Structure and thermoelectric properties of Ba6Ge25-x, Ba6Ge23Sn2, and Ba6Ge22In3: Zintl phases with a chiral clathrate structure

Citation
Sj. Kim et al., Structure and thermoelectric properties of Ba6Ge25-x, Ba6Ge23Sn2, and Ba6Ge22In3: Zintl phases with a chiral clathrate structure, J SOL ST CH, 153(2), 2000, pp. 321-329
Citations number
32
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
JOURNAL OF SOLID STATE CHEMISTRY
ISSN journal
00224596 → ACNP
Volume
153
Issue
2
Year of publication
2000
Pages
321 - 329
Database
ISI
SICI code
0022-4596(200009)153:2<321:SATPOB>2.0.ZU;2-7
Abstract
A single phase of Ba6Ge25-x (x similar to 1) was obtained from a direct ele ment combination reaction in a sealed graphite tube at 830 degrees C, Its s tructure was determined by single-crystal X-ray diffraction methods, Ba6Ge2 5-x adopts the chiral cubic space group P4(1)32 (No, 213) with dimensions o f a = 14.5483(2) Angstrom and Z = 4, The structure consists of helical chai ns of Ba atom-centered pentagonal dodecahedra, Ba@Ge-20, and zeolite-like c ages formed by those chains. There are vacancies distributed over the Ge si tes giving a composition of Ba6Ge24, in which charge balance according to t he Zintl formalism is retained, The compound therefore satisfies the classi cal Zintl concept, Polycrystalline ingots of Ba6Ge25-x showed an electrical conductivity of 2000 S/cm and a Seebeck coefficient of -18 mu V/K at room temperature. An anomalous broad transition in the electrical conductivity a nd Seebeck coefficient was observed at similar to 100 K, Ba6Ge23.32Sn1.68 a nd Ba6Ge21.93In3.07 as ternary derivatives of Ba6Ge25-x were also synthesiz ed and their structural and physical properties compared with those of Ba6G e25-x. (C) 2000 Academic Press.