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- Q100418922 description "article scientifique publié en 2020" @default.
- Q100418922 description "artículu científicu espublizáu n'ochobre de 2020" @default.
- Q100418922 description "scientific article published on 02 October 2020" @default.
- Q100418922 description "wetenschappelijk artikel" @default.
- Q100418922 description "наукова стаття, опублікована 2 жовтня 2020" @default.
- Q100418922 name "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 name "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 name "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 type Item @default.
- Q100418922 label "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 label "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 label "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 prefLabel "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 prefLabel "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 prefLabel "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 P1433 Q100418922-B63CD54A-D170-4357-A13E-075088D037A0 @default.
- Q100418922 P1476 Q100418922-6E97303D-E14A-42A9-8DA8-A0C520149099 @default.
- Q100418922 P2093 Q100418922-D2FC7AA7-08FE-4B88-9364-9C4F6AB0F578 @default.
- Q100418922 P31 Q100418922-9524E0AB-DA16-4C43-81E5-2C516051866F @default.
- Q100418922 P356 Q100418922-CDC09F9E-FF40-4331-8A7A-8E2434A4146C @default.
- Q100418922 P50 Q100418922-7F5A7F27-20A2-4891-9C68-9FB7669E645D @default.
- Q100418922 P577 Q100418922-34554E5C-3283-46C5-BD0B-B98F1DC3D464 @default.
- Q100418922 P698 Q100418922-DBF71FA3-6F39-42B3-8BEF-1C15E1F4223B @default.
- Q100418922 P356 ACS.INORGCHEM.0C02040 @default.
- Q100418922 P698 33006469 @default.
- Q100418922 P1433 Q902828 @default.
- Q100418922 P1476 "Understanding the Effects of Iron Precursor Ligation and Oxidation State Leads to Improved Synthetic Control for Spinel Iron Oxide Nanocrystals" @default.
- Q100418922 P2093 "L Kenyon Plummer" @default.
- Q100418922 P31 Q13442814 @default.
- Q100418922 P356 "10.1021/ACS.INORGCHEM.0C02040" @default.
- Q100418922 P50 Q88099805 @default.
- Q100418922 P577 "2020-10-02T00:00:00Z" @default.
- Q100418922 P698 "33006469" @default.