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thermoelectric (11) 11
mechanical alloying (10) 10
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by Kim, SY and Kwak, SG and Pi, JH and Lee, GE and Kim, IH
JOURNAL OF ELECTRONIC MATERIALS, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, pp. 1857 - 1863
Journal Article
by Pi, JH and Kwak, SG and Kim, SY and Lee, GE and Kim, IH
JOURNAL OF ELECTRONIC MATERIALS, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, pp. 1991 - 1997
Journal Article
by Pi, JH and Lee, GE and Kim, IH
JOURNAL OF ELECTRONIC MATERIALS, ISSN 0361-5235, 05/2020, Volume 49, Issue 5, pp. 2710 - 2718
... (Tr = Mn, Fe, Co, Ni, Cu, and Zn) JI-HEE PI,1 GO-EUN LEE,1 and IL-HO KIM1,2 1.—Department of Materials Science and Engineering, Korea National University... 
Tetrahedrite | PHYSICS, APPLIED | thermoelectric | MATERIALS SCIENCE, MULTIDISCIPLINARY | mechanical | thermal stability | FABRICATION | CU12SB4S13 | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
by Pi, JH and Lee, GE and Kim, IH
JOURNAL OF ELECTRONIC MATERIALS, ISSN 0361-5235, 05/2020, Volume 49, Issue 5, pp. 2755 - 2761
...TOPICAL COLLECTION: INTERNATIONAL CONFERENCE ON THERMOELECTRICS 2019 Effects of Sn-Doping on the Thermoelectric Properties of Famatinite JI-HEE PI,1 GO-EUN LEE... 
PHYSICS, APPLIED | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | Thermoelectric | thermal stability | COPPER | famatinite | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
by Lee, GE and Pi, JH and Kim, IH
JOURNAL OF ELECTRONIC MATERIALS, ISSN 0361-5235, 05/2020, Volume 49, Issue 5, pp. 2781 - 2788
...TOPICAL COLLECTION: INTERNATIONAL CONFERENCE ON THERMOELECTRICS 2019 Preparation and Thermoelectric Properties of Famatinite Cu3SbS4 GO-EUN LEE,1 JI-HEE PI,1... 
PHYSICS, APPLIED | hot pressing | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | mechanical alloying | Thermoelectric | COPPER | famatinite | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
by Pi, JH and Lee, GE and Kim, IH
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, ISSN 0374-4884, 05/2019, Volume 74, Issue 9, pp. 865 - 870
Tetrahedrite Cu12Sb4S13 was prepared by mechanical alloying and hot pressing. The phase transition, microstructure, and thermoelectric properties (electronic... 
Tetrahedrite | PHYSICS, MULTIDISCIPLINARY | PERFORMANCE | STABILITY | Aging | Thermoelectric | CRYSTAL | THERMAL-CONDUCTIVITY | SUBSTITUTED TETRAHEDRITE | Thermal stability
Journal Article
Journal of Electronic Materials, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, pp. 1857 - 1863
Journal Article
Journal of Electronic Materials, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, pp. 1991 - 1997
Journal Article
Journal of electronic materials, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, p. 1857
Tetrahedrite [Cu.sub.12][Sb.sub.4]S.sub.13 was synthesized via mechanical alloying (MA) and consolidated using hot pressing (HP) as a solid-state route.... 
Copper alloys | Production processes
Journal Article
Journal of electronic materials, ISSN 0361-5235, 04/2019, Volume 48, Issue 4, p. 1991
Tetrahedrite [Cu.sub.12][Sb.sub.4]S.sub.13 was prepared by mechanical alloying and hot pressing, and its thermal stability and mechanical properties were... 
Thermal properties | Copper compounds | Mechanical properties | Electric properties
Journal Article
Korean Journal of Metals and Materials, ISSN 1738-8228, 05/2020, Volume 58, Issue 5, pp. 340 - 347
Tetrahedrite (C12Sb4S13) has attracted attention as a p-type thermoeletric material with very low thermal conductivity induced by the anharmonic oscillation of... 
재료공학
Journal Article
대한금속재료학회지, ISSN 1738-8228, 2020, Volume 58, Issue 4, p. 272
Tetrahedrite has low lattice thermal conductivity because of the lone-pair electrons of Sb, which cause the Cu atoms to vibrate at a low frequency and high... 
thermoelectric | hot pressing | tetrahedrite | mechanical alloying
Journal Article
대한금속재료학회지, ISSN 1738-8228, 2020, Volume 58, Issue 5, p. 340
Tetrahedrite (C12Sb4S13) has attracted attention as a p-type thermoeletric material with very low thermal conductivity induced by the anharmonic oscillation of... 
thermoelectric | hot pressing | tetrahedrite | mechanical alloying
Journal Article
by Kwak, SG and Pi, JH and Lee, GE and Kim, IH
KOREAN JOURNAL OF METALS AND MATERIALS, ISSN 1738-8228, 04/2020, Volume 58, Issue 4, pp. 272 - 277
Tetrahedrite has low lattice thermal conductivity because of the lone-pair electrons of Sb, which cause the Cu atoms to vibrate at a low frequency and high... 
thermoelectric | hot pressing | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | tetrahedrite | mechanical alloying | CU12SB4S13 | 재료공학
Journal Article
Journal of the Korean Institute of Electrical and Electronic Material Engineers, ISSN 1226-7945, 09/2013, Volume 26, Issue 9, pp. 646 - 650
Journal Article
전기전자재료학회논문지, ISSN 1225-6684, 2013, Volume 26, Issue 9, pp. 646 - 650
$(Na,K)NbO_3$-based piezoelectric ceramics were synthesized by a liquid phase sintering method with a selected glass frit. The effects of the content of the... 
Journal Article
전기전자재료학회논문지(J. Korean Inst. Electr. Electron. Mater. Eng.), ISSN 1226-7945, 2013, Volume 26, Issue 9, p. 646
(Na,K)NbO3-based piezoelectric ceramics were synthesized by a liquid phase sintering method with a selected glass frit. The effects of the content of the glass... 
Glass frit | Piezoelectric properties | Lead-free ceramics | Liquid phase sintering | Microstructure
Journal Article
Journal of the Korean Institute of Electrical and Electronic Material Engineers, ISSN 1226-7945, 02/2013, Volume 26, Issue 2, pp. 144 - 150
Journal Article
전기전자재료학회논문지, ISSN 1225-6684, 2013, Volume 26, Issue 2, pp. 144 - 150
A New Ag-pastes were developed for integrating the high efficiency mono-Si solar cell. The pastes were the mixture of 84 wt% Ag, 2 wt% glass frit, 11 wt%... 
전기공학
Journal Article
전기전자재료학회논문지(J. Korean Inst. Electr. Electron. Mater. Eng.), ISSN 1226-7945, 2013, Volume 26, Issue 2, p. 144
A New Ag-pastes were developed for integrating the high efficiency mono-Si solar cell. The pastes were the mixture of 84 wt% Ag, 2 wt% glass frit, 11 wt%... 
Mono-Si solar cell | Electrical properties | High efficiency | Glass flit | Ag-paste
Journal Article
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