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High-Entropy Pyrochlore A2B2O7 with Both Heavy and Light Rare-Earth Elements at the A Site
by
Zhang, Haibin
, Tan, Yongqiang
, Teng, Zhen
in
Ceramics
/ Chemical bonds
/ Chemical synthesis
/ Crystal structure
/ Diffraction
/ Entropy
/ Fluorite
/ Heat conductivity
/ Nuclides
/ Phase transitions
/ Pyrochlores
/ Raman spectroscopy
/ Rare earth elements
/ Spectrum analysis
2022
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High-Entropy Pyrochlore A2B2O7 with Both Heavy and Light Rare-Earth Elements at the A Site
by
Zhang, Haibin
, Tan, Yongqiang
, Teng, Zhen
in
Ceramics
/ Chemical bonds
/ Chemical synthesis
/ Crystal structure
/ Diffraction
/ Entropy
/ Fluorite
/ Heat conductivity
/ Nuclides
/ Phase transitions
/ Pyrochlores
/ Raman spectroscopy
/ Rare earth elements
/ Spectrum analysis
2022
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Do you wish to request the book?
High-Entropy Pyrochlore A2B2O7 with Both Heavy and Light Rare-Earth Elements at the A Site
by
Zhang, Haibin
, Tan, Yongqiang
, Teng, Zhen
in
Ceramics
/ Chemical bonds
/ Chemical synthesis
/ Crystal structure
/ Diffraction
/ Entropy
/ Fluorite
/ Heat conductivity
/ Nuclides
/ Phase transitions
/ Pyrochlores
/ Raman spectroscopy
/ Rare earth elements
/ Spectrum analysis
2022
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High-Entropy Pyrochlore A2B2O7 with Both Heavy and Light Rare-Earth Elements at the A Site
Journal Article
High-Entropy Pyrochlore A2B2O7 with Both Heavy and Light Rare-Earth Elements at the A Site
2022
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Overview
A novel class of high-entropy pyrochlore ceramics (HEPCs) with multiple heavy and light rare-earth elements at the A site were successfully synthesized via solid-state reaction. Both the XRD patterns and Raman spectroscopy demonstrated the single pyrochlore structure feature of seven kinds of HEPCs. Electron microscopic images revealed the typical morphology and the homogeneous distribution of all rare-earth elements. It can be concluded that the significance of configuration entropy in the HEPC system has promoted the tervalent lanthanide nuclides to form a single pyrochlore structure. This work is expected to provide guidance for the further design of high-entropy pyrochlore/fluorite ceramics.
Publisher
MDPI AG,MDPI
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