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All figures (4)
Fig. 3. a) Schematic representation of the variations in the thermopower ๐ผ (in absolute value for n-type compounds) as a function of the carrier concentration ๐๐ป/๐๐ป called the IoffePisarenko curve. For conventional impurities (solid blue curve), ๐ผ monotonically decreases with increasing the carrier concentration. For specific impurities inducing the formation of a resonant level, that is, a local distortion of the valence or conduction bands, a clear departure
Fig. 5. Temperature dependence of the dimensionless thermoelectric figure of merit ZT of selected novel families of a) n-type and b) p-type thermoelectric materials that have emerged over the last two decades [1,29-31,54-65].
Fig. 4. Temperature dependence of the dimensionless thermoelectric figure of merit ZT of various state-of-the-art n-type and p-type thermoelectric materials [1,45-52].
Fig. 8. Examples of Mo-X clusters (X = S, Se or Te) of various sizes. Several basic units Mo6X8X6 can be condensed to form longer chain-like clusters that are then arranged to form a three-dimensional framework. In the limit of infinite length, compounds Mo6X6 are obtained.
Journal Article
โข
DOI
โข
Thermoelectric materials for space applications
[...]
Christophe Candolfi
,
Soufiane El Oualid
,
Dorra Ibrahim
,
Shantanu Misra
,
Oussama El Hamouli
,
Adรจle Lรฉon
,
Anne Dauscher
,
Philippe Masschelein
,
Philippe Gall
,
Patrick Gougeon
,
Christopher Semprimoschnig
,
Bertrand Lenoir
ย
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10 Mar 2021
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Ceas Space Journal