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cu12sb4s13 (43) 43
materials science, multidisciplinary (41) 41
physics, applied (23) 23
chemistry, physical (18) 18
tetrahedrite (17) 17
copper (15) 15
nickel (14) 14
nanocrystals (12) 12
nanoscience & nanotechnology (11) 11
stability (10) 10
thermoelectricity (10) 10
engineering, electrical & electronic (9) 9
thermal-conductivity (9) 9
figure (8) 8
tennantite (8) 8
thermal conductivity (8) 8
thermoelectric (8) 8
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chemical sciences (7) 7
cusbs2 (7) 7
iron (7) 7
materials science (7) 7
rietveld refinement (7) 7
substitution (7) 7
tetrahedrites (7) 7
thermoelectric materials (7) 7
crystal structure (6) 6
crystal-structure (6) 6
merit (6) 6
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chemistry, multidisciplinary (5) 5
copper-antimony-sulfide (5) 5
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cu12sb4s13 tetrahedrites (5) 5
dünnfilm (5) 5
efficiency (5) 5
energy & fuels (5) 5
kupfer (5) 5
nanokristall (5) 5
physics, condensed matter (5) 5
röntgendiffraktion (5) 5
solarzelle (5) 5
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conductivity (4) 4
cu-sb-s (4) 4
electric properties (4) 4
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inorganic chemistry (4) 4
material chemistry (4) 4
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physics (4) 4
schwefel (4) 4
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sulfide (4) 4
system (4) 4
transition (4) 4
zinc (4) 4
[ chim.inor ] chemical sciences/inorganic chemistry (3) 3
[ phys.cond.cm-ms ] physics [physics]/condensed matter [cond-mat]/materials science [cond-mat.mtrl-sci] (3) 3
absorber (3) 3
antimon (3) 3
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Journal of Applied Physics, ISSN 0021-8979, 05/2014, Volume 115, Issue 19, p. 193515
The heat capacity of natural (Cu12-x (Fe, Zn, Ag) x(Sb, As)(4)S-13) and synthetic (Cu12-xZnxSb4S13 with x = 0, 1, 2) tetrahedrite compounds was measured... 
CU12SB4S13 | PHYSICS, APPLIED | Oscillators (Electronics) | Research | Copper | Phonons | Electric properties | Temperature dependence | Silver | Specific heat | Heat | Displacements (lattice) | Thermal conductivity | Anharmonicity | Atomic structure | Oscillators | Lattice vibration | Low temperature
Journal Article
Physical chemistry chemical physics : PCCP, ISSN 1463-9084, 2015, Volume 17, Issue 30, pp. 19751 - 19758
Inelastic neutron scattering performed on powders and single crystals indicate that the glass-like thermal conductivity of tetrahedrite minerals originates... 
CHEMISTRY, PHYSICAL | PHONON-SCATTERING | CU12SB4S13 | EFFICIENCY | TETRAHEDRITE | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | Crystal lattices | Searching | Thermal conductivity | Amorphous materials | Minerals | Thermoelectricity | Heat transfer | Crystal structure | Condensed Matter | Materials Science | Inorganic chemistry | Physics | Chemical Sciences
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 01/2015, Volume 132, pp. 499 - 506
Polycrystalline thin film copper chalcogenide solar cells show remarkable efficiencies, and analogous but less-explored semiconducting materials may hold... 
Chalcogenide | Chalcostibite | Earth abundant | Antimony | Combinatorial | Layered structure | CuSbS2 | Sputter deposition | CuSbS | PHYSICS, APPLIED | OXIDE | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | COPPER | SB2S3 | PHASE-RELATIONS | CU12SB4S13 | CELL | ELECTRONIC-STRUCTURE
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 2016, Volume 99, Issue 1, pp. 51 - 56
The feasibility to synthesize, in large quantity, pure, and nontoxic tetrahedrite compounds using high‐energy mechanical‐alloying from only elemental... 
SUBSTITUTION | MINERALS | STABILITY | PBTE | RIETVELD REFINEMENT | CRYSTAL | IRON | CU12SB4S13 | MATERIALS SCIENCE, CERAMICS | TENNANTITE | Thermoelectric materials | Spark plasma sintering | Synthesis | Precursors | Tubes | Feasibility | Ceramics | Thermoelectricity | Inorganic chemistry | Chemical Sciences
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 2018, Volume 769, pp. 478 - 483
Pb-doped tetrahedrite Cu12-xPbxSb4S13 (x = 0, 0.25, 0.50, 0.75, 1.00, 1.25 and 1.50) samples were prepared and their thermoelectric properties were... 
Seebeck coefficient | Thermal conductivity | Tetrahedrite Cu12Sb4S13 | Rietveld refinements | Thermoelectric performance | Tetrahedrite Cu | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | THERMAL-CONDUCTIVITY | NICKEL | MERIT | SUBSTITUTED TETRAHEDRITE | FIGURE
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 01/2016, Volume 144, pp. 33 - 39
Cu12Sb4S13 is a very potential non-toxic, earth-abundant absorber material for thin film solar cells yet its photovoltaic related properties are rarely... 
Solar cells | Valance states | Cu12Sb4S13 | Hydrazine | Cu3SbS4 | PHYSICS, APPLIED | SEMICONDUCTOR | ENERGY & FUELS | PROPERTY ANALYSIS | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOCRYSTALS | CUSBS2 | COPPER | CU3SBS3 | GROWTH | ABSORPTION | SOLVOTHERMAL ROUTE | CU-SB-S
Journal Article
Journal of Materials Chemistry C, ISSN 2050-7534, 2015, Volume 3, Issue 40, pp. 10476 - 10487
Polycrystalline samples of the tetrahedrite phase Cu12Sb4-xTexS13 with nominal compositions 0.5 <= x <= 2.0 were synthesized by two different synthesis routes:... 
PHYSICS, APPLIED | SOLID-SOLUTION | NICKEL | PERFORMANCE | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | COPPER | THERMAL-CONDUCTIVITY | CU12SB4S13 | EFFICIENCY | SULFOSALTS | Condensed Matter | Materials Science | Inorganic chemistry | Physics | Chemical Sciences
Journal Article
Nanoscale, ISSN 2040-3372, 2016, Volume 8, Issue 9, pp. 5146 - 5152
Journal Article
Solar energy materials and solar cells, ISSN 0927-0248, 2018, Volume 185, pp. 392 - 398
Currently, the research in absorber films for solar cells is focused on the development of non-toxic, low-cost, and high-available materials. Thus, the CuSbS2... 
Cationic exchange | Chalcostibite CuSbS2 | Tetrahedrite Cu12Sb4S13 | Microstructural evolution | Thin film solar cell | Chalcostibite CuSbS | Tetrahedrite Cu | CHALCOSTIBITE | PHYSICS, APPLIED | SOLAR-CELLS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | PHOTOVOLTAIC ABSORBER | LAYERS | SB2S3 | GROWTH | COPPER ANTIMONY SULFIDE | CUBIS2 | EFFICIENCY | PHOTOELECTRON-SPECTROSCOPY
Journal Article
Journal of electronic materials, ISSN 1543-186X, 2019, Volume 48, Issue 4, pp. 1926 - 1931
Tetrahedrites, naturally occurring sulfosalt minerals, have been shown to exhibit peak ZT values close to unity near 700K due to the combination of... 
PHYSICS, APPLIED | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | material synthesis | CU12SB4S13 TETRAHEDRITES | CRYSTAL | THERMAL-CONDUCTIVITY | ENGINEERING, ELECTRICAL & ELECTRONIC | TRANSITION | NICKEL | tetrahedrite | Thermoelectric | magnesium substitution | Inorganic chemistry | Material chemistry | Chemical Sciences
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 04/2017, Volume 702, pp. 75 - 83
Tetrahedrite mineral family, one of the most widespread sulfosalts on Earth's crust, seems to meet the right features for an attractive sustainable p-type... 
Mineral | Thermoelectrics | Tetrahedrite | Geomimetic | Sintering | TEXTURE | NICKEL | TEMPERATURES | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | CU12SB4S13 | X-ray spectroscopy | Zinc | Thermoelectricity
Journal Article
Nanoscale, ISSN 2040-3364, 01/2017, Volume 9, Issue 45, pp. 17865 - 17876
Tetrahedrite (Cu12Sb4S13) is a highly promising environmentally friendly material for energy conversion applications but its synthesis generally requires... 
Single crystals | Drug delivery systems | Parameter modification | Synthesis | Heating | Ternary systems | Energy conversion | Nanomaterials | Nanostructure | Porosity | Photothermal conversion
Journal Article
Nanoscale, ISSN 2040-3364, 12/2017, Volume 9, Issue 45, pp. 17865 - 17876
Tetrahedrite (Cu12Sb4S13) is a highly promising environmentally friendly material for energy conversion applications but its synthesis generally requires... 
PHYSICS, APPLIED | THERMOELECTRIC PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | DITHIOCARBAMATE PRECURSORS | NANOCRYSTALS | METAL SULFIDE NANOPARTICLES | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | COPPER-ANTIMONY-SULFIDE | PHASE | CRYSTAL-GROWTH | SELECTIVE SYNTHESIS | CU12SB4S13
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 04/2015, Volume 5, Issue 7, pp. 1401506 - n/a
Journal Article
Journal of Electronic Materials, ISSN 0361-5235, 4/2016, Volume 45, Issue 4, pp. 2274 - 2277
Journal Article