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Aliovalent Dilute Doping and Nano-Moiré Fringe Advance the Structural Stability and Thermoelectric Performance in β-Zn
4
Sb
3
I. Lun Jen, Kuang Kuo Wang,
Hsin Jay Wu
*
*
此作品的通信作者
材料科學與工程學系
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:
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2
引文 斯高帕斯(Scopus)
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深入研究「Aliovalent Dilute Doping and Nano-Moiré Fringe Advance the Structural Stability and Thermoelectric Performance in β-Zn
4
Sb
3
」主題。共同形成了獨特的指紋。
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Physics & Astronomy
structural stability
100%
thermoelectric generators
79%
zinc
51%
thermal conductivity
45%
ions
40%
performance
38%
ionic crystals
36%
tellurium
33%
thermoelectric materials
32%
point defects
27%
routes
23%
substitutes
22%
phase diagrams
22%
costs
21%
engineering
21%
thermodynamics
19%
electrons
12%
temperature
8%
Engineering & Materials Science
Doping (additives)
96%
Ions
79%
Zinc
62%
Thermal conductivity
51%
Tellurium
47%
Point defects
44%
Carrier concentration
40%
Phase diagrams
36%
Electrons
28%
Crystals
28%
Substitution reactions
28%
Thermodynamics
24%
Fluxes
23%
Hot Temperature
13%
Temperature
11%
Costs
10%
Medicine & Life Sciences
Thermal Conductivity
97%
Ions
71%
Zinc
55%
Tellurium
49%
Thermodynamics
35%
Electrons
23%
Hot Temperature
22%
Temperature
20%
Costs and Cost Analysis
18%
Chemical Compounds
Thermoelectricity
95%
Zinc Ion
46%
Thermal Conductivity
40%
Ionic Crystal
31%
Alloy
30%
Crystal Point Defect
27%
Phase Diagrams
19%
Doping Material
18%
Substitution Reaction
13%
Thermodynamics
13%
Electron Particle
11%
Ion
8%