMI shielding materials.
用于电磁干扰(EMI)屏蔽的功能材料在蓬勃发展的通信工程领域一直是热门话题,推动着向多功能EMI屏蔽材料的发展。在此,制备了一系列碳化间规聚苯乙烯/碳纳米管/碳化钛铝碳(CsPS/CNT/MXene)杂化气凝胶,用于EMI屏蔽和太阳能热转换。为了制备杂化气凝胶,首先采用冷冻铸造法制备了多孔CNT/MXene骨架。随后,将间规聚苯乙烯(sPS)注入多孔结构中,接着在惰性气氛下对sPS进行超交联和碳化。所得气凝胶呈现出独特的蛋盒结构,由嵌入层状骨架内的众多纳米纤维状碳微球组成。调节CNT与MXene之间的质量比以确定最佳气凝胶,即CCM-4-6,其表现出令人印象深刻的性能,包括杨氏压缩模量为0.67MPa、水接触角为137.6±4.1°、比表面积为110m²/g、电导率为43.0S/m以及EMI屏蔽效能(SE)值为40dB。同时,通过将石蜡封装在杂化气凝胶中来制备相变复合材料。对于CCM-4-6气凝胶,实现了约76.7%的显著封装率,同时具有显著的潜热、良好的热可靠性和值得称赞的太阳能热转换能力。本研究提出了一种制备多功能EMI屏蔽材料的简便方法。