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Results 1 to 25 of 1361

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Direct proof of phase and amplitude modulated CDW in TTF-TCNQ with STMWANG, Z. Z; GIRARD, J. C; PASQUIER, C et al.Journal de physique. IV. 2002, Vol 100, issn 1155-4339, p. Pr9.43Conference Paper

μSR study of an antiferromagnetic insulator (BEDT-TTF)(TCNQ)SATOH, Kazuhiko; FUJITA, Hidemi; SATO, Ryosuke et al.Physica. B, Condensed matter. 2006, Vol 374-75, pp 102-105, issn 0921-4526, 4 p.Conference Paper

A helium atom scattering study of well-ordered TCNQ adlayers on Cu(100)FLADISCHER, Katrin; POLITANO, Antonio; ERNST, Wolfgang E et al.Surface science. 2014, Vol 620, pp 65-69, issn 0039-6028, 5 p.Article

Measuring energies at the nanometer-scale of molecular organic materials with an atomic force microscope : TTF-TCNQ as a case studyFRAXEDAS, J; LANGER, J; DIEZ, I et al.Journal of low temperature physics. 2006, Vol 142, Num 3-4, pp 121-126, issn 0022-2291, 6 p.Conference Paper

Enhanced field emission and patterned emitter device fabrication of metal-tetracyanoquinodimethane nanowires arrayKAIBO ZHENG; XIANYI LI; XIAOLIANG MO et al.Applied surface science. 2010, Vol 256, Num 9, pp 2764-2768, issn 0169-4332, 5 p.Article

The magnetic susceptibility of some simple TCNQ salts containing highly aromatic cationsBEALES, T. P.Journal of materials science letters. 2000, Vol 19, Num 6, pp 465-467, issn 0261-8028Article

The magnetic properties of a series of bipyridyl TCNQ complex saltsBEALES, T. P.Journal of materials science letters. 2000, Vol 19, Num 5, pp 397-399, issn 0261-8028Article

The magnetic behavior of some TCNQ complexes containing the triphenyl phosphonium cationBEALES, T. P.Journal of materials science letters. 1999, Vol 18, Num 15, pp 1221-1223, issn 0261-8028Article

Scanning tunneling microscopy study of the one-dimensional organic conductor TTF-TCNQQUIVY, A; DELTOUR, R; VAN BENTUM, P. J. M et al.Surface science. 1995, Vol 325, Num 1-2, pp 185-192, issn 0039-6028Article

Pulsed photoconduction in TCNQ complex saltsELEY, D. D; KINNEAR, S; WILLIS, M. R et al.Synthetic metals. 1994, Vol 64, Num 2-3, pp 233-238, issn 0379-6779Article

Specific heat of TSeF-TCNQPOWELL, D. K; MIEBACH, T; CHENG, S.-L et al.Solid state communications. 1997, Vol 104, Num 2, pp 95-99, issn 0038-1098Article

Electronic memory switching in a new charge transfer-complex thin filmWANG, K. Z; XUE, Z. Q; OUYANG, M et al.Solid state communications. 1995, Vol 96, Num 7, pp 481-484, issn 0038-1098Article

Cation effect on structural and physical properties of purely one-dimensional electronic system [D](CPDT-TCNQ)2 [D=Cation]YAMAURA, J; FUJIWARA, M; KATO, R et al.Synthetic metals. 2001, Vol 120, Num 1-3, pp 913-914, issn 0379-6779Conference Paper

Photo- and electroluminescence for TCNQ-amino adductsKAGAWA, Yasuyuki; TAKADA, Noriyuki; MATSUDA, Hiro et al.Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystals. 2000, Vol 349, pp 499-502, issn 1058-725XConference Paper

ORGANIC METALS; MONO- AND 2,5-DI-SUBSTITUTED 7,7,8,8-TETRACYANO-P-QUINODIMETHANES AND CONDUCTIVITIES OF THEIR CHARGE-TRANSFER COMPLEXESANDERSEN JR; JERGENSEN O.1979; J. CHEM. SOC., PERKIN TRANS., 1; GBR; DA. 1979; NO 12; PP. 3095-3098; BIBL. 22 REF.Article

New phase of (BEDT-TTF)(TCNQ)YAMAMOTO, H. M; HAGIWARA, M; KATO, R et al.Synthetic metals. 2003, Vol 133-34, pp 449-451, issn 0379-6779, 3 p.Conference Paper

Magnetooptical measurements of β-(BEDT-TTF)(TCNQ)KIMATA, M; OSHIMA, Y; OHTA, H et al.Physica. B, Condensed matter. 2004, Vol 346-47, pp 382-386, issn 0921-4526, 5 p.Conference Paper

Evaporation rate and saturated vapor pressure of functional organic materialsYASE, K; TAKAHASHI, Y; ARA-KATO, N et al.Japanese journal of applied physics. 1995, Vol 34, Num 2A, pp 636-637, issn 0021-4922, 1Article

What Happens at the Interface between TTF and TCNQ Crystals (TTF = Tetrathiafulvalene and TCNQ = 7,7,8,8-Tetracyanoquinodimethane)?TAKAHASHI, Yukihiro; HAYAKAWA, Kei; NAITO, Toshio et al.Journal of physical chemistry. C. 2012, Vol 116, Num 1, pp 700-703, issn 1932-7447, 4 p.Article

Study of C-I-C CDW phase transition in TTF-TCNQ with STMWANG, Z. Z; GIRARD, J. C; PASQUIER, C et al.Synthetic metals. 2003, Vol 133-34, pp 23-26, issn 0379-6779, 4 p.Conference Paper

Filling control of the 1-D band of TCNQ in H-bonded organic-inorganic hybrid systemYOSHIDA, D; KITAGAWA, H; MITANI, T et al.Synthetic metals. 1997, Vol 86, Num 1-3, pp 2105-2106, issn 0379-6779Conference Paper

Temperature-dependent electrical and magnetic properties of C22-Quinolinium(TCNQ) Langmuir-Blodgett filmsTAE WAN KIM; SHIN, D.-M; KANG, D.-Y et al.Synthetic metals. 1997, Vol 86, Num 1-3, pp 2123-2124, issn 0379-6779Conference Paper

The magnetic susceptibility of NH+4 TCNQ-BEALES, T. P.Journal of materials science letters. 1999, Vol 18, Num 7, pp 529-531, issn 0261-8028Article

Characterization of nitrates, perrhenate and TCNQ salts based on TTF derivativesBABONNEAU, M. T; DARVICHE, F. D; CRISTAU, H. J et al.Synthetic metals. 1999, Vol 102, Num 1-3, issn 0379-6779, p. 1791Conference Paper

Magnetization of an organic ion-radical salt : 1,3'-diethyl-2,2'-quinoselenacyanine-[TCNQ]2TAKAGI, S.Journal of the Physical Society of Japan. 1994, Vol 63, Num 7, pp 2837-2838, issn 0031-9015Article

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