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Flux growth of a new cobalt–zinc–tin ternary phase Co7+xZn3−xSn8 and its relationship to CoSn

✍ Scribed by Patricia C. Reynolds; Milorad Stojanovic; Susan E. Latturner


Book ID
104030852
Publisher
Elsevier Science
Year
2011
Tongue
English
Weight
991 KB
Volume
184
Category
Article
ISSN
0022-4596

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✦ Synopsis


The intermetallic compound Co 7 þ x Zn 3 À x Sn 8 ( À 0.2o x o 0.2) forms from the reaction of cobalt in zinc/ tin eutectic flux. This phase has a new structure type in orthorhombic space group Cmcm, with unit cell parameters a¼ 4.138(1) Å, b ¼ 12.593(4) Å, and c ¼ 11.639(4) Å (Z ¼ 2; R 1 ¼ 0.0301). Varying the amount of cobalt in the synthesis leads to formation of a superstructure in space group Pnma, with lattice parameters a ¼ 12.5908(2) Å, b ¼11.6298(3) Å, and c ¼ 8.2704(2) Å (Z ¼ 4; R 1 ¼ 0.0347). A Co/Zn mixed site and a partially occupied Co site in the Cmcm structure order to form the Pnma supercell. TGA/DSC studies indicate that the binary phase CoSn initially forms in the flux at 1173 K, and then reacts with the zinc in the cooling solution to form the ternary structure at 823 K. This phase exhibits Pauli paramagnetic behavior.


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