Matches in SemOpenAlex for { <https://semopenalex.org/work/W4384501798> ?p ?o ?g. }
- W4384501798 endingPage "105160" @default.
- W4384501798 startingPage "105160" @default.
- W4384501798 abstract "This study aims to investigate the high-temperature phase stability and hot corrosion behavior of zirconia with triple doping of Sc3+, Ce4+ and Y3+ ions. FESEM result shows that the mean particle size of ScCeYSZ nanoparticles was 80-90 nm. Next, optimal samples regarding the highest high-temperature phase stability (1.9%Sc8.3%Ce1.8%YSZ, 1.1%Sc9.0%Ce1.8%YSZ and 0.5%Sc9.6%Ce1.8%YSZ) were consolidated at 1550 ˚C for 15 min via the spark plasma sintering (SPS) method. A hot corrosion test was done in the presence of 45%Na2SO4+%55V2O5 salts on three samples at 900 ˚C for 2 h. Also, the results of hot corrosion were compared with ceramic resulting from the nanostructured YSZ bulk sample (nanoYSZ). Based on the X-ray diffraction results, the formation of the non-transformable tetragonal phase is confirmed in the synthesized nanopowders. Also, the phase and microstructural results after hot corrosion of sintered samples show the formation of a monoclinic phase and destructive YVO4 crystals and quasi-cubic CeO2 crystals on the surface of sintered samples. The results indicated that the sample containing 1.8% scandia, 8.3% ceria, and 1.9% yttria had the highest phase stability and hot corrosion resistance (low monoclinic percentage and low leaching of stabilizer elements of Sc3+:Ce4+:Y3+ from zirconia lattice and low depth of molten salt)." @default.
- W4384501798 created "2023-07-18" @default.
- W4384501798 creator A5001262191 @default.
- W4384501798 creator A5015578124 @default.
- W4384501798 creator A5019481324 @default.
- W4384501798 creator A5061726507 @default.
- W4384501798 creator A5065070710 @default.
- W4384501798 date "2023-10-01" @default.
- W4384501798 modified "2023-09-27" @default.
- W4384501798 title "Sc3+:Ce4+:Y3+ doped zirconia nanopowders (ScCeYSZ): Synthesis, thermal phase stability and hot corrosion behavior of spark plasma sintered body" @default.
- W4384501798 cites W1599943150 @default.
- W4384501798 cites W1963715811 @default.
- W4384501798 cites W1976196795 @default.
- W4384501798 cites W1979003417 @default.
- W4384501798 cites W1992079037 @default.
- W4384501798 cites W2001125912 @default.
- W4384501798 cites W2002480821 @default.
- W4384501798 cites W2017939436 @default.
- W4384501798 cites W2019110046 @default.
- W4384501798 cites W2025029874 @default.
- W4384501798 cites W2027327111 @default.
- W4384501798 cites W2037881729 @default.
- W4384501798 cites W2040057025 @default.
- W4384501798 cites W2049465739 @default.
- W4384501798 cites W2051020414 @default.
- W4384501798 cites W2060889856 @default.
- W4384501798 cites W2074231303 @default.
- W4384501798 cites W2129411667 @default.
- W4384501798 cites W2220519835 @default.
- W4384501798 cites W2519838865 @default.
- W4384501798 cites W2570076965 @default.
- W4384501798 cites W2800330360 @default.
- W4384501798 cites W2807585676 @default.
- W4384501798 cites W2897503076 @default.
- W4384501798 cites W2898633265 @default.
- W4384501798 cites W2909918714 @default.
- W4384501798 cites W2960339504 @default.
- W4384501798 cites W2979553159 @default.
- W4384501798 cites W3005336675 @default.
- W4384501798 cites W3037982777 @default.
- W4384501798 cites W3087153216 @default.
- W4384501798 cites W3214361205 @default.
- W4384501798 cites W4200455862 @default.
- W4384501798 cites W4200470043 @default.
- W4384501798 cites W4210835392 @default.
- W4384501798 cites W4213327324 @default.
- W4384501798 cites W4221101256 @default.
- W4384501798 cites W4224218314 @default.
- W4384501798 cites W4232631620 @default.
- W4384501798 cites W4256474101 @default.
- W4384501798 cites W4280496144 @default.
- W4384501798 cites W4280570824 @default.
- W4384501798 cites W4280613880 @default.
- W4384501798 cites W4281253667 @default.
- W4384501798 cites W4281565295 @default.
- W4384501798 cites W4283272094 @default.
- W4384501798 cites W4283573995 @default.
- W4384501798 cites W4284890515 @default.
- W4384501798 cites W4285405152 @default.
- W4384501798 cites W4286500307 @default.
- W4384501798 cites W4287511877 @default.
- W4384501798 cites W4289109153 @default.
- W4384501798 cites W4291115893 @default.
- W4384501798 cites W4294151794 @default.
- W4384501798 cites W4318822888 @default.
- W4384501798 cites W4318823158 @default.
- W4384501798 cites W4323341658 @default.
- W4384501798 cites W4361853838 @default.
- W4384501798 cites W4376109346 @default.
- W4384501798 doi "https://doi.org/10.1016/j.arabjc.2023.105160" @default.
- W4384501798 hasPublicationYear "2023" @default.
- W4384501798 type Work @default.
- W4384501798 citedByCount "0" @default.
- W4384501798 crossrefType "journal-article" @default.
- W4384501798 hasAuthorship W4384501798A5001262191 @default.
- W4384501798 hasAuthorship W4384501798A5015578124 @default.
- W4384501798 hasAuthorship W4384501798A5019481324 @default.
- W4384501798 hasAuthorship W4384501798A5061726507 @default.
- W4384501798 hasAuthorship W4384501798A5065070710 @default.
- W4384501798 hasBestOaLocation W43845017981 @default.
- W4384501798 hasConcept C115624301 @default.
- W4384501798 hasConcept C123609680 @default.
- W4384501798 hasConcept C127413603 @default.
- W4384501798 hasConcept C134132462 @default.
- W4384501798 hasConcept C170751736 @default.
- W4384501798 hasConcept C178790620 @default.
- W4384501798 hasConcept C185592680 @default.
- W4384501798 hasConcept C191897082 @default.
- W4384501798 hasConcept C192562407 @default.
- W4384501798 hasConcept C20625102 @default.
- W4384501798 hasConcept C2776014600 @default.
- W4384501798 hasConcept C2778353533 @default.
- W4384501798 hasConcept C2779851234 @default.
- W4384501798 hasConcept C42360764 @default.
- W4384501798 hasConcept C44280652 @default.
- W4384501798 hasConcept C531131001 @default.
- W4384501798 hasConcept C59061564 @default.
- W4384501798 hasConcept C61276311 @default.