Matches in SemOpenAlex for { <https://semopenalex.org/work/W3211940821> ?p ?o ?g. }
- W3211940821 endingPage "109143" @default.
- W3211940821 startingPage "109143" @default.
- W3211940821 abstract "Composite microwave absorbers with multiple loss mechanism have attracted more and more attention. Herein, we report a strategy of step-by-step synthesis of polyaniline (PANI)/FeCo@C composite microspheres by hydrothermal, calcination and in-situ polymerization. The multilayer heterogeneous interfaces of microspheres and the multi dipole center of polyaniline molecular chain significantly improve the polarization relaxation loss. Polyaniline on the surface connects the microspheres to form a conductive network, which effectively enhances the conduction loss. FeCo alloy particles also provide a certain magnetic loss. Their synergistic effect makes the composite microspheres exhibit good microwave absorption performance. When the thickness of P2 is only 1.7 mm, it could exhibit an effective absorption bandwidth (EAB) of 5.31 GHz and maximum reflection loss (RL) of −33.86 dB. Moreover, we optimized the macro structure of the absorber through gradient design, and successfully extended the effective absorption bandwidth to 11.81 GHz by introducing multiple interference. This work provides a useful reference for the comprehensive optimization of micro regulation and macro design of composite microwave absorbers." @default.
- W3211940821 created "2021-11-22" @default.
- W3211940821 creator A5012251819 @default.
- W3211940821 creator A5023618295 @default.
- W3211940821 creator A5069315846 @default.
- W3211940821 creator A5070064096 @default.
- W3211940821 creator A5082808330 @default.
- W3211940821 date "2022-02-01" @default.
- W3211940821 modified "2023-10-01" @default.
- W3211940821 title "PANI/FeCo@C composite microspheres with broadband microwave absorption performance" @default.
- W3211940821 cites W1987912354 @default.
- W3211940821 cites W2093133175 @default.
- W3211940821 cites W2164451931 @default.
- W3211940821 cites W2594618693 @default.
- W3211940821 cites W2800626512 @default.
- W3211940821 cites W2898139745 @default.
- W3211940821 cites W2918961723 @default.
- W3211940821 cites W2944174998 @default.
- W3211940821 cites W2967786799 @default.
- W3211940821 cites W2986766340 @default.
- W3211940821 cites W2992734820 @default.
- W3211940821 cites W2994464326 @default.
- W3211940821 cites W3002825110 @default.
- W3211940821 cites W3028023377 @default.
- W3211940821 cites W3081491691 @default.
- W3211940821 cites W3088597871 @default.
- W3211940821 cites W3093816688 @default.
- W3211940821 cites W3093873032 @default.
- W3211940821 cites W3095842850 @default.
- W3211940821 cites W3096599174 @default.
- W3211940821 cites W3101639238 @default.
- W3211940821 cites W3108584057 @default.
- W3211940821 cites W3108926911 @default.
- W3211940821 cites W3111409200 @default.
- W3211940821 cites W3120712584 @default.
- W3211940821 cites W3121594018 @default.
- W3211940821 cites W3124284461 @default.
- W3211940821 cites W3126184973 @default.
- W3211940821 cites W3128369251 @default.
- W3211940821 cites W3133382132 @default.
- W3211940821 cites W3134105387 @default.
- W3211940821 cites W3135631215 @default.
- W3211940821 cites W3136963656 @default.
- W3211940821 cites W3154487590 @default.
- W3211940821 cites W3157097311 @default.
- W3211940821 cites W3158241184 @default.
- W3211940821 cites W3165660023 @default.
- W3211940821 cites W3165834884 @default.
- W3211940821 cites W3167424442 @default.
- W3211940821 cites W3169542578 @default.
- W3211940821 cites W3170401354 @default.
- W3211940821 cites W3171519576 @default.
- W3211940821 cites W3176528600 @default.
- W3211940821 cites W3178214986 @default.
- W3211940821 cites W3178654365 @default.
- W3211940821 cites W3180812426 @default.
- W3211940821 cites W3183282894 @default.
- W3211940821 cites W3185482545 @default.
- W3211940821 cites W3187856914 @default.
- W3211940821 cites W3190847748 @default.
- W3211940821 cites W3193969609 @default.
- W3211940821 doi "https://doi.org/10.1016/j.compscitech.2021.109143" @default.
- W3211940821 hasPublicationYear "2022" @default.
- W3211940821 type Work @default.
- W3211940821 sameAs 3211940821 @default.
- W3211940821 citedByCount "31" @default.
- W3211940821 countsByYear W32119408212022 @default.
- W3211940821 countsByYear W32119408212023 @default.
- W3211940821 crossrefType "journal-article" @default.
- W3211940821 hasAuthorship W3211940821A5012251819 @default.
- W3211940821 hasAuthorship W3211940821A5023618295 @default.
- W3211940821 hasAuthorship W3211940821A5069315846 @default.
- W3211940821 hasAuthorship W3211940821A5070064096 @default.
- W3211940821 hasAuthorship W3211940821A5082808330 @default.
- W3211940821 hasConcept C104779481 @default.
- W3211940821 hasConcept C121332964 @default.
- W3211940821 hasConcept C125287762 @default.
- W3211940821 hasConcept C159985019 @default.
- W3211940821 hasConcept C192562407 @default.
- W3211940821 hasConcept C2777036283 @default.
- W3211940821 hasConcept C2777580120 @default.
- W3211940821 hasConcept C44228677 @default.
- W3211940821 hasConcept C44838205 @default.
- W3211940821 hasConcept C49040817 @default.
- W3211940821 hasConcept C521977710 @default.
- W3211940821 hasConcept C62520636 @default.
- W3211940821 hasConceptScore W3211940821C104779481 @default.
- W3211940821 hasConceptScore W3211940821C121332964 @default.
- W3211940821 hasConceptScore W3211940821C125287762 @default.
- W3211940821 hasConceptScore W3211940821C159985019 @default.
- W3211940821 hasConceptScore W3211940821C192562407 @default.
- W3211940821 hasConceptScore W3211940821C2777036283 @default.
- W3211940821 hasConceptScore W3211940821C2777580120 @default.
- W3211940821 hasConceptScore W3211940821C44228677 @default.
- W3211940821 hasConceptScore W3211940821C44838205 @default.
- W3211940821 hasConceptScore W3211940821C49040817 @default.
- W3211940821 hasConceptScore W3211940821C521977710 @default.
- W3211940821 hasConceptScore W3211940821C62520636 @default.