NIST Standard Reference Database 30
Last Update to Data Content: 2002
"Thermal Conductivity of Natural and Synthetic Diamonds with Differing Isotope Contents," Y.Z. Qiu, A. Witek, D.G. Onn, T.R. Anthony, and W.F. Banholzer, Thermochimica Acta, Vol. 218, pp. 257-268 (1993), published by Elsevier Science B.V..Language: English
"The free standing diamond films were synthesized at the General Electric Company using CVD techniques. The natural abundance film contained 1.1% of 13 C while the "pure" film contained only 0.04% of 13 C as determined by mass spectroscopic analysis of the combustion products of pieces of the films."
"The thermal conductivity of free standing diamond film samples was measured between 90 K and 500 K using a guarded longitudinal bar system designed to minimize errors attributable to thermal radiation up to at least 550 K. The film samples are surrounded by a thermal guard whose temperature gradient is controlled to match that of the sample. The entire assembly in turn is enclosed within a uniform furnace, the temperature of which is also controlled to provide an ambient temperature matched to the average temperature of the sample. The film samples measured were about 5 cm x 0.8 cm x 0.06 cm. Type K thermocouples about 2 cm apart were used as temperature sensors, with heat input provided by a small wire wound heater."
| Atom Fraction of 13 C ( % ) |
Temperature ( K ) |
Thermal Conductivity ( W m-1 K-1 ) |
|---|---|---|
| 1.1 | 87 | 148 |
| 1.1 | 90 | 174 |
| 1.1 | 96 | 200 |
| 1.1 | 100 | 217 |
| 1.1 | 116 | 330 |
| 1.1 | 122 | 383 |
| 1.1 | 135 | 470 |
| 1.1 | 155 | 635 |
| 1.1 | 158 | 653 |
| 1.1 | 171 | 749 |
| 1.1 | 190 | 827 |
| 1.1 | 193 | 844 |
| 1.1 | 200 | 853 |
| 1.1 | 219 | 897 |
| 1.1 | 241 | 931 |
| 1.1 | 261 | 983 |
| 1.1 | 286 | 1009 |
| 1.1 | 290 | 1001 |
| 1.1 | 293 | 992 |
| 1.1 | 306 | 974 |
| 1.1 | 318 | 974 |
| 1.1 | 341 | 948 |
| 1.1 | 360 | 922 |
| 1.1 | 376 | 904 |
| 1.1 | 395 | 886 |
| 1.1 | 446 | 842 |
| 1.1 | 475 | 833 |
| 1.1 | 514 | 781 |
| 1.1 | 546 | 781 |
| 0.04 | 90 | 95 |
| 0.04 | 90 | 104 |
| 0.04 | 96 | 121 |
| 0.04 | 116 | 208 |
| 0.04 | 132 | 287 |
| 0.04 | 151 | 400 |
| 0.04 | 161 | 470 |
| 0.04 | 164 | 487 |
| 0.04 | 183 | 600 |
| 0.04 | 187 | 609 |
| 0.04 | 206 | 687 |
| 0.04 | 206 | 713 |
| 0.04 | 228 | 801 |
| 0.04 | 251 | 853 |
| 0.04 | 270 | 879 |
| 0.04 | 289 | 870 |
| 0.04 | 289 | 879 |
| 0.04 | 309 | 852 |
| 0.04 | 309 | 870 |
| 0.04 | 331 | 843 |
| 0.04 | 344 | 817 |
| 0.04 | 344 | 826 |
| 0.04 | 363 | 799 |
| 0.04 | 382 | 782 |
| 0.04 | 424 | 782 |
| 0.04 | 440 | 781 |
| 0.04 | 459 | 755 |
| 0.04 | 478 | 755 |
| 0.04 | 494 | 746 |
| 0.04 | 510 | 737 |
Data were digitized from Fig. 1 of the reference.