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Wu Lili

Researcher at Shandong University

Publications -  46
Citations -  941

Wu Lili is an academic researcher from Shandong University. The author has contributed to research in topics: Oxide & Absorption (electromagnetic radiation). The author has an hindex of 11, co-authored 46 publications receiving 314 citations.

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Carbon-Based MOF Derivatives: Emerging Efficient Electromagnetic Wave Absorption Agents

TL;DR: This review summarizes progresses and highlights strategies of MOF derivatives for efficient electromagnetic wave absorption, and summarizes the relevant theories and evaluation methods, and categorized the state-of-the-art research progresses in EMW absorption field.
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High-Efficiency Electromagnetic Wave Absorption of Cobalt-Decorated NH2-UIO-66-Derived Porous ZrO2/C.

TL;DR: The hybridization of Co nanoparticles with ZrO2/C results in remarkable EM wave absorption performance with a minimum reflection loss of -57.2 dB at 15.8 GHz, corresponding to a matching thickness of 3.3 mm.
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Non-Magnetic Bimetallic MOF-Derived Porous Carbon-Wrapped TiO2/ZrTiO4 Composites for Efficient Electromagnetic Wave Absorption.

TL;DR: In this article, a porous carbon-wrapped TiO2/ZrTiO4 composites derived from PCN-415 (TiZr-MOFs) are qualified with a minimum reflection loss of 67.8 dB (2.16mm, 13.0 GHz), and a maximum effective absorption bandwidth of 5.9 GHz (2,70mm).
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Facile fabrication of Ni embedded TiO2/C core-shell ternary nanofibers with multicomponent functional synergy for efficient electromagnetic wave absorption

TL;DR: In this paper, Ni embedded TiO2/C core-shell ternary nanofibers were fabricated by a combined method of electrospinning and subsequent thermal treatment.
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Bimetal oxide-derived flower-like heterogeneous Co/MnO@C composites with synergistic magnetic–dielectric attenuation for electromagnetic wave absorption

TL;DR: In this article, the effect of electromagnetic parameters on the absorption performance with the variation of Co proportion was analyzed, and it was found that the magnetic properties, conductivity and electromagnetic parameters were readily manipulated by the Co proportion, with the purpose of achieving favorable impedance matching and attenuation performance.