Kigook Song, Robert D. Miller, et al.
Macromolecules
Magnetic susceptibility as well as optical reflectivity data in the metallic regime of the conductivity of HMTTF-TCNQ are presented. It is shown that: 1. (1) The spin susceptibility of the donor stack is temperature independent in the temperature range of the metallic conductivity 50 ≤T≤300 K. 2. (2) By comparing the magnitude of this susceptibility with the value estimated from plasma frequency measurements based on the model of non-interacting electrons, we conclude that the donor stack susceptibility is not enhanced. 3. (3) A comparison of data on the three compounds (HMTTF, TTF, TSeF)-TCNQ leads to the conclusion that the donor stack susceptibility is enhanced only in TTF-TCNQ. © 1977.
Kigook Song, Robert D. Miller, et al.
Macromolecules
P. Alnot, D.J. Auerbach, et al.
Surface Science
David B. Mitzi
Journal of Materials Chemistry
L.K. Wang, A. Acovic, et al.
MRS Spring Meeting 1993