Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313586722> ?p ?o ?g. }
- W4313586722 endingPage "227" @default.
- W4313586722 startingPage "227" @default.
- W4313586722 abstract "The synthesis of bimetallic iron-nickel nanoparticles with control over the synthesized phases, particle size, surface chemistry, and oxidation level remains a challenge that limits the application of these nanoparticles. Pulsed laser ablation in liquid allows the properties tuning of the generated nanoparticles by changing the ablation solvent. Organic solvents such as acetone can minimize nanoparticle oxidation. Yet, economical laboratory and technical grade solvents that allow cost-effective production of FeNi nanoparticles contain water impurities, which are a potential source of oxidation. Here, we investigated the influence of water impurities in acetone on the properties of FeNi nanoparticles generated by pulsed laser ablation in liquids. To remove water impurities and produce “dried acetone”, cost-effective and reusable molecular sieves (3 Å) are employed. The results show that the Fe50Ni50 nanoparticles’ properties are influenced by the water content of the solvent. The metastable HCP FeNi phase is found in NPs prepared in acetone, while only the FCC phase is observed in NPs formed in water. Mössbauer spectroscopy revealed that the FeNi nanoparticles oxidation in dried acetone is reduced by 8% compared to acetone. The high-field magnetization of Fe50Ni50 nanoparticles in water is the highest, 68 Am2/kg, followed by the nanoparticles obtained after ablation in acetone without water impurities, 59 Am2/kg, and acetone, 52 Am2/kg. The core-shell structures formed in these three liquids are also distinctive, demonstrating that a core-shell structure with an outer oxide layer is formed in water, while carbon external layers are obtained in acetone without water impurity. The results confirm that the size, structure, phase, and oxidation of FeNi nanoparticles produced by pulsed laser ablation in liquids can be modified by changing the solvent or just reducing the water impurities in the organic solvent." @default.
- W4313586722 created "2023-01-06" @default.
- W4313586722 creator A5031982544 @default.
- W4313586722 creator A5041276010 @default.
- W4313586722 creator A5052452963 @default.
- W4313586722 creator A5055700226 @default.
- W4313586722 creator A5055878362 @default.
- W4313586722 creator A5064040676 @default.
- W4313586722 creator A5067268811 @default.
- W4313586722 creator A5076102570 @default.
- W4313586722 creator A5086528627 @default.
- W4313586722 date "2023-01-04" @default.
- W4313586722 modified "2023-09-30" @default.
- W4313586722 title "Solvent Influence on the Magnetization and Phase of Fe-Ni Alloy Nanoparticles Generated by Laser Ablation in Liquids" @default.
- W4313586722 cites W1671110556 @default.
- W4313586722 cites W1947348667 @default.
- W4313586722 cites W1967485833 @default.
- W4313586722 cites W1969403248 @default.
- W4313586722 cites W1974386823 @default.
- W4313586722 cites W1978128355 @default.
- W4313586722 cites W1986758277 @default.
- W4313586722 cites W1993252613 @default.
- W4313586722 cites W2002720352 @default.
- W4313586722 cites W2003777533 @default.
- W4313586722 cites W2006342382 @default.
- W4313586722 cites W2008270528 @default.
- W4313586722 cites W2015246684 @default.
- W4313586722 cites W2020292102 @default.
- W4313586722 cites W2030468762 @default.
- W4313586722 cites W2032125170 @default.
- W4313586722 cites W2032257366 @default.
- W4313586722 cites W2041203408 @default.
- W4313586722 cites W2042117022 @default.
- W4313586722 cites W2049188645 @default.
- W4313586722 cites W2053579131 @default.
- W4313586722 cites W2066613146 @default.
- W4313586722 cites W2079491263 @default.
- W4313586722 cites W2092738925 @default.
- W4313586722 cites W2098345444 @default.
- W4313586722 cites W2104793872 @default.
- W4313586722 cites W2115258798 @default.
- W4313586722 cites W2139287008 @default.
- W4313586722 cites W2169435332 @default.
- W4313586722 cites W2172259832 @default.
- W4313586722 cites W2210702587 @default.
- W4313586722 cites W2276718738 @default.
- W4313586722 cites W2283926559 @default.
- W4313586722 cites W2312886949 @default.
- W4313586722 cites W2328692073 @default.
- W4313586722 cites W2329628056 @default.
- W4313586722 cites W2422418247 @default.
- W4313586722 cites W2463050619 @default.
- W4313586722 cites W2511641249 @default.
- W4313586722 cites W2532126310 @default.
- W4313586722 cites W2571311315 @default.
- W4313586722 cites W2586681018 @default.
- W4313586722 cites W2587989553 @default.
- W4313586722 cites W2600604068 @default.
- W4313586722 cites W2610129790 @default.
- W4313586722 cites W2883026210 @default.
- W4313586722 cites W2883514282 @default.
- W4313586722 cites W2885655539 @default.
- W4313586722 cites W2901354490 @default.
- W4313586722 cites W2965575303 @default.
- W4313586722 cites W2966895361 @default.
- W4313586722 cites W3005686556 @default.
- W4313586722 cites W3016447843 @default.
- W4313586722 cites W3036149372 @default.
- W4313586722 cites W3041132666 @default.
- W4313586722 cites W3108084657 @default.
- W4313586722 cites W3127364731 @default.
- W4313586722 cites W3170296433 @default.
- W4313586722 cites W3175465277 @default.
- W4313586722 cites W3184805102 @default.
- W4313586722 cites W3185335799 @default.
- W4313586722 cites W3196089385 @default.
- W4313586722 cites W4255412919 @default.
- W4313586722 cites W4293503417 @default.
- W4313586722 doi "https://doi.org/10.3390/nano13020227" @default.
- W4313586722 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36677981" @default.
- W4313586722 hasPublicationYear "2023" @default.
- W4313586722 type Work @default.
- W4313586722 citedByCount "2" @default.
- W4313586722 countsByYear W43135867222023 @default.
- W4313586722 crossrefType "journal-article" @default.
- W4313586722 hasAuthorship W4313586722A5031982544 @default.
- W4313586722 hasAuthorship W4313586722A5041276010 @default.
- W4313586722 hasAuthorship W4313586722A5052452963 @default.
- W4313586722 hasAuthorship W4313586722A5055700226 @default.
- W4313586722 hasAuthorship W4313586722A5055878362 @default.
- W4313586722 hasAuthorship W4313586722A5064040676 @default.
- W4313586722 hasAuthorship W4313586722A5067268811 @default.
- W4313586722 hasAuthorship W4313586722A5076102570 @default.
- W4313586722 hasAuthorship W4313586722A5086528627 @default.
- W4313586722 hasBestOaLocation W43135867221 @default.
- W4313586722 hasConcept C100536367 @default.
- W4313586722 hasConcept C120665830 @default.
- W4313586722 hasConcept C121332964 @default.