材料科学
偶极子
光电子学
电场
工作职能
吸收(声学)
阳极
极化(电化学)
电磁场
氮气
电磁辐射
纳米技术
腐蚀
离域电子
碳纳米管
溶解
电子
工作(物理)
化学物理
吸收光谱法
导电体
异质结
作者
Bo Huang,Chen Li,Fang Ye,Jingchao Wang,Yuchen Cao,Yi An,Wenjing Zhang,Xiaomeng Fan
摘要
ABSTRACT Built‐in electric field (BIEF) engineering has emerged as a promising strategy for regulating interface electron structure and tailoring multifunctional performance; however, constructing strong BIEF to achieve multifunctionality remains a challenge. Herein, an intensified‐BIEF strategy through nitrogen configuration regulation is proposed in CoNi/Mo 2 C@N‐doped carbon (NC) composites to simultaneously enhance electromagnetic wave (EMW) absorption and anti‐corrosion. By tailoring pyrolysis temperature, the nitrogen configuration and electronic structure of the NC matrix are systematically regulated, enlarging the work function difference and strengthening BIEF at the CoNi/NC and NC/Mo 2 C heterointerfaces. The intensified BIEF induces directional charge migration, generating oriented interface dipole arrays that enhance the dipole‐array polarization relaxation and boost conductive loss. Meanwhile, the strong BIEF facilitates electron accumulation at the CoNi surface, suppressing charge delocalization that inhibits anodic dissolution and promotes passivation. The optimized CoNi/Mo 2 C@NC achieves an effective absorption bandwidth of 6 GHz at a thickness of 1.8 mm. Meanwhile, compared with commercial absorbers, the corrosion potential is increased by 94.9%, while the corrosion current is reduced by 74.5%, demonstrating exceptional durability and ultralow corrosion kinetics in marine environments. This work reveals the mechanistic role of strong BIEF in simultaneously optimizing EMW absorption and anti‐corrosion, and provides a novel strategy for designing multifunctional materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI