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The influence of gradient and porous configurations on the microwave absorbing performance of multilayered graphene/thermoplastic polyurethane composite foams

机译:梯度和多孔结构对多层石墨烯/热塑性聚氨酯复合泡沫材料微波吸收性能的影响

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Single-layer graphene/TPU composite foams with different graphene content were prepared through a thermally induced phase separation (TIPS) process. Multilayer graphene/TPU composite foams were fabricated by bonding single-layer foams together. The arrangement of single-layer graphene/TPU composite foams in different orders could realize a gradient distribution of the graphene to endow the multilayer foams with good impedance matching characteristics. Facile regulation of the effective absorption bandwidth (EB) value and minimum reflection loss (RL _(min) ) have been realized by adjusting the thickness and layer number or altering the combinatorial mode of single-layer foams with different graphene contents to endow these multilayered composite foams with optimal microwave-absorbing (MA) properties. In addition, the mechanism of microwave dissipation by gradient multilayers and porous structures has been elucidated. The EB values of the multilayer foams were all wider than those of their corresponding single-layer foams with the same graphene content and multilayer foams displayed much lower RL _(min) than single-layer foams. Among all the multilayer foams, 2L graphene/TPU composite foams with a thickness of 5 mm exhibit the widest EB value of 9.9 GHz and the lower RL _(min) (?36.7 dB) while 5L graphene/TPU composite foams with a thickness of only 2.5 mm show the lowest RL _(min) of ?43.7 dB and wider EB values (5.3 GHz).
机译:通过热诱导相分离(TIPS)工艺制备了具有不同石墨烯含量的单层石墨烯/ TPU复合泡沫。多层石墨烯/ TPU复合泡沫是通过将单层泡沫粘合在一起而制成的。单层石墨烯/ TPU复合泡沫的排列顺序不同可以实现石墨烯的梯度分布,使多层泡沫具有良好的阻抗匹配特性。通过调节厚度和层数或改变具有不同石墨烯含量的单层泡沫的组合模式,可以实现对有效吸收带宽(EB)值和最小反射损失(RL _(min))的轻松调节。具有最佳微波吸收(MA)性能的复合泡沫。另外,已经阐明了通过梯度多层和多孔结构消散微波的机理。多层泡沫的EB值均比具有相同石墨烯含量的相应单层泡沫的EB值宽,并且多层泡沫的RL_(min)比单层泡沫低得多。在所有多层泡沫中,厚度为5 mm的2L石墨烯/ TPU复合泡沫表现出最宽的EB值9.9 GHz和更低的RL_(min)(?36.7 dB),而厚度为5mm的5L石墨烯/ TPU复合泡沫只有2.5 mm的RL_(min)最低,约为43.7 dB,EB值更宽(5.3 GHz)。

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