Matches in SemOpenAlex for { <https://semopenalex.org/work/W4383505860> ?p ?o ?g. }
- W4383505860 endingPage "128139" @default.
- W4383505860 startingPage "128139" @default.
- W4383505860 abstract "Ni2Y-type strontium hexaferrites having chemical dddof Sr1·8Ba0·2Ni2Fe12-xDyxO22 (x = 0.0, 0.1, 0.2) were made utilizing the sol-gel combustion technique. All samples' XRD patterns demonstrate the production of NiFe2O4 and Fe3O4 which are a phase that is intermediate in the synthesis of the required Ni2Y-type strontium hexaferrites. The FTIR indicates the presence of absorption peaks at about 557 and 432 cm−1, this shows the possibility of the formation of Y-type hexaferrites. UV-vis NIR spectroscopy analysis indicates that the energy band-gap of Y-type hexaferrites is affected by the increase in Dy3+ concentration. The values of the band-gap were found to be between 1.66 and 1.78 eV. According to the FESEM analysis, platelet-structure is formed with particles that range in size from 3.665 to 3.927 μm. The observed coercivity, saturation, and remnant magnetization first decreased with an increase in the concentration of Dy3+ for the sample having x = 0.1 and then increases for the sample with x = 0.2. The sample with the greatest amount of Dy3+ (i.e.x = 0.2) has a value of total shielding effectiveness of 27.5 dB. The prepared Ni2Y-type hexaferrites sample could be use for efficient shielding of microwaves in X-band." @default.
- W4383505860 created "2023-07-08" @default.
- W4383505860 creator A5003608098 @default.
- W4383505860 creator A5017631104 @default.
- W4383505860 creator A5022638319 @default.
- W4383505860 creator A5024362443 @default.
- W4383505860 creator A5029616052 @default.
- W4383505860 creator A5036925554 @default.
- W4383505860 creator A5055376439 @default.
- W4383505860 creator A5084230437 @default.
- W4383505860 date "2023-10-01" @default.
- W4383505860 modified "2023-10-16" @default.
- W4383505860 title "Crystal structure refinement, optical, magnetic, and X-band microwave shielding properties of Dy3+ doped Ni2Y-type strontium hexagonal ferrites" @default.
- W4383505860 cites W1965339429 @default.
- W4383505860 cites W1969572091 @default.
- W4383505860 cites W1982502460 @default.
- W4383505860 cites W1983399998 @default.
- W4383505860 cites W1984254749 @default.
- W4383505860 cites W1985833748 @default.
- W4383505860 cites W1994439045 @default.
- W4383505860 cites W2010619523 @default.
- W4383505860 cites W2011982164 @default.
- W4383505860 cites W2027302928 @default.
- W4383505860 cites W2035589784 @default.
- W4383505860 cites W2036448220 @default.
- W4383505860 cites W2038330883 @default.
- W4383505860 cites W2045294535 @default.
- W4383505860 cites W2050812153 @default.
- W4383505860 cites W2051895096 @default.
- W4383505860 cites W2052924539 @default.
- W4383505860 cites W2062083797 @default.
- W4383505860 cites W2065773625 @default.
- W4383505860 cites W2066258552 @default.
- W4383505860 cites W2067331476 @default.
- W4383505860 cites W2088960540 @default.
- W4383505860 cites W2090341655 @default.
- W4383505860 cites W2091445298 @default.
- W4383505860 cites W2121877814 @default.
- W4383505860 cites W2175418557 @default.
- W4383505860 cites W2343169140 @default.
- W4383505860 cites W2461639985 @default.
- W4383505860 cites W2469438776 @default.
- W4383505860 cites W2554843961 @default.
- W4383505860 cites W2738100716 @default.
- W4383505860 cites W2790744596 @default.
- W4383505860 cites W2799749586 @default.
- W4383505860 cites W2902752723 @default.
- W4383505860 cites W2909162527 @default.
- W4383505860 cites W2913340924 @default.
- W4383505860 cites W2921065142 @default.
- W4383505860 cites W2924079484 @default.
- W4383505860 cites W2940989085 @default.
- W4383505860 cites W2990058156 @default.
- W4383505860 cites W2999931360 @default.
- W4383505860 cites W3007566439 @default.
- W4383505860 cites W3014869687 @default.
- W4383505860 cites W3042739132 @default.
- W4383505860 cites W3082108234 @default.
- W4383505860 cites W3118955765 @default.
- W4383505860 cites W3125539410 @default.
- W4383505860 cites W3130493591 @default.
- W4383505860 cites W3135418221 @default.
- W4383505860 cites W3167289291 @default.
- W4383505860 cites W3181301290 @default.
- W4383505860 cites W3200201635 @default.
- W4383505860 cites W3200864175 @default.
- W4383505860 cites W4200510340 @default.
- W4383505860 cites W4281646944 @default.
- W4383505860 cites W4298003031 @default.
- W4383505860 cites W4300865454 @default.
- W4383505860 cites W4303958985 @default.
- W4383505860 cites W4304689352 @default.
- W4383505860 cites W4308948074 @default.
- W4383505860 doi "https://doi.org/10.1016/j.matchemphys.2023.128139" @default.
- W4383505860 hasPublicationYear "2023" @default.
- W4383505860 type Work @default.
- W4383505860 citedByCount "0" @default.
- W4383505860 crossrefType "journal-article" @default.
- W4383505860 hasAuthorship W4383505860A5003608098 @default.
- W4383505860 hasAuthorship W4383505860A5017631104 @default.
- W4383505860 hasAuthorship W4383505860A5022638319 @default.
- W4383505860 hasAuthorship W4383505860A5024362443 @default.
- W4383505860 hasAuthorship W4383505860A5029616052 @default.
- W4383505860 hasAuthorship W4383505860A5036925554 @default.
- W4383505860 hasAuthorship W4383505860A5055376439 @default.
- W4383505860 hasAuthorship W4383505860A5084230437 @default.
- W4383505860 hasConcept C113196181 @default.
- W4383505860 hasConcept C121332964 @default.
- W4383505860 hasConcept C126530901 @default.
- W4383505860 hasConcept C159985019 @default.
- W4383505860 hasConcept C178790620 @default.
- W4383505860 hasConcept C181966813 @default.
- W4383505860 hasConcept C185592680 @default.
- W4383505860 hasConcept C192562407 @default.
- W4383505860 hasConcept C2265751 @default.
- W4383505860 hasConcept C26873012 @default.
- W4383505860 hasConcept C43617362 @default.
- W4383505860 hasConcept C44838205 @default.