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Hierarchically porous carbons with controlled structures for efficient microwave absorption

机译:具有受控结构的等级多孔碳,用于高效微波吸收

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To probe the influence of the porous morphology of carbon materials on their microwave absorption performance, hierarchically porous carbons (HPCs) with designed structures have been successfully prepared starting from poly(divinylbenzene) by emulsion template polymerization. There exist two levels of pores in the obtained HPCs. One level of micro-scale pores templates from the water drops, and the other level of nano-scale pores is created during KOH activation in the subsequent carbonization process. By adjusting the water volume fraction during polymerization and the KOH dosage, both micro- and nano-scale porous structures can be accurately tuned. The influences of pores with diverse scales on microwave adsorption capacity are investigated in detail. Eventually, the maximum reflection loss of -56.4 dB and an effective adsorption bandwidth of 6.0 GHz are achieved. The superior microwave absorption performance of HPCs is attributed to the superimposed contributions of the two-level pores to the enhancement of polarization abilities and the multiple reflections of the microwave.
机译:为了探讨碳材料多孔形态对微波吸收性能的影响,通过乳液模板聚合从聚(二乙烯基苯)开始成功制备具有设计结构的分层多孔碳(HPC)。在获得的HPC中存在两种孔隙。在随后的碳化过程中,在KOH活化期间产生来自水滴的一级微量尺寸孔模板,以及在KOH活化期间产生的纳米尺度孔的另一级。通过在聚合期间调节水体积分数和KOH剂量,可以精确调整微型和纳米级多孔结构。详细研究了对微波吸附能力对微波吸附能力的不同尺度的影响。最终,实现了-56.4dB的最大反射损耗和6.0GHz的有效吸附带宽。 HPC的卓越的微波吸收性能归因于两级孔的叠加贡献,以提高极化能力和微波的多重反射。

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