异质结
材料科学
电场
光电子学
阻抗匹配
吸收(声学)
消散
电磁辐射
碳纳米管
空间电荷
太赫兹辐射
密度泛函理论
接口(物质)
电磁场
工程物理
电阻抗
载流子
凝聚态物理
宽带
失真(音乐)
波阻抗
电介质
纳米技术
耗尽区
多孔性
领域(数学)
微波食品加热
作者
Mengjia Shi,Zirui Jia,Shuai Xu,Zhenguo Gao,Guanglei Wu
摘要
ABSTRACT Constructing heterogeneous structures to precisely regulate the interface characteristics and loss mechanisms of materials is the key to performance improvement. This study proposes a strategy of constructing the NiS 2 ‐CdS P‐N heterojunction with Porous carbon nanofibers (PCNFs) as the supporting skeleton, and deeply investigates the influence of the interface regulation mechanism of the P‐N heterojunction on the absorption performance. The study clarified the structural reconstruction information such as bond parameter distortion, atomic occupation deviation, and lattice disorder caused by the Built‐in electric field (BIEF) of the P‐N heterojunction through X‐Ray Diffraction (XRD) refinement. With the help of Density functional theory (DFT) calculation, the performance regulation mechanism of the heterojunction was revealed at the atomic/electronic scale. A carrier migration model between NiS 2 and CdS was constructed, and the absorption mechanism was analyzed. By utilizing the BIEF and space charge region formed by NiS 2 and CdS, the equivalent impedance is regulated. Ultimately, the cooperative optimization of material impedance matching and energy dissipation is achieved, providing new ideas and development of high‐performance electromagnetic wave (EMW) absorbing materials. This research provides theoretical support for the subsequent shift of absorbing materials from empirical synthesis to precise design.
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