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轻质宽频导电高分子微波吸收材料研究 被引量:4
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作者 方鲲 毛卫民 +3 位作者 冯惠平 潘成 周志彪 郭志猛 《安全与电磁兼容》 2005年第2期49-51,共3页
导电高分子材料(PA、PAn、PPy、PTh、PPV等)具有分子结构可设计、成本低、易合成、加工方便,同时又具有对不同频率的微波产生吸收,且吸收频段宽、比重轻(密度:1.0~2.0g/cm3)、热稳定性好等特点,有望发展成为新型宽频有机吸波材料[1]。... 导电高分子材料(PA、PAn、PPy、PTh、PPV等)具有分子结构可设计、成本低、易合成、加工方便,同时又具有对不同频率的微波产生吸收,且吸收频段宽、比重轻(密度:1.0~2.0g/cm3)、热稳定性好等特点,有望发展成为新型宽频有机吸波材料[1]。文章对导电高分子微波吸收材料的吸波原理、分类和制备方法及近期国内外研究进展进行了介绍。 展开更多
关键词 宽频 导电高分子微材料 研究 分子结构 热稳定性 有机吸波材料
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Highly efficient and broad electromagnetic wave absorbers tuned via topology-controllable metal-organic frameworks 被引量:5
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作者 Peng Miao Jianxin Chen +2 位作者 Yusheng Tang Kai-Jie Chen Jie Kong 《Science China Materials》 SCIE EI CSCD 2020年第10期2050-2061,共12页
Advanced electromagnetic(EM)wave absorbing materials with strong absorption and broad bandwidth are important for military stealth and elimination of microwave pollution in consumers’electronics.Metal organic framewo... Advanced electromagnetic(EM)wave absorbing materials with strong absorption and broad bandwidth are important for military stealth and elimination of microwave pollution in consumers’electronics.Metal organic framework(MOF)-derived metal/carbon hybrids with ordered structure are significantly urgent in this field.In this contribution,we presented a design strategy of hollow cage-like or solid box-like magnetic/dielectric Fe/Co/C and dielectric Fe/Mn/C EM wave absorbing nanomaterials via pyrolyzing Prussian blue’s analogs with controllable topology and phase composition.The solid box-like Fe/Co/C and hollow cage-like Fe/Mn/C showed favorable absorption property with a broad effective absorption bandwidth(EAB)and a low reflection loss(RL).Especially,the EAB of 8.8 GHz at a thickness of 2.5 mm for solid box-like Fe/Co/C nanocomplex prepared at 900℃is a new record for this type of materials.The design and tuning strategy for EM wave absorbers derived from topology-controllable MOF is important for EM functional materials possessing great potential in military stealth and consumers’electronics. 展开更多
关键词 electromagnetic wave absorber MOF Prussian blue's analogs TOPOLOGY PYROLYSIS
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