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自组装的异金属磷化物和碳的 3D 花状复合材料用于温度定制的电磁波吸收。

Self-Assembled 3D Flower-like Composites of Heterobimetallic Phosphides and Carbon for Temperature-Tailored Electromagnetic Wave Absorption.

机构信息

Jiangsu Optoelectronic Functional Materials and Engineering Laboratory, School of Chemistry and Chemical Engineering , Southeast University , Nanjing 211189 , China.

Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, College of Light Industry and Food Engineering , Guangxi University , Nanning 530004 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Oct 16;11(41):38361-38371. doi: 10.1021/acsami.9b14873. Epub 2019 Oct 8.

Abstract

Bimetallic cobalt-nickel phosphides as a microwave absorber with a well-defined 3D hierarchical flower-like architecture featuring the ultrathin 2D subunits are very unusual and rarely reported. Herein, for the first time, we successfully prepared 3D flower-like CoNi-P/C composites with 2D nanosheet subunits via a one-pot solvothermal self-assembled strategy followed by a one-step carbonization-phosphorization process. Interestingly, the chemical composition and electromagnetic (EM) wave absorption performance of composites are highly influenced by the calcination temperature. As the calcination temperature increases from 300 to 500 °C, the crystal pattern transformed from CoP with nickel ions uniformly intercalating into the lattice to the CoNiP structure. Comparing with CoNi-P/C-400 and CoNi-P/C-500, the CoNi-P/C-300 sample exhibited an optimal reflection loss (RL) value of -65.5 dB at 12.56 GHz with a thickness of 2.1 mm and an ultralow filler loading of 15 wt %. Furthermore, the fundamental EM wave absorption mechanism was proposed. The synergetic effects of dramatical attenuation ability and well-matched impedance endue CoNi-P/C-300 with superior microwave absorption performance. This work may be enlightening in promoting the development of heterobimetallic phosphides in the wave-absorbing field due to their intrinsic magnetism, higher electrical conductivity, as well as eco-friendly traits.

摘要

具有明确 3D 分级花状结构的双金属钴-镍磷化物作为微波吸收剂,其具有超薄的 2D 亚单位,这是非常不寻常的,很少有报道。在此,我们首次通过一锅溶剂热自组装策略和一步碳化-磷化过程成功制备了具有 2D 纳米片亚单位的 3D 花状 CoNi-P/C 复合材料。有趣的是,复合材料的化学组成和电磁波(EM)波吸收性能受煅烧温度的影响很大。随着煅烧温度从 300°C 升高到 500°C,晶体形态从具有镍离子均匀嵌入晶格的 CoP 转变为 CoNiP 结构。与 CoNi-P/C-400 和 CoNi-P/C-500 相比,CoNi-P/C-300 样品在 2.1mm 厚度和超低填充量 15wt%的情况下,在 12.56GHz 时表现出最佳的反射损耗(RL)值为-65.5dB。此外,还提出了基本的电磁波吸收机制。剧烈衰减能力和良好匹配阻抗的协同效应赋予了 CoNi-P/C-300 优异的微波吸收性能。由于其固有的磁性、更高的导电性以及环保特性,这项工作可能会启发人们在吸波领域进一步开发异质双金属磷化物。

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