“Nanoscale Zippers” in the Crystalline Solid. Structural Variations in the Giant Magnetocaloric Material Gd5Si1.5Ge2.5
Author:
Affiliation:
1. Department of Chemistry and Department of Materials Science and Engineering, Ames Laboratory, U.S. Department of Energy, Iowa State University, Ames, Iowa 50011
Publisher
American Chemical Society (ACS)
Subject
Materials Chemistry,General Chemical Engineering,General Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/cm020928l
Reference40 articles.
1. Giant Magnetocaloric Effect inGd5(Si2Ge2)
2. Tunable magnetic regenerator alloys with a giant magnetocaloric effect for magnetic refrigeration from ∼20 to ∼290 K
3. Effect of alloying on the giant magnetocaloric effect of Gd5(Si2Ge2)
4. Direct Measurement of the “Giant” Adiabatic Temperature Change inGd5Si2Ge2
5. Comment on “Direct Measurement of the `Giant' Adiabatic Temperature Change inGd5Si2Ge2”
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1. Spin-lattice coupling in magnetocaloric Gd5(Ge,Si)4 alloys by $in$ $situ$ x-ray pair distribution analysis in magnetic field;Physical Review Materials;2022-10-13
2. Phase separation-induced nanoscale heterogeneity in Gd5Si1.5Ge2.5;Acta Materialia;2020-09
3. Managing hysteresis of Gd5Si2Ge2 by magnetic field cycling;Journal of Applied Physics;2019-12-28
4. Evidence for a short-range chemical order of Ge atoms and its critical role in inducing a giant magnetocaloric effect in Gd5Si1.5Ge2.5;Journal of Alloys and Compounds;2019-11
5. Giant negative thermal expansion at the nanoscale in the multifunctional material Gd5(Si,Ge)4;Physical Review B;2019-10-07
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