Wan Gengping, Wang Guizhen, Huang Xianqin, Zhao Haonan, Li Xinyue, Wang Kan, Yu Lei, Peng Xiange, Qin Yong
Key Laboratory of Tropical Biological Resources of Ministry of Education, Hainan University, Haikou 570228, China.
State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, China.
Dalton Trans. 2015 Nov 21;44(43):18804-9. doi: 10.1039/c5dt03069b.
An elegant atomic layer deposition (ALD) method has been employed for controllable preparation of a uniform Fe3O4-coated ZnO (ZnO@Fe3O4) core-shell flower-like nanostructure. The Fe3O4 coating thickness of the ZnO@Fe3O4 nanostructure can be tuned by varying the cycle number of ALD Fe2O3. When serving as additives for microwave absorption, the ZnO@Fe3O4-paraffin composites exhibit a higher absorption capacity than the ZnO-paraffin composites. For ZnO@500-Fe3O4, the effective absorption bandwidth below -10 dB can reach 5.2 GHz and the RL values below -20 dB also cover a wide frequency range of 11.6-14.2 GHz when the coating thickness is 2.3 mm, suggesting its potential application in the treatment of the electromagnetic pollution problem. On the basis of experimental observations, a mechanism has been proposed to understand the enhanced microwave absorption properties of the ZnO@Fe3O4 composites.
一种精巧的原子层沉积(ALD)方法已被用于可控制备均匀的Fe3O4包覆的ZnO(ZnO@Fe3O4)核壳花状纳米结构。通过改变ALD Fe2O3的循环次数,可以调节ZnO@Fe3O4纳米结构的Fe3O4包覆厚度。当用作微波吸收添加剂时,ZnO@Fe3O4-石蜡复合材料比ZnO-石蜡复合材料表现出更高的吸收能力。对于ZnO@500-Fe3O4,当涂层厚度为2.3毫米时,低于-10 dB的有效吸收带宽可达5.2 GHz,低于-20 dB的反射损耗(RL)值也覆盖11.6-14.2 GHz的宽频率范围,表明其在处理电磁污染问题方面的潜在应用。基于实验观察,提出了一种机制来理解ZnO@Fe3O4复合材料增强的微波吸收性能。