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Pure carbon microwave absorbers from anion-exchange resin pyrolysis

机译:阴离子交换树脂热解的纯碳微波吸收剂

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摘要

A series of carbon materials [C_F-x (where x denotes carbonization temperature)] have been prepared by pyrolysis of an anion-exchange resin at different temperatures (500-700 °C). X-ray diffraction and Raman spectroscopy suggest the presence of tiny crystalline domains in these materials, whose content is strongly determined by carbonization temperature. The microwave absorption of these materials is examined in the frequency range of 2-18 GHz, and it is found that the reflection loss characteristics are highly sensitive to the carbonization temperature. At a thickness of 2 mm, Cf-600 exhibits the best microwave absorbing ability with a maximum reflection loss of -20.6 dB at 16 GHz, and a bandwidth exceeding -10 dB in the range 13.5-18 GHz. It is concluded that dielectric loss in cooperation with better matched characteristic impedance results in the excellent microwave absorption of C_F-600. Furthermore, a reflection loss exceeding -10 dB can be obtained in the range of 7-18 GHz by manipulating the thickness from 2 to 3.5 mm, and the maximum can reach -37.0dB at 10.8 GHz with a thickness of 2.8 mm. These materials may be used as light-weight and highly effective microwave absorbers over a wide frequency range.
机译:通过在不同温度(500-700°C)下将阴离子交换树脂热解制备了一系列碳材料[C_F-x(其中x表示碳化温度)。 X射线衍射和拉曼光谱表明这些材料中存在微小的晶畴,其含量强烈取决于碳化温度。在2-18 GHz的频率范围内检查了这些材料的微波吸收,发现反射损耗特性对碳化温度高度敏感。在2 mm的厚度下,Cf-600表现出最佳的微波吸收能力,在16 GHz时的最大反射损耗为-20.6 dB,在13.5-18 GHz范围内的带宽超过-10 dB。可以得出结论,介电损耗与特性阻抗更好的匹配共同导致C_F-600具有出色的微波吸收率。此外,通过将厚度控制在2到3.5 mm之间,可以在7-18 GHz的范围内获得超过-10 dB的反射损耗,在厚度为2.8 mm的10.8 GHz处,最大值可以达到-37.0dB。这些材料可以在很宽的频率范围内用作轻便高效的微波吸收器。

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