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Ionic Conductive Gels for Optically Manipulatable Microwave Stealth Structures

机译:用于光学可操纵的微波隐身结构的离子导电凝胶

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摘要

Smart structures with manipulatable properties are highly demanded in many fields. However, there is a critical challenge in the pursuit of transparent windows that allow optical waves (wavelength of µm–nm) for transmitting while blocking microwave (wavelength of cm) in terms of absorbing electromagnetic energy, specifically for meeting the frequency requirement for the 5th generation (5G) mobile networks. For fundamentally establishing novel manipulatable microwave absorbing structures, here, new polymeric aqueous gels as both optically transparent materials and microwave absorbing materials are demonstrated, in which polar networks play significant roles in attenuating electromagnetic energy. By manipulating the hydrogen bonding networks, the resulting optically transparent solid‐state gels are able to offer the capabilities for absorbing microwaves. Interestingly, such gels can be switched into an optically opaque state via converting the amorphous state into a polycrystal state when the temperature is decreased. Such ionic conductive gels can endow the assembled sandwich windows with effective microwave absorbing capability in the range of 15–40 GHz, covering a branch of 5G frequency bands. The results highlight a new strategy for using ionic conductive gels to design and fabricate manipulatable microwave stealth structures for various applications.
机译:在许多领域中,对具有可操纵特性的智能结构的要求很高。但是,在追求透明窗口方面存在一个严峻的挑战,即在吸收电磁能量方面,允许光波(波长为µm–nm)传输同时阻止微波(cm波长)传输,尤其是要满足第五次频率要求代(5G)移动网络。为了从根本上建立新型可操纵的微波吸收结构,这里展示了新型的聚合物水凝胶,既是光学透明材料又是微波吸收材料,其中极性网络在衰减电磁能方面起着重要作用。通过操纵氢键网络,所得的光学透明固态凝胶能够提供吸收微波的能力。有趣的是,当温度降低时,可通过将非晶态转变成多晶态而将这种凝胶转变成不透光态。这种离子导电胶可以使组装好的夹层窗具有有效的微波吸收能力,覆盖范围为5G频带,在15–40 GHz范围内有效。结果突出了使用离子导电胶设计和制造可用于各种应用的可操纵微波隐身结构的新策略。

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