109 results on '"Werheit, Helmut"'
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2. Phase Transitions in Boron Carbide
3. Electrical conductivity of B∼4.3C boron carbide up to 9 GPa and 1273 K
4. Boron carbide: Consistency of components, lattice parameters, fine structure and chemical composition makes the complex structure reasonable
5. Van Hove singularities of some icosahedral boron-rich solids by differential reflectivity spectra
6. Corrigendum to “Electrical conductivity of boron carbide from ∼5 to ∼2100 K in the whole homogeneity range [Solid State Sci. 132 (2022) 106987]”
7. Electrical conductivity of B∼₄.₃C boron carbide up to 9 GPa and 1273 K
8. Raman Effect in Boron and Boron-Rich Compounds
9. Experimentally Founded Charge Transport Model for Icosahedral Boron-Rich Solids
10. Electrical conductivity of boron carbide from ∼5 to ∼2100 K in the whole homogeneity range
11. On the Electronic Properties of Icosahedral Boron-Rich Solids
12. Corrigendum to 'Electrical conductivity of boron carbide from ∼5 to ∼2100 K in the whole homogeneity range'
13. Comment on “Understanding first-order Raman spectra of boron carbides across the homogeneity range”
14. Comment on “Raman Spectra Characterization of Boron Carbide Using First-Principles Calculations” by T. Sahu, a. Bhattacharyya, a. N. Gandi
15. Electrical Conductivity of Boron Carbide from 5 to 2100 K in the Whole Homogeneity Range
16. On Microstructure and Electronic Properties of Boron Carbide
17. On the Electronic Transport Properties of Boron Carbide
18. Optical Properties of Boron-Rich Solids with Icosahedral Structure
19. Low temperature specific heat anomaly with boson peak in isotope-enriched boron carbides B₄·₃C – B₁₀C
20. Experimentally Founded Charge Transport Model for Icosahedral Boron-Rich Solids
21. Raman Effect in Boron and Boron-Rich Compounds
22. Phonon peculiarities at the high-pressure phase transition of B₄.₃C boron carbide
23. Boron and Boron-Rich Compounds
24. Carbon in β-rhombohedral boron
25. Assignment of the electronic transitions in B₄.₃C boron carbide implies a specifically distorted crystal structure
26. Phonon peculiarities at the high-pressure phase transition of B4.3C boron carbide
27. Systematic error in conventionally measured Raman spectra of boron carbide—A general issue in solid state Raman spectroscopy
28. Assignment of the electronic transitions in B4.3C boron carbide implies a specifically distorted crystal structure
29. Comment on: Structural Stability of Boron Carbide under Pressure Proven by Spectroscopic Studies up to 73 GPa (Z. Anorg. Allg. Chem. 643, 1357 (2017))
30. High-pressure phase transition makes B
31. Mode Grüneisen parameters of boron carbide
32. Comment on “New Ground-State Crystal Structure of Elemental Boron”
33. Confined raman scattering : easy access to the surface phonons of specific crystalline solids
34. High-pressure phase transition makes B4.3C boron carbide a wide-gap semiconductor
35. Is the established structure of α-rhombohedral boron correct? Comparative study of IR-active phonons with B ₆O, B ₄.₃C and β-rhombohedral boron
36. Confined Raman Scattering - Easy Access to the Surface Phonons of Specific Crystalline Solids
37. Dynamical conductivity of boron carbide: heavily damped plasma vibrations
38. Raman effect in icosahedral boron-rich solids
39. Electronic transport in p-type and n-type /spl beta/-rhombohedral boron
40. Advanced microstructure of boron carbide
41. Is the established structure of α-rhombohedral boron correct? Comparative study of IR-active phonons with B6O, B4.3C and β-rhombohedral boron
42. Gap‐state related photoluminescence in boron carbide
43. Raman effect in icosahedral boron-rich solids
44. Fractional photoconductivity glow curves of β-rhombohedral boron
45. Reliable measurement of Seebeck coefficient in semiconductors
46. Present knowledge of electronic properties and charge transport of icosahedral boron-rich solids
47. ON MICROSTRUCTURE AND ELECTRONIC PROPERTIES OF BORON CARBIDE.
48. On the electronic properties of icosahedral quasicrystals
49. Boron-rich solids: A chance for high-efficiency high-temperature thermoelectric energy conversion
50. Solid solutions of silicon in boron-carbide-type crystals
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