Enhanced low-temperature thermoelectrical properties of BiTeCl grown by topotactic method. Jaćimović, J., Mettan, X., Pisoni, A., Gaál, R., Katrych, S., Demko, L., Akrap, A., Forró, L., Berger, H., Bugnon, P., & Magrez, A. Scripta Materialia, 76:69-72, Acta Materialia Inc., 4, 2014.
Website abstract bibtex We developed a topotactic strategy to grow BiTeCl single crystals. Structural characterization by means of X-ray diffraction was performed, and the high crystallinity of the material was proven. Measurements of the thermoelectrical coefficients electrical resistivity, thermoelectric power and thermal conductivity show an enhanced room temperature power factor of 20 μW cm-1 K-2. The high value of the figure of merit (ZT = 0.17) confirms that BiTeCl is a promising material for engineering in thermoelectric applications at low temperature. © 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
@article{
title = {Enhanced low-temperature thermoelectrical properties of BiTeCl grown by topotactic method},
type = {article},
year = {2014},
identifiers = {[object Object]},
keywords = {BiTeCl,Thermoelectric,Topological insulator,Topotactic growth},
pages = {69-72},
volume = {76},
websites = {http://dx.doi.org/10.1016/j.scriptamat.2013.12.017,http://linkinghub.elsevier.com/retrieve/pii/S1359646213006350},
month = {4},
publisher = {Acta Materialia Inc.},
id = {c6c3fd75-4937-3d75-9fd8-c34fb6842590},
created = {2016-09-01T14:02:04.000Z},
accessed = {2014-02-05},
file_attached = {false},
profile_id = {6a83e56d-7f61-37aa-8f93-9af74ba405ec},
last_modified = {2018-11-15T14:42:53.413Z},
read = {true},
starred = {false},
authored = {true},
confirmed = {true},
hidden = {false},
citation_key = {Jacimovic2014},
folder_uuids = {88d5c7fd-04c6-4ba7-8895-762bbe3f2f9e,a3c9ee44-cdbf-4537-b362-a786d97d7b94,afb6681b-2f0c-4ec5-9262-f5221bd86e30,43126d4f-0f31-4928-a361-2810db416c8b},
private_publication = {false},
abstract = {We developed a topotactic strategy to grow BiTeCl single crystals. Structural characterization by means of X-ray diffraction was performed, and the high crystallinity of the material was proven. Measurements of the thermoelectrical coefficients electrical resistivity, thermoelectric power and thermal conductivity show an enhanced room temperature power factor of 20 μW cm-1 K-2. The high value of the figure of merit (ZT = 0.17) confirms that BiTeCl is a promising material for engineering in thermoelectric applications at low temperature. © 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.},
bibtype = {article},
author = {Jaćimović, J. and Mettan, Xavier and Pisoni, A. and Gaál, Richard and Katrych, S. and Demko, L. and Akrap, Ana and Forró, László and Berger, Helmuth and Bugnon, P. and Magrez, A.},
journal = {Scripta Materialia}
}
Downloads: 0
{"_id":"aWyGFZSaw68DtqPhZ","bibbaseid":"jaimovi-mettan-pisoni-gal-katrych-demko-akrap-forr-etal-enhancedlowtemperaturethermoelectricalpropertiesofbiteclgrownbytopotacticmethod-2014","downloads":0,"creationDate":"2019-01-08T10:24:19.503Z","title":"Enhanced low-temperature thermoelectrical properties of BiTeCl grown by topotactic method","author_short":["Jaćimović, J.","Mettan, X.","Pisoni, A.","Gaál, R.","Katrych, S.","Demko, L.","Akrap, A.","Forró, L.","Berger, H.","Bugnon, P.","Magrez, A."],"year":2014,"bibtype":"article","biburl":null,"bibdata":{"title":"Enhanced low-temperature thermoelectrical properties of BiTeCl grown by topotactic method","type":"article","year":"2014","identifiers":"[object Object]","keywords":"BiTeCl,Thermoelectric,Topological insulator,Topotactic growth","pages":"69-72","volume":"76","websites":"http://dx.doi.org/10.1016/j.scriptamat.2013.12.017,http://linkinghub.elsevier.com/retrieve/pii/S1359646213006350","month":"4","publisher":"Acta Materialia Inc.","id":"c6c3fd75-4937-3d75-9fd8-c34fb6842590","created":"2016-09-01T14:02:04.000Z","accessed":"2014-02-05","file_attached":false,"profile_id":"6a83e56d-7f61-37aa-8f93-9af74ba405ec","last_modified":"2018-11-15T14:42:53.413Z","read":"true","starred":false,"authored":"true","confirmed":"true","hidden":false,"citation_key":"Jacimovic2014","folder_uuids":"88d5c7fd-04c6-4ba7-8895-762bbe3f2f9e,a3c9ee44-cdbf-4537-b362-a786d97d7b94,afb6681b-2f0c-4ec5-9262-f5221bd86e30,43126d4f-0f31-4928-a361-2810db416c8b","private_publication":false,"abstract":"We developed a topotactic strategy to grow BiTeCl single crystals. Structural characterization by means of X-ray diffraction was performed, and the high crystallinity of the material was proven. Measurements of the thermoelectrical coefficients electrical resistivity, thermoelectric power and thermal conductivity show an enhanced room temperature power factor of 20 μW cm-1 K-2. The high value of the figure of merit (ZT = 0.17) confirms that BiTeCl is a promising material for engineering in thermoelectric applications at low temperature. © 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.","bibtype":"article","author":"Jaćimović, J. and Mettan, Xavier and Pisoni, A. and Gaál, Richard and Katrych, S. and Demko, L. and Akrap, Ana and Forró, László and Berger, Helmuth and Bugnon, P. and Magrez, A.","journal":"Scripta Materialia","bibtex":"@article{\n title = {Enhanced low-temperature thermoelectrical properties of BiTeCl grown by topotactic method},\n type = {article},\n year = {2014},\n identifiers = {[object Object]},\n keywords = {BiTeCl,Thermoelectric,Topological insulator,Topotactic growth},\n pages = {69-72},\n volume = {76},\n websites = {http://dx.doi.org/10.1016/j.scriptamat.2013.12.017,http://linkinghub.elsevier.com/retrieve/pii/S1359646213006350},\n month = {4},\n publisher = {Acta Materialia Inc.},\n id = {c6c3fd75-4937-3d75-9fd8-c34fb6842590},\n created = {2016-09-01T14:02:04.000Z},\n accessed = {2014-02-05},\n file_attached = {false},\n profile_id = {6a83e56d-7f61-37aa-8f93-9af74ba405ec},\n last_modified = {2018-11-15T14:42:53.413Z},\n read = {true},\n starred = {false},\n authored = {true},\n confirmed = {true},\n hidden = {false},\n citation_key = {Jacimovic2014},\n folder_uuids = {88d5c7fd-04c6-4ba7-8895-762bbe3f2f9e,a3c9ee44-cdbf-4537-b362-a786d97d7b94,afb6681b-2f0c-4ec5-9262-f5221bd86e30,43126d4f-0f31-4928-a361-2810db416c8b},\n private_publication = {false},\n abstract = {We developed a topotactic strategy to grow BiTeCl single crystals. Structural characterization by means of X-ray diffraction was performed, and the high crystallinity of the material was proven. Measurements of the thermoelectrical coefficients electrical resistivity, thermoelectric power and thermal conductivity show an enhanced room temperature power factor of 20 μW cm-1 K-2. The high value of the figure of merit (ZT = 0.17) confirms that BiTeCl is a promising material for engineering in thermoelectric applications at low temperature. © 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.},\n bibtype = {article},\n author = {Jaćimović, J. and Mettan, Xavier and Pisoni, A. and Gaál, Richard and Katrych, S. and Demko, L. and Akrap, Ana and Forró, László and Berger, Helmuth and Bugnon, P. and Magrez, A.},\n journal = {Scripta Materialia}\n}","author_short":["Jaćimović, J.","Mettan, X.","Pisoni, A.","Gaál, R.","Katrych, S.","Demko, L.","Akrap, A.","Forró, L.","Berger, H.","Bugnon, P.","Magrez, A."],"urls":{"Website":"http://dx.doi.org/10.1016/j.scriptamat.2013.12.017,http://linkinghub.elsevier.com/retrieve/pii/S1359646213006350"},"bibbaseid":"jaimovi-mettan-pisoni-gal-katrych-demko-akrap-forr-etal-enhancedlowtemperaturethermoelectricalpropertiesofbiteclgrownbytopotacticmethod-2014","role":"author","keyword":["BiTeCl","Thermoelectric","Topological insulator","Topotactic growth"],"downloads":0},"search_terms":["enhanced","low","temperature","thermoelectrical","properties","bitecl","grown","topotactic","method","jaćimović","mettan","pisoni","gaál","katrych","demko","akrap","forró","berger","bugnon","magrez"],"keywords":["bitecl","thermoelectric","topological insulator","topotactic growth"],"authorIDs":["5c347a537f3c6010000000aa"]}