Wang Hanwei, Yao Qiufang, Wang Chao, Ma Zhongqing, Sun Qingfeng, Fan Bitao, Jin Chunde, Chen Yipeng
School of Engineering, Zhejiang Agriculture & Forestry University, Lin'an 311300, China.
Key Laboratory of Wood Science and Technology, Hangzhou 311300, China.
Nanomaterials (Basel). 2017 May 23;7(6):118. doi: 10.3390/nano7060118.
In this study, nanooctahedra MnFe₂O₄ were successfully deposited on a wood surface via a low hydrothermal treatment by hydrogen bonding interactions. As-prepared MnFe₂O₄/wood composite (MW) had superior performance of soft magnetism, fire resistance and electromagnetic wave absorption. Among them, small hysteresis loops and low coercivity (<±5 Oe) were observed in the magnetization-field curve of MW with saturation magnetization of 28.24 emu/g, indicating its excellent soft magnetism. The MW also exhibited a good fire-resistant property due to its initial burning time at 20 s; while only 6 s for the untreated wood (UW) in combustion experiments. Additionally, this composite revealed good electromagnetic wave absorption with a minimum reflection loss of -9.3 dB at 16.48 GHz. Therefore, the MW has great potential in the fields of special decoration and indoor electromagnetic wave absorbers.
在本研究中,通过氢键相互作用的低温水热法成功地将纳米八面体MnFe₂O₄沉积在木材表面。所制备的MnFe₂O₄/木材复合材料(MW)具有优异的软磁、耐火和电磁波吸收性能。其中,MW的磁化场曲线中观察到小的磁滞回线和低矫顽力(<±5 Oe),饱和磁化强度为28.24 emu/g,表明其具有优异的软磁性。MW由于其初始燃烧时间为20 s,也表现出良好的耐火性能;而在燃烧实验中未处理的木材(UW)仅为6 s。此外,该复合材料显示出良好的电磁波吸收性能,在16.48 GHz时最小反射损耗为-9.3 dB。因此,MW在特殊装饰和室内电磁波吸收器领域具有巨大潜力。