Wang Jin, Wu Wangjun, Zhang Wenfu, Zhao Ying, Wang Hongyan, Yuan Shaofei, Zhang Jian
Key Laboratory of Bamboo Research of Zhejiang Province, Zhejiang Academy of Forestry, Hangzhou 310023, China.
College of Chemistry and Materials Engineering, Zhejiang Agricultural and Forestry University, Hangzhou 311300, China.
Polymers (Basel). 2024 Dec 31;17(1):78. doi: 10.3390/polym17010078.
Bamboo was carbonized and further modified via co-doping with graphene oxide (GO) and polyaniline (PANI) to prepare microwave absorption composites (GO/PANI/CB) by in situ polymerization of 1R-(-)-Camphorsulfonic acid (L-CSA). The conductivity of GO/PANI/CB reached 2.17 ± 0.05 S/cm under the optimized process conditions. The oxygen-containing group of GO reacts with PANI to form hydrogen bonds and thus polymerize. The GO and PANI particles covered the carbonized bamboo (CB) surface in a disordered aggregation form. Based on the measuring method of the vector network analyzer (VNA), the microwave-absorption performance of GO/PANI/CB was investigated. With 30% addition of GO/PANI/CB, the minimum reflection loss (RL) at 7.12 GHz with a thickness of 3.5 mm of samples reached -49.83 dB. The effective absorption bandwidth (<-10 dB) is as high as 4.72 GHz with a frequency range of 11.68-16.40 GHz and a thickness of 2 mm. Compared with many PANI based electromagnetic wave absorbing materials reported in recent years, GO/PANI/CB provides improved microwave-absorption performance while maintaining high absorption bandwidth. GO/PANI/CB exhibited the advantages of simple preparation, low cost, renewability, light texture, thinness, wide absorption bandwidth, and strong absorption ability, and can be used for new microwave absorption materials.
竹子经过碳化处理,并通过与氧化石墨烯(GO)和聚苯胺(PANI)共掺杂进一步改性,采用1R-(-)-樟脑磺酸(L-CSA)原位聚合法制备微波吸收复合材料(GO/PANI/CB)。在优化的工艺条件下,GO/PANI/CB的电导率达到2.17±0.05 S/cm。GO的含氧基团与PANI反应形成氢键从而发生聚合。GO和PANI颗粒以无序聚集的形式覆盖在碳化竹子(CB)表面。基于矢量网络分析仪(VNA)的测量方法,对GO/PANI/CB的微波吸收性能进行了研究。当添加30%的GO/PANI/CB时,厚度为3.5 mm的样品在7.12 GHz处的最小反射损耗(RL)达到-49.83 dB。在频率范围为11.68 - 16.40 GHz、厚度为2 mm时,有效吸收带宽(<-10 dB)高达4.72 GHz。与近年来报道的许多基于PANI的电磁波吸收材料相比,GO/PANI/CB在保持高吸收带宽的同时,微波吸收性能得到了改善。GO/PANI/CB具有制备简单、成本低、可再生、质地轻、薄、吸收带宽宽和吸收能力强等优点,可用于新型微波吸收材料。