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Lunzhou Yu

Researcher at University of Shanghai for Science and Technology

Publications -  12
Citations -  1026

Lunzhou Yu is an academic researcher from University of Shanghai for Science and Technology. The author has contributed to research in topics: Reflection loss & Magnetization. The author has an hindex of 9, co-authored 12 publications receiving 482 citations. Previous affiliations of Lunzhou Yu include Tongji University.

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Sandwich-Like Fe&TiO 2 @C Nanocomposites Derived from MXene/Fe-MOFs Hybrids for Electromagnetic Absorption

TL;DR: Sandwich-like laminated Fe&TiO2@C nanocomposites were successfully prepared from the MXene–MOFs hybrids, achieving a broad effective bandwidth of 6.5 GHz at a thickness of only 1.6 mm.
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Rational design of 2D hierarchically laminated Fe3O4@nanoporous carbon@rGO nanocomposites with strong magnetic coupling for excellent electromagnetic absorption applications

TL;DR: In this paper, the authors developed 2D hierarchically laminated Fe3O4@nanoporous carbon (NPC)@rGO magnetic/dielectric nanocomposites as high-performance microwave absorbers through a facile microwave assisted approach.
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Improved synergistic effect for achieving ultrathin microwave absorber of 1D Co nanochains/2D carbide MXene nanocomposite

TL;DR: In this paper, a multilayer-sandwiched Ti3C2Tx MXene heterostructure decorated with one-dimensional Co nanochains has been synthesized successfully through a facile in situ process.
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Layered NiCo alloy nanoparticles/nanoporous carbon composites derived from bimetallic MOFs with enhanced electromagnetic wave absorption performance

TL;DR: In this paper, NiCo alloy nanoparticles/nanoporous carbon (NiCo/NPC) composites with multilayered structure were synthesized by in situ pyrolysis of the bimetallic NiCo-based metal-organic frameworks.
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Fe@NPC@CF nanocomposites derived from Fe-MOFs/biomass cotton for lightweight and high-performance electromagnetic wave absorption applications

TL;DR: In this article, a Fe-MOFs/biomass cotton derived Fe@nanoporous carbon@carbon fiber (Fe@NPC@CF) composites were successfully obtained by means of in-situ synthesis and thermal decomposition processes.