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Vacancy-mediated electromagnetic loss tuning in Cr-doped lanthanum manganite perovskites for broadband and high-intensity microwave absorption

作者:Shu-Qing Lv, Yanjun Jiang, Muyao Liu, Jingao Li, Zihao Zhao, Xinyu Wang, Baoshan Li, Shuo Liu, Fangzhou Cui, Dongdong Lv, Yanan Yang, Long Xia · 发表于:Journal of Advanced Ceramics · 年份:2025 · DOI:10.26599/jac.2025.9221202 · 被引用次数:11 · 研究领域:Electromagnetic wave absorption materials、Magnetic Properties and Synthesis of Ferrites、Microwave Dielectric Ceramics Synthesis

Escalating electromagnetic pollution and advanced stealth technologies require next-generation microwave absorbers that combine broadband response, strong attenuation, and lightweight characteristics with high-temperature stability. In this work, a vacancy-mediated strategy is proposed to tailor electromagnetic losses in Cr-doped lanthanum manganite perovskites (LaMn 1-x Cr x O 3 ) synthesized by a sol–gel method. The cooperative modulation between Mn-site cation vacancies and oxygen vacancies enables a well-balanced contribution of polarization loss and conduction loss, resulting in excellent absorption performance. Specifically, LaMn 0.85 Cr 0.15 O 3 achieves a remarkable minimum reflection loss of -75.37 dB and an effective absorption bandwidth of 6.0 GHz at a thickness of only 2.8 mm. Structural and spectroscopic analyses reveal that Cr 3+ substitution induces Mn vacancies and modulates oxygen vacancy concentrations, thereby generating defect dipoles and facilitating carrier migration. Density functional theory calculations further elucidate the role of Cr-induced defect states in enhancing conduction and polarization losses. This vacancy-engineered approach not only establishes a new paradigm for designing high-efficiency perovskite-based microwave absorbers but also offers significant potential for high-temperature electromagnetic compatibility applications.