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Cited by 34 publications
(20 citation statements)
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“…To give a 0 2D , S vib (1) or S m was evaluated with H m (1) = 132 kJ mol À1 and T m (1) = 5500 K taken from graphite. [64,65] To give E R c , the respective values of E C=C and E CÀR are 4. uration. The reason for this ordering is the change of the cohesive energy of the edge C atoms determined by E C=C and E CÀR .…”
Section: Resultsmentioning
confidence: 99%
“…To give a 0 2D , S vib (1) or S m was evaluated with H m (1) = 132 kJ mol À1 and T m (1) = 5500 K taken from graphite. [64,65] To give E R c , the respective values of E C=C and E CÀR are 4. uration. The reason for this ordering is the change of the cohesive energy of the edge C atoms determined by E C=C and E CÀR .…”
Section: Resultsmentioning
confidence: 99%
“…The conductivity of carbon varies in a wide range from 240 to 1250 Ohm −1 cm −1 . The condutivity of highly oriented graphite can be as high as 2 • 10 4 Ohm −1 cm −1 [12,13].…”
Section: Methodsmentioning
confidence: 99%
“…39 The liquid state of carbon is possible at the detonation 10 which has conductivity ∼ 1000 Ohm 1 cm 1 . 39 A carbon rod with a mass of 0.6 g and a length l = 1 cm with a conductivity of carbon σ C ≈ 1000 Ohm 1 cm 1 (work 34 ) has effective conductivity σ ≈ 240 Ohm 1 cm 1 which is close to the experimental data. This value describes the process better than the estimates based on the thermal emission.…”
Section: Contact Mechanism Of Electric Conductivitymentioning
confidence: 99%
“…37,38 The conductivity of highly-oriented graphite can be as large as 20000 Ohm −1 cm −1 . 39 The liquid state of carbon is possible at the detonation 10 which has conductivity ∼ 1000 Ohm −1 cm −1 . 39 A carbon rod with a mass of 0.6 g and a length l = 1 cm with a conductivity of carbon σ C ≈ 1000 Ohm −1 cm −134 has effective conductivity σ ≈ 240 Ohm −1 cm −1 which is close to the experimental data.…”
Section: Contact Mechanism Of Electric Conductivitymentioning
confidence: 99%