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Constructing Uniform Core-Shell PPy@PANI Composites with Tunable Shell Thickness toward Enhancement in Microwave Absorption

机译:构建具有可调壳厚度以增强微波吸收的均匀核壳PPy @ PANI复合材料

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Highly uniform core- shell composites, polypyrrole@polyaniline (PPy@PANI), have been successfully constructed by directing the polymerization of aniline on the surface of PPy microspheres. The thickness of PANI shells, from 30 to 120 nm, can be well controlled by modulating the weight ratio of aniline and PPy microspheres. PPy microspheres with abundant carbonyl groups have very strong affinity to the conjugated chains of PANI, which is responsible for the spontaneous formation of uniform core shell microstructures. However, the strong affinity between PPy microspheres and PANI shells does not promote the diffusion or reassembly of two kinds of conjugated chains. Coating PPy microspheres with PANT shells increases the complex permittivity and creates the mechanism of interfacial polarization, where the latter plays an important role in increasing the dielectric loss of PPy@PANI composites. With a proper thickness of PANI shells, the moderate dielectric loss will produce well matched characteristic impedance, so that the microwave absorption properties of these composites can be greatly enhanced. Although PPy@PANI composites herein consume the incident electromagnetic wave by absolute dielectric loss, their performances are still superior or comparable to most PANI-based composites ever reported, indicating that they can be taken as a new kind of promising lightweight microwave absorbers. More importantly, microwave absorption of PPy@PANI composites can be simply modulated not only by the thickness of the absorbers, but also the shell thickness to satisfy the applications in different frequency bands.
机译:通过将苯胺在PPy微球表面上的聚合反应成功地构建了高度均匀的核壳复合材料,即聚吡咯@聚苯胺(PPy @ PANI)。通过调节苯胺和PPy微球的重量比,可以很好地控制PANI壳的厚度(从30到120 nm)。具有丰富羰基的PPy微球对PANI的共轭链具有非常强的亲和力,这是自发形成均匀核壳微结构的原因。但是,PPy微球与PANI壳之间的强亲和力不会促进两种共轭链的扩散或重组。用PANT壳包覆PPy微球会增加复介电常数并产生界面极化机制,后者在增加PPy @ PANI复合材料的介电损耗中起着重要作用。使用适当厚度的PANI外壳,适度的介电损耗将产生匹配良好的特性阻抗,从而可以大大增强这些复合材料的微波吸收性能。尽管此处的PPy @ PANI复合材料由于绝对介电损耗而消耗了入射电磁波,但它们的性能仍优于或超过以往报道的大多数基于PANI的复合材料,这表明它们可以被视为一种新型的有前途的轻质微波吸收剂。更重要的是,不仅可以通过吸收体的厚度来调节PPy @ PANI复合材料的微波吸收率,而且可以通过壳厚度来简单地调节其吸收率,以满足不同频段的应用。

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