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Jinsen Hou

Publications -  8
Citations -  211

Jinsen Hou is an academic researcher. The author has contributed to research in topics: Microwave & Absorption (electromagnetic radiation). The author has an hindex of 3, co-authored 7 publications receiving 19 citations.

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Thickness-controllable synthesis of MOF-derived Ni@N-doped carbon hexagonal nanoflakes with dielectric-magnetic synergy toward wideband electromagnetic wave absorption

TL;DR: In this article, the effect of N-doped carbon skeletons on the absorption ability of carbon-based absorbers has been investigated, and the authors provided a valuable approach for fabricating high-efficiency microwave absorption materials by combining the control of morphology and Ndoped effect on the absorbers.
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Cubic-like Co/NC composites derived from ZIF-67 with a dual control strategy of size and graphitization degree for microwave absorption

TL;DR: In this paper, cubic ZIF-67 carbides synthesized at different solution temperatures showed an adjustable average size, and then by adjusting the calcination temperature we could control the degree of graphitization, so as to explore the synergistic effect of these two aspects to achieve an indepth understanding of the electromagnetic properties and microwave absorption properties.
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Encapsulation of high specific surface area red blood cell-like mesoporous carbon spheres by magnetic nanoparticles: A new strategy to realize multiple electromagnetic wave loss mechanism

TL;DR: In this paper, the authors proposed an advanced strategy to encapsulate red blood cell-like mesoporous carbon spheres with magnetic nanoparticles in terms of the problems of poor impedance matching, narrow absorption band of single dielectric loss material or high density of single magnetic loss material.
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Lightweight and high-efficiency microwave absorption of reduced graphene oxide loaded with irregular magnetic quantum dots

TL;DR: In this paper, a composite material of three magnetic quantum dots (MQDs) embedded partially reduced graphene oxide (P-rGO) was prepared and the influence of pyrolysis temperature on its electromagnetic performance was systematically studied.