Matches in SemOpenAlex for { <https://semopenalex.org/work/W4361000262> ?p ?o ?g. }
- W4361000262 endingPage "112049" @default.
- W4361000262 startingPage "112049" @default.
- W4361000262 abstract "Layered structure Ti3AlC2 (TAC) has good thermal stability and excellent electrical conductivity, which is expected to be a great high-temperature electromagnetic microwave absorber. Herein, we derive TAC@C@SiO2 composites by catalytic chemical vapor deposition (CCVD) technology and Stöber process. Core-shell engineering can accomplish a mass loss of just 0.20% at 500°C for 1 h. An outstanding microwave absorption performance can be achieved with a minimum reflection loss of −31.63 dB and the maximum absorption bandwidth of 2.08 GHz at the matching thickness of 2.0 mm with the synergistic effect of abundant polarization mechanism and multiple scattering. Additionally, this research can serve as a guide for the utilization of TAC in the field of high-temperature microwave absorption materials, and can also provide suggestions for the design of environment-adaptable core-shell absorbers." @default.
- W4361000262 created "2023-03-30" @default.
- W4361000262 creator A5019077325 @default.
- W4361000262 creator A5048402590 @default.
- W4361000262 creator A5052789069 @default.
- W4361000262 date "2023-06-01" @default.
- W4361000262 modified "2023-10-15" @default.
- W4361000262 title "High-temperature stability core-shell engineered Ti3AlC2@C@SiO2 for excellent microwave absorbing properties" @default.
- W4361000262 cites W2799442935 @default.
- W4361000262 cites W2938963690 @default.
- W4361000262 cites W2944263077 @default.
- W4361000262 cites W2969510815 @default.
- W4361000262 cites W2983760492 @default.
- W4361000262 cites W2991533112 @default.
- W4361000262 cites W2997465392 @default.
- W4361000262 cites W3006575768 @default.
- W4361000262 cites W3043747132 @default.
- W4361000262 cites W3111642290 @default.
- W4361000262 cites W3128016005 @default.
- W4361000262 cites W3196028047 @default.
- W4361000262 cites W3198084757 @default.
- W4361000262 cites W3198633370 @default.
- W4361000262 cites W3210554907 @default.
- W4361000262 cites W3210892322 @default.
- W4361000262 cites W3215828325 @default.
- W4361000262 cites W4200127215 @default.
- W4361000262 cites W4200211579 @default.
- W4361000262 cites W4200299628 @default.
- W4361000262 cites W4200383153 @default.
- W4361000262 cites W4200615227 @default.
- W4361000262 cites W4205458975 @default.
- W4361000262 cites W4205559166 @default.
- W4361000262 cites W4205640505 @default.
- W4361000262 cites W4210249783 @default.
- W4361000262 cites W4212828653 @default.
- W4361000262 cites W4214736254 @default.
- W4361000262 cites W4220666294 @default.
- W4361000262 cites W4224249826 @default.
- W4361000262 cites W4226055602 @default.
- W4361000262 cites W4281791107 @default.
- W4361000262 cites W4282053126 @default.
- W4361000262 cites W4282550849 @default.
- W4361000262 cites W4283740148 @default.
- W4361000262 cites W4283830072 @default.
- W4361000262 cites W4284890525 @default.
- W4361000262 cites W4285026942 @default.
- W4361000262 cites W4285091728 @default.
- W4361000262 cites W4286213957 @default.
- W4361000262 cites W4291551910 @default.
- W4361000262 cites W4292546450 @default.
- W4361000262 cites W4292640744 @default.
- W4361000262 cites W4295997553 @default.
- W4361000262 cites W4296269377 @default.
- W4361000262 cites W4303453746 @default.
- W4361000262 cites W4307650044 @default.
- W4361000262 cites W4307822885 @default.
- W4361000262 cites W4308041848 @default.
- W4361000262 cites W4308494323 @default.
- W4361000262 cites W4309370419 @default.
- W4361000262 cites W4309378078 @default.
- W4361000262 cites W4312039249 @default.
- W4361000262 cites W4313577470 @default.
- W4361000262 doi "https://doi.org/10.1016/j.vacuum.2023.112049" @default.
- W4361000262 hasPublicationYear "2023" @default.
- W4361000262 type Work @default.
- W4361000262 citedByCount "2" @default.
- W4361000262 countsByYear W43610002622023 @default.
- W4361000262 crossrefType "journal-article" @default.
- W4361000262 hasAuthorship W4361000262A5019077325 @default.
- W4361000262 hasAuthorship W4361000262A5048402590 @default.
- W4361000262 hasAuthorship W4361000262A5052789069 @default.
- W4361000262 hasConcept C104779481 @default.
- W4361000262 hasConcept C120665830 @default.
- W4361000262 hasConcept C121332964 @default.
- W4361000262 hasConcept C125287762 @default.
- W4361000262 hasConcept C127413603 @default.
- W4361000262 hasConcept C159985019 @default.
- W4361000262 hasConcept C184652730 @default.
- W4361000262 hasConcept C191486275 @default.
- W4361000262 hasConcept C192562407 @default.
- W4361000262 hasConcept C2777036283 @default.
- W4361000262 hasConcept C41008148 @default.
- W4361000262 hasConcept C42360764 @default.
- W4361000262 hasConcept C44838205 @default.
- W4361000262 hasConcept C49040817 @default.
- W4361000262 hasConcept C57410435 @default.
- W4361000262 hasConcept C59061564 @default.
- W4361000262 hasConcept C76155785 @default.
- W4361000262 hasConcept C97346530 @default.
- W4361000262 hasConceptScore W4361000262C104779481 @default.
- W4361000262 hasConceptScore W4361000262C120665830 @default.
- W4361000262 hasConceptScore W4361000262C121332964 @default.
- W4361000262 hasConceptScore W4361000262C125287762 @default.
- W4361000262 hasConceptScore W4361000262C127413603 @default.
- W4361000262 hasConceptScore W4361000262C159985019 @default.
- W4361000262 hasConceptScore W4361000262C184652730 @default.
- W4361000262 hasConceptScore W4361000262C191486275 @default.
- W4361000262 hasConceptScore W4361000262C192562407 @default.