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Complex changes in structural parameters hidden in the universal phase diagram of the quasi-one-dimensional organic conductors
(TMTTF)2X
(
X=NbF6, AsF6, PF6
, and Br)
Charge and anion ordering in the quasi-one-dimensional organic conductor
(TMTTF)2NO3
Olga Iakutkina, Lena Nadine Majer, Guilherme Gorgen Lesseux, Gabriele Untereiner and Martin Dressel Physical Review B 103(15) (2021) https://doi.org/10.1103/PhysRevB.103.155126
One-dimensional electronic systems: metal-chain complexes and organic conductors
Charge-Order Phase Transition in the Quasi One-Dimensional Organic Conductor $${\hbox {(TMTTF)}}_2 {\hbox {NO}}_3$$
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One-Dimensional Alternating Extended Hubbard Model at Quarter-Filling and Its Applications to Structural Instabilities of Organic Conductors
Fermi surface electron–hole instability of the (TMTSF)2PF6 Bechgaard salt revealed by the first-principles Lindhard response function
Bogdan Guster, Miguel Pruneda, Pablo Ordejón, Enric Canadell and Jean-Paul Pouget Journal of Physics: Condensed Matter 32(34) 345701 (2020) https://doi.org/10.1088/1361-648X/ab8522
Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me2TTF)2NO3
Structural and Electronic Properties of (TMTTF)2X Salts with Tetrahedral Anions
Roland Rösslhuber, Eva Rose, Tomislav Ivek, Andrej Pustogow, Thomas Breier, Michael Geiger, Karl Schrem, Gabriele Untereiner and Martin Dressel Crystals 8(3) 121 (2018) https://doi.org/10.3390/cryst8030121
Seebeck coefficient in correlated low-dimensional organic metals
Periodic Hartree–Fock and hybrid density functional calculations on the metallic and the insulating phase of (EDO-TTF)2PF6
Gerrit-Jan Linker, Paul H. M. van Loosdrecht, Piet Th. van Duijnen and Ria Broer Physical Chemistry Chemical Physics 17(45) 30371 (2015) https://doi.org/10.1039/C5CP05187H
Donor–anion interactions at the charge localization and charge ordering transitions of (TMTTF)2AsF6 probed by NEXAFS
K. Medjanik, A. Chernenkaya, S. A. Nepijko, et al. Physical Chemistry Chemical Physics 17(29) 19202 (2015) https://doi.org/10.1039/C5CP02902C
Electrical transport near quantum criticality in low-dimensional organic superconductors
The Physics of Organic Superconductors and Conductors
C. Bourbonnais and D. Jérome Springer Series in Materials Science, The Physics of Organic Superconductors and Conductors 110 357 (2008) https://doi.org/10.1007/978-3-540-76672-8_12
The Physics of Organic Superconductors and Conductors
P. Monceau, J. -C. Lasjaunias, K. Biljaković and F. Nad Springer Series in Materials Science, The Physics of Organic Superconductors and Conductors 110 277 (2008) https://doi.org/10.1007/978-3-540-76672-8_10
Characterization of the anion-ordering transition in(TMTTF)2ReO4by x-ray absorption and photoemission spectroscopies
A Genuine Quarter‐Filled Band Mott Insulator, (EDT‐TTF‐CONMe2)2AsF6: Where the Chemistry and Physics of Weak Intermolecular Interactions Act in Unison
K. Heuzé, M. Fourmigué, P. Batail, C. Coulon, R. Clérac, E. Canadell, P. Auban‐Senzier, S. Ravy and D. Jérome Advanced Materials 15(15) 1251 (2003) https://doi.org/10.1002/adma.200305247
Evidence for spin–charge separation in quasi-one-dimensional organic conductors
Raman Spectra of (Me2-DCNQI)2CuxLi1-x(0≤x ≤1): The Evidence for Charge Separation at Room Temperature in a One-Dimensional Conductor Having a Quarter-Filled Band
Takashi Yamamoto, Hiroyuki Tajima, Reizo Kato, Mikio Uruichi and Kyuya Yakushi Journal of the Physical Society of Japan 71(8) 1956 (2002) https://doi.org/10.1143/JPSJ.71.1956
Frontiers of High Pressure Research II: Application of High Pressure to Low-Dimensional Novel Electronic Materials
H. Wilhelm, D. Jaccard, D. Jérome, et al. Frontiers of High Pressure Research II: Application of High Pressure to Low-Dimensional Novel Electronic Materials 423 (2001) https://doi.org/10.1007/978-94-010-0520-3_32
From spin-Peierls to superconductivity: (TMTTF)2PF6under high pressure
Bond-order and charge-density waves in the isotropic interacting two-dimensional quarter-filled band and the insulating state proximate to organic superconductivity
Theoretical Study on the Charge Gap of Organic Conductor - Bechgaard Salts -
Masahisa Tsuchiizu, Hideo Yoshioka and Yoshikazu Suzumura Journal of the Physical Society of Japan 68(6) 1809 (1999) https://doi.org/10.1143/JPSJ.68.1809
Structures and Conducting Properties of CPTM-TTP Salts
Yohji Misaki, Kazuya Kawakami, Hideki Fujiwara, Tokio Yamabe, Takehiko Mori, Hatsumi Mori and Shoji Tanaka Chemistry Letters 24(12) 1125 (1995) https://doi.org/10.1246/cl.1995.1125
Crystal structure, ESR and conductivity studies of bis(ethylenedithio)tetrathiafulvalene (ET) organic conductor (H8-ET)2[Hg(SCN)2Br] and its deuterated analogue (D8-ET)2[Hg(SCN)2Br]
Physical Features of Low Dimensional Organic Super-conductors
J. P. Pouget Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 230(1) 101 (1993) https://doi.org/10.1080/10587259308032220
Structure and solid state properties of the conductive salt of (phthalocyaninato)cobalt, CoPc(AsF6)0.5
Prediction of the stoichiometry of cation radical salts of organic metals by thin layer cyclic voltammetry
Roger Carlier, Pierre Frère, Marc Sallé, Jean Roncali, Michel Jubault, André Tallec and Alain Gorgues Advanced Materials 5(6) 445 (1993) https://doi.org/10.1002/adma.19930050606
EPR studies of a new family of organic conductors: Dimethyl(ethylenedithio)diselenadithiafulvalene compounds (DMET)2X [X=PF6,BF4, Au(CN)2,I3, andAuBr2]
Presure Dependence of SDW Properties in the Organic Conductor, (TMTSF)2PF6
Toshihiro Takahashi, Hiroki Kawamura, Teruo Ohyama, et al. Journal of the Physical Society of Japan 58(2) 703 (1989) https://doi.org/10.1143/JPSJ.58.703
Physical Properties and Concepts for Organic Conductors
X-ray scattering evidence for dimerization (4 kF) and spin-Peierls distortion (2 kF) in silver salts of dicyanoquinodiimine (2,5 MR-DCNQI )2 Ag (R = CH3, Cl or Br, M = CH3)
Voltammetric Study of Organic Metals. I. The Determination of the Electrochemical Conditions for Crystal Growth
Sachiko Sakura, Hideo Imai, Hiroyuki Anzai and Tetsuo Moriya Bulletin of the Chemical Society of Japan 61(9) 3181 (1988) https://doi.org/10.1246/bcsj.61.3181