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一石二鸟:二氧化锡/石墨烯电磁波吸收材料的双调控界面极化与散射损耗

Two Birds with One Stone: Dual-Regulation Interfacial Polarization and Scattering Loss of Tin Dioxide/Graphene Electromagnetic Wave Absorbing Materials.

作者信息

Wang Longxin, Zhang Xueqian, Wang Yao, Liu Dongdong, Zhang Xuji, Wen Guangwu, Wang Yishan, Huang Xiaoxiao

机构信息

School of Materials Science and Engineering, Shandong University of Technology, Zibo 255000, China.

School of Materials Science and Engineering, Harbin Institute of Technology, Weihai 264209, China.

出版信息

Langmuir. 2025 Jul 8;41(26):17035-17046. doi: 10.1021/acs.langmuir.5c01293. Epub 2025 Jun 25.

DOI:10.1021/acs.langmuir.5c01293
PMID:40566841
Abstract

Tin dioxide (SnO) is an n-type semiconductor with strong dielectric properties and a unique electromagnetic loss mechanism. Therefore, a "kill two birds with one stone" strategy was used to improve the wave-absorbing properties of the material. The first one stone refers to the construction of tin dioxide/reduced graphene oxide composites by varying the ratio, thus modulating the two wave-absorbing mechanisms of the material (two birds: polarization loss and scattering loss). Morphological characterization showed that the prepared SnO/RGO composites had a unique embedding distribution and porous network structure consisting of tin oxide nanoparticles adorned on the wrinkled surfaces of flaky RGO. Optimal tuning of the graphene concentration leads to a significant rise in the number of interfaces, both within the graphene layers and at the boundary between graphene and tin dioxide (SnO), within the material. The interfaces not only enhance the polarization effect but also lead to an increase in the scattering and reflection paths of electromagnetic waves within the material, and the graphene lamellae can form an ordered arrangement structure through van der Waals forces. This structure makes the material show regular electromagnetic wave scattering and absorption behavior on the microscopic scale. The composite with a thickness of 2.5 mm shows the minimum reflection loss value of -39.09 GHz at a graphene concentration of 3 mg/mL.

摘要

二氧化锡(SnO)是一种具有强介电性能和独特电磁损耗机制的n型半导体。因此,采用了一种“一石二鸟”的策略来提高该材料的吸波性能。第一块石头是指通过改变比例构建二氧化锡/还原氧化石墨烯复合材料,从而调节材料的两种吸波机制(两只鸟:极化损耗和散射损耗)。形态表征表明,制备的SnO/RGO复合材料具有独特的嵌入分布和多孔网络结构,由装饰在片状RGO褶皱表面的氧化锡纳米颗粒组成。石墨烯浓度的最佳调整导致材料内部石墨烯层内以及石墨烯与二氧化锡(SnO)之间边界处的界面数量显著增加。这些界面不仅增强了极化效应,还导致材料内部电磁波的散射和反射路径增加,并且石墨烯薄片可以通过范德华力形成有序排列结构。这种结构使材料在微观尺度上表现出规则的电磁波散射和吸收行为。厚度为2.5 mm的复合材料在石墨烯浓度为3 mg/mL时显示出-39.09 GHz的最小反射损耗值。

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