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{Gd III 7 } and {Gd III 14 } Cluster Formation Based on a Rhodamine 6G Ligand with a Magnetocaloric Effect
by
Miao, Lin
, Kou, Hui-Zhong
, Liu, Cai-Ming
in
lanthanide oxygen cluster
/ Ligands
/ magnetic refrigerant materials
/ magnetocaloric effect
/ Nitrates
/ Physical properties
/ rhodamine ligand
/ Single crystals
2024
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{Gd III 7 } and {Gd III 14 } Cluster Formation Based on a Rhodamine 6G Ligand with a Magnetocaloric Effect
by
Miao, Lin
, Kou, Hui-Zhong
, Liu, Cai-Ming
in
lanthanide oxygen cluster
/ Ligands
/ magnetic refrigerant materials
/ magnetocaloric effect
/ Nitrates
/ Physical properties
/ rhodamine ligand
/ Single crystals
2024
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{Gd III 7 } and {Gd III 14 } Cluster Formation Based on a Rhodamine 6G Ligand with a Magnetocaloric Effect
by
Miao, Lin
, Kou, Hui-Zhong
, Liu, Cai-Ming
in
lanthanide oxygen cluster
/ Ligands
/ magnetic refrigerant materials
/ magnetocaloric effect
/ Nitrates
/ Physical properties
/ rhodamine ligand
/ Single crystals
2024
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{Gd III 7 } and {Gd III 14 } Cluster Formation Based on a Rhodamine 6G Ligand with a Magnetocaloric Effect
Journal Article
{Gd III 7 } and {Gd III 14 } Cluster Formation Based on a Rhodamine 6G Ligand with a Magnetocaloric Effect
2024
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Overview
Heptanuclear {Gd
} (complex
) and tetradecanuclear {Gd
} (complex
) were synthesized using the rhodamine 6G ligand HL (rhodamine 6G salicylaldehyde hydrazone) and characterized. Complex
has a rare disc-shaped structure, where the central Gd ion is connected to the six peripheral Gd
ions via CH
O
/μ
-OH
bridges. Complex
has an unexpected three-layer double sandwich structure with a rare μ
-O
ion in the center of the cluster. Magnetic studies revealed that complex
exhibits a magnetic entropy change of 17.4 J kg
K
at 3 K and 5 T. On the other hand, complex
shows a higher magnetic entropy change of 22.3 J kg
K
at 2 K and 5 T.
Publisher
MDPI AG
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