List of Publications (2004〜2000)
【2004】
学術論文 (1) M.
Hata, H. Akutsu, J. Yamada, S. Nakatsuji, “N-Salicylideneamine Derivatives with TEMPO Substituents,” Molecules (Special Issue) 9, 746–756 (2004). (2) M.
Fujino, T. Amano, H. Akutsu, J. Yamada, S. Nakatsuji, “Azobenzene derivatives
with a long alkyl chain and aminoxyls,” Chem.
Commun. 2310–2311 (2004). (3) K.
Furuta, H. Akutsu, J. Yamada, S. Nakatsuji, “A Novel BEDT-TTF-based Organic
Conducting Salt with a Ferrocene-containing Dianion, a-(BEDT-TTF)4(Fe(Cp-CONHCH2SO3)2)·4H2O,”
Chem. Lett. 33, 1214–1215 (2004). (4) E. S.
Choi, D. Graf, J. S. Brooks, J. Yamada, H. Akutsu, K. Kikuchi, M. Tokumoto,
“Pressure-dependent ground states and Fermiology in b-(BDA-TTP)2MCl4 (M = Fe, Ga),” Phys. Rev. B 70, 024517–1–8 (2004). (5) H.
Nishikawa, Y. Sato, T. Kodama, K. Kikuchi, I. Ikemoto, J. Yamada, “Magnetic
properties of superconducting salts, (DODHT)2X (X = AsF6,
PF6 and BF4),” J.
Phys. IV France 114, 565–567
(2004). (6) R.
Shibaeva, S. Khasano, L. Zorina, S. Simonov, I. Shevyakova, L. Kushch, L.
Buravov, E. Yagubskii, S. Baudron, C. Méziére, P. Batail, E. Canadell, J.
Yamada, “Exploitation of the photochromic nitroprusside anion [FeNO(CN)5]2–
as counterion for constructing molecular conductors: The first radical cation
salts based on BDH-TTP and the amide functionalized derivatives of EDT-TTF,” J. Phys. IV France 114, 481–485 (2004). (7) J.
Yamada, “A new approach in the design of organic superconductors,” J. Phys. IV France 114, 439–443 (2004). (8) M.
Tokumoto, K. Ishii, H. Tanaka, H. Akutsu, J. Yamada, E. S. Choi, J. S.
Brooks, K. Ishida, “Magnetic properties of the new p-d organic superconductor b-(BDA-TTP)2FeCl4,” J. Phys. IV France 114,
385–386 (2004). (9) E. S.
Choi, D. Graf, J. S. Brooks, J. Yamada, M. Tokumoto, “The
pressure-temperature phase diagram of pressure induced organic
superconductors b-(BDA-TTP)2MCl4
(M = Ga, Fe),” J. Phys. IV France 114, 297–299 (2004). (10) S.
Takahashi, A. E. Kovaley, S. Hill. S. Takasaki, J. Yamada, H. Anzai, J. S.
Qualls, K. Kawano, M. Tamura, T. Naito, H. Kobayashi, “FERMI SURFACE STUDIES
OF QUASI-1D AND QUASI-2D ORGANIC SUPERCONDUCTORS USING PERIODIC ORBIT RESONANCE
IN HIGH MAGNETIC FIELD,” Int. J. Mod.
Phys. B 18, 3499–3504 (2004). (11) I.
Shevyakova, L. Buravov, V. Tkacheva, L. Zorina, S. Khasanov. S. Simonov, J.
Yamada, E. Canadell, R. Shibaeva, E. Yagubskii, “New organic metals based on
BDH-TTP radical cation salts with the photochromic nitroprusside anion
[FeNO(CN)5]2–,” Adv.
Funct. Mater. 14, 660–668
(2004). (12) T.
Amano, H. Akutsu, J. Yamada, S. Nakatsuji, “Structures and Magnetic
Properties of Organic Biradical Compounds with an Aromatic Core and Long
Alkyl Groups,” Chem. Lett. 33, 382–383 (2004). (13) H.
Akutsu, A. Akutsu-Sato, S. S. Turner, P. Day, E. Canadell, S. Firth, R. J. H.
Clark, J. Yamada, S. Nakatsuji, “Superstructures of donor packing
arrangements in a series of molecular charge transfer salts,” Chem. Commun. 18–19 (2004). 著書(編集) (1) TTF Chemistry—Fundamentals and Applications of
Tetrathiafulvalene, eds. J. Yamada, T.
Sugimoto, Kodansha & Springer, Tokyo, 2004. 著書(分担執筆) (1) J.
Yamada, H. Nishikawa, K. Kikuchi, “Chapter 11: Dihydro-TTFs and Bis-fused
1,3-Dothiol-2-ylidene Donors,” TTF
Chemistry—Fundamentals and Applications of Tetrathiafulvalene, eds. J.
Yamada, T. Sugimoto, Kodansha & Springer, Tokyo, 339–364 (2004). (2) J.
Yamada, T. Sugimoto, Y. Misaki, “Chapter 14: Donor Systems with
Multi-1,3-dithiol-2-ylidene Units,” TTF
Chemistry—Fundamentals and Applications of Tetrathiafulvalene, eds. J.
Yamada, T. Sugimoto, Kodansha & Springer, Tokyo, 339–364 (2004). 総説 (1) J.
Yamada, H.
Akutsu, H. Nishikawa, K. Kikuchi, “New
Trends in the Synthesis of p-Electron
Donors for Molecular Conductors and Superconductors,” Chem.
Rev. (Thematic Issue on “Molecular Conductors”) 104,
5057–5084 (2004). (2) J.
Yamada, “New
approach to the achievement of organic superconductivity,” J. Mater. Chem. (Highlight) 14, 2951–2953 (2004). 【2003】
学術論文 (1) F.
Setifi, L. Ouahabe, S. Golhen, A. Miyazaki, T. Enoki, J. Yamada, “New Bulk
Weak Ferromagnetic Chains of Molecular Material based on DTDH-TTP and
Paramagnetic Thiocyanato Complex Anion: (DTDH-TTP) [Cr(isoq)2(NCS)4],”
C. R. Chimie 6, 309–316 (2003). (2) H.
Ito, Y. Hasegawa, M. Hanada, K. Kato, J. Yamada, G. Saito, “Shubnikov-de Haas
oscillations in the superconducting fluctuation region of k-(BEDT-TTF)2Cu(NCS)2,” Physica C 388–389, 593–594
(2003). (3) K.
Nomura, T. Terazaki, A. Hoshikawa, N. Matsunaga, M. Watanabe, S. Nakatsuji,
J. Yamada, “Non-linear Conductivity in the Spin-Density Wave Phase of
(TMTSF-d12)2ClO4,” Physica B 329–333, 1193–1194 (2003). (4) N.
Matsunaga, K. Yamashita, T. Oota, K. Nomura, T. Sasaki, T. Hanajiri, J.
Yamada, S. Nakatsuji, “Field-induced SDW phase diagram of (TMTSF)2PF6
at high magnetic fields,” Physica B
329–333, 1154–1155 (2003). (5) A.
Miyazaki, K. Okabe, K. Enomoto, J. Nishijo, T. Enoki, F. Setifi, S. Golhen,
L. Ouahab, T. Toita, J. Yamada, “p-d
Interaction-based Molecular Magnets,” Polyhedron
22, 2227–2234 (2003). (6) H.
Akutsu, J. Yamada, S. Nakatsuji, “New BEDT-TTF-based Organic Conductor
Including an Organic Anion Derived from the TEMPO Radical, a-(BEDT-TTF)3(TEMPO-NHCOCH2SO3)2·6H2O,”
Chem. Lett. 32, 1118– 1119 (2003). (7) H.
Akutsu, J. Yamada, S. Nakatsuji, “Tetrathiafulvalenium
4-oxo-2,2,6,6,-tetramethylpiperidin-1-sulfate,” Acta Cryst. E59,
o1441–o1443 (2003). (8) J.
Yamada, T. Toita, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K.
Kikuchi, E. S. Choi, D. Graf, J. S. Brooks, “A new organic superconductor, b-(BDA-TTP)2GaCl4
[BDA-TTP = 2,5-(1,3-dithian-2-ylidene)-1,3,4,6- tetrathiapentalene],” Chem. Commun. 2230–2231 (2003). (9) A. E.
Kovalev, S. Hill, S. Takahashi, T. N. Dhakal, S. Takasaki, J. Yamada, H.
Anzai, J. S. Brooks, “Periodic orbit resonance in (TMTSF)2ClO4,”
J. Appl. Phys. 93, 8665–8667 (2003). (10) H.
Akutsu, J. Yamada, S. Nakatsuji, “Tetraphenyl phosphonium 4-hydroxy-2,2,6,6-tetramethylpiperidinyloxy-
4-sulfonate,” Acta Cryst. C59, o433–o434 (2003). (11) T.
Kaneko, H. Akutsu, J. Yamada, S. Nakatsuji, “Photochromic Radical Compounds
Based on a Naphtopyran System,” Org.
Lett. 5, 2127–2129 (2003). (12) A.
Lapinski, R. Swietlik, F. Setifi, L. Ouahab, S. Golhen, J. Yamada,
“Temperature dependence of the IR reflectance spectra of molecular crystals: k-(EDDH-TTP)3[Cr(phen)(NCS)4]·2CH2Cl2
and k21-(BDH-TTP)5 Cr(phen)(NCS)4]2·2CH2Cl2,”
J. Mol. Struct. 651–653, 683–687 (2003). (13) M. A.
Tanatar, M. Suzuki, T. Ishiguro, H. Tanaka, H. Fujiwara, H. Kobayashi, T.
Toita, J. Yamada, “Thermal conductivity of organic superconductors in
oriented magnetic field,” Synth. Met.
137, 1291–1293 (2003). (14) E.
Ohmichi, T. Osada, J. Yamada, “Magnetic torque of BEDT-TTF organic
superconductors in pulsed magnetic fields,” Synth. Met. 137,
1277–1278 (2003). (15) H.
Nishikawa, T. Morimoto, A. Machida, T. Kodama, I. Ikemoto, K. Kikuchi, J.
Yamada, H. Yoshino, K. Murata, “Structures and properties of radical salts of
DODHT derivatives,” Synth. Met. 137, 1253–1254 (2003). (16) H.
Ito, A. Ishihara, M. Hanada, G. Saito, J. Yamada, “Resistivity Anisotropy and
Phase Diagram of the k-Type
BEDT-TTF Salts,” Synth. Met. 137, 1221–1222 (2003). (17) K.
Kikuchi, H. Nishikawa, T. Morimoto, T. Kodama, I. Ikemoto, J. Yamada,
“Structural studies of DODHT superconductor and related salts,” Synth. Met. 137, 1199–1200 (2003). (18) A.
Miyazaki, K. Okabe, T. Enoki, F. Setifi, S. Golhen, L. Ouahab, T. Toita, J.
Yamada, “Weak ferromagnetism of (BDH-TTP)[M(isoq)2(NCS)4]
(M = Cr, Fe; isoq = isoquinoline),” Synth.
Met. 137, 1195–1196 (2003). (19) F.
Setifi, L. Ouahab, A. Miyazaki, T. Enoki, J. Yamada, “New Organic-Inorganic
Hybrid Materials based on DTDH-TTP and Paramagnetic Isothiocyanato Complex
Anion: (DTDH-TTP)2[Cr(phen)(NCS)4]·CH2Cl2,”
Synth. Met. 137, 1177–1179 (2003). (20) Y.
Shimojo, T. Trung, M. A. Tanatar, T. Ishiguro, T. Toita, J. Yamada,
“Superconductivity and electronic structure of b-(BDA-TTP)2SbF6,” Synth. Met. 137,
1169–1171 (2003). (21) K.
Yokoyama, H. Nishikawa, K. Kikuchi, T. Kodama, I. Ikemoto, J. Yamada,
“Crystal structures and physical properties of new Ni complexes with
dihydro-TTF dithiolate,” Synth. Met.
135–136, 659–660 (2003). (22) N.
Matsunaga, K. Yamashita, A. Ayari, P. Monceau, A. Ishikawa, K. Nomura, M.
Watanabe, J. Yamada, S. Nakatsuji, “Cooling rate dependence of rapid
oscillations in deuterate (TMTSF)2ClO4 at high magnetic
fields,” Synth. Met. 135–136, 621–622 (2003). (23) J.
Yamada, T. Toita, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K. Kikuchi,
“Organic conductors based on unsymmetrical BDY donors,” Synth. Met. 135–136, 539–540 (2003). (24) E.
Ohmichi, T. Ishiguro, J. Yamada, H. Anzai, T. Osada, “Upper critical field of
k-(BEDT-TTF)2X (X
= Cu[N(CN)2]Br, Cu(NCS)2) in magnetic fields parallel
to the layer,” Synth. Met. 133–134, 245–246 (2003). (25) H.
Ito, Y. Hasegawa, A. Ishihara, S. Takasaki, J. Yamada, H. Anzai, “Uniaxial
compression effect on the resistive behavior of k-(BEDT-TTF)2Cu(NCS)2,” Synth. Met. 133–134, 233–234 (2003). (26) T.
Mizutani, M. Tokumoto, T. Kinoshita, J. S. Brooks, Y. Uwatoko, O. Drozdova,
K. Yakushi, I. Tamura, H. Kobayashi, T. Mangetsu, J. Yamada, T. Sasaki, K.
Ishida, “Effect of uniaxial pressure in organic superconductor k-(BEDT-TTF)2Cu(NCS)2,” Synth. Met. 133–134, 229–231
(2003). (27) T.
Arai, T. Ishiguro, T. Mangetsu, J. Yamada, H. Anzai, “STM spectroscopy study
on the superconducting gap in (TMTSF)2ClO4,” Synth. Met. 133–134, 209–211
(2003). (28) Y.
Shimojo, S. Kamiya, M. A. Tanatar, E. Ohmichi, A. E. Kovalev, T. Ishiguro, H.
Yamochi, G. Saito, J. Yamada, H. Anzai, N. D. Kushch, R. B.
Lyubovskii, R. N. Lyubovskaya, E. B. Yagubskii, “Upper critical fields of
pressurized organic superconductors k-(BEDT-TTF)2X in the magnetic fields parallel to the
layer,” Synth. Met. 133–134, 197–200 (2003). (29) H.
Nishikawa, T. Morimoto, T. Kodama, I. Ikemoto, K. Kikuchi, J. Yamada, H.
Yoshino, K. Murata, “New organic superconductors from a donor with reduced p-system,” Synth.
Met. 133–134, 193–195 (2003). (30) J.
Yamada, M. Watanabe, T. Toita, H. Akutsu, S. Nakatsuji, H. Nishikawa, I.
Ikemoto, K. Kikuchi, “Physical properties and crystal structures of BDA-TTP
conductors,” Synth. Met. 133–134, 189–191 (2003). (31) K.
Yamashita, N. Matsunaga, K. Nomura, T. Sasaki, T. Hanajiri, J. Yamada, S.
Nakatsuji, H. Anzai, “Magnetic field dependence of the SDW phase in (TMTSF)2PF6
under pressure,” Synth. Met. 133–134, 63–64 (2003). (32) N.
Matsunaga, A. Ayari, P. Monceau, A. Ishikawa, K. Nomura, M. Watanabe, J.
Yamada, S. Nakatsuji, “Effect of the gap due to anion ordering in deuterated
(TMTSF)2ClO4 at high magnetic fields,” Synth. Met. 133–134, 61–62 (2003). (33) A.
Hoshikawa, T. Terazaki, N. Matsunaga, K. Nomura, M. Watanabe, S. Nakatsuji,
J. Yamada, “Electrical transport in the spin-density-wave phase of (TMTSF-d12)2ClO4,”
Synth. Met. 133–134, 57–59 (2003). (34) K.
Nomura, H. Kubota, M. Kotomizu, T. Hanajiri, S. Nakatsuji, J. Yamada, “1H
NMR in spin density wave phase of (TMTSF)2PF6,” Synth. Met. 133–134, 19–21 (2003). (35) S.
Nakatsuji, Y. Ogawa, H. Akutsu, J. Yamada, “Preparation and Magnetic
Properties of Radical Anion Salts Derived from Styrylpyrilium and the
Corresponding Photo-Dimers,” Bull.
Chem. Soc. Jpn. 76, 1245–1250
(2003). (36) J.
Yamada, M. Watanabe, T. Toita, H. Akustu, S. Nakatsuji, H. Nishikawa, I.
Ikemoto, K. Kikuchi, “DEVELOPMENT OF ORGANIC METALS AND SUPERCONDUCTORS FROM
A NON-TTF DONOR SYSTEM,” Mol. Cryst.
Liq. Cryst. 390, 121–130
(2003). (37) Y.
Ogawa, T. Ojima, T. Yamashita, H. Akutsu, J. Yamada, S. Nakatsuji,
“STRUCTURES AND PROPERTIES OF ORGANIC PHOTO-RESPONSIVE SPIN SYSTEMS,” Mol. Cryst. Liq. Cryst. 390, 97–104 (2003). (38) E. S.
Choi, E. Jobilong, A. Wade, E. Goetz, J. S. Brooks, J. Yamada, T. Mizutani,
T. Kinoshita, M. Tokumoto, “Fermiology and superconductivity studies on the
non-tetrachalcogenafulvalene structured organic superconductor b-(BDA-TTP)2SbF6,” Phys. Rev. B 67, 174511–1–8 (2003). (39) S.
Nakatsuji, H. Ikemoto, H. Akutsu, J. Yamada, A. Mori, “Novel Radical
Compounds Bearing Mesogenic Cores with Long Alkyl Substituents,” J. Org. Chem. 68, 1708–1714 (2003). (40) H.
Nishikawa, A. Machida, T. Morimoto, K. Kikuchi, T. Kodama, I. Ikemoto, J.
Yamada, H. Yoshino, K. Murata, “A new organic superconductor, (DODHT)2BF4·H2O,”
Chem. Commun. 494–495 (2003). 【2002】
学術論文 (1) K. Kikuchi,
H. Nishikawa, I. Ikemoto, T. Toita, H. Akutsu, S. Nakatsuji, J. Yamada,
“Tetrachloroferrate (III) Salts of BDH-TTP
[2,5-Bis(1,3-dithiolan-2-ylidene)-1,3,4,6-tetrathiapentalene] and BDA-TTP
[2,5-Bis(1,3-dithian-2- ylidene)-1,3,4,6-tetrathiapentalene]: Crystal
Structures and Physical Properties,” J.
Solid State Chem. (Special Issue) 168,
503–508 (2002). (2) N.
Matsunaga, A. Ayari, P. Monceau, A. Ishikawa, K. Nomura, M. Watanabe, J.
Yamada, S. Nakatsuji, “Role of the dimerized gap due to anion ordering in
spin-density wave phase of (TMTSF)2ClO4 at high
magnetic fields,” Phys. Rev. B 66, 024425–1–5 (2002). (3) F.
Setifi, S. Golhen, L. Ouahab, A. Miyazaki, K. Okabe, T. Enoki, T. Toita, J.
Yamada, “Bulk Weak Ferromagnet in Ferrimagnetic Chains of Organic-Inorganic
Hybrid Materials Based on BDH-TTP and Paramagnetic Thiocyanato Complex
Anions: (BDH-TTP)[M(isoq)2(NCS)4], M = CrIII,
FeIII,” Inorg. Chem. 41, 3786–3790 (2002). (4) F.
Setifi, L. Ouahab, S. Golhen, O. Hernandez, A. Miyazaki, T. Enoki, T. Toita,
J. Yamada, H. Nishikawa, A. Lapinski, R. Swietlik, “New
Tetrathiapentalene-Derived Charge Transfer Salts with Paramagnetic Transition
Metal Complex Anion: k-(EDDH-TTP)3[Cr(phen)(NCS)4]·2CH2Cl2
and k21-(BDH-TTP)5[Cr(phen)(NCS)4]2·
2CH2Cl2,” Inorg.
Chem. 41, 3761–3768 (2002). (5) N.
Matsunaga, A. Ayari, P. Monceau, K. Yamashita, A. Ishikawa, K. Nomura, M.
Watanabe, J. Yamada, S. Nakatsuji, “EISDW in quasi-one dimensional organic
conductors with the dimerized gap due to anion ordering,” J. Phys. IV France 12, Pr9-381–Pr9-384 (2002). (6) H.
Yoshino, K. Murata, Y. Yamamura, T. Tsuji, J. Yamada, S. Nakatsuji, H. Anzai,
H. Nishikawa, K. Kikuchi, I. Ikemoto, K. Saito, “ELECTRICAL PROPERTIES OF
ORGANIC CONDUCTORS AT HIGH TEMPERATURE,” Mol.
Cryst. Liq. Cryst. 380,
239–244 (2002). (7) M. Tokumoto,
T. Mizutani, T. Kinoshita, J. S. Brooks, Y. Uwatoko, O. Drozdova, K. Yakushi,
I. Tamura, H. Kobayashi, T. Mangetsu, J. Yamada, K. Ishida, “EFFECT OF
UNIAXIAL PRESSURE IN ORGANIC SUPERCONDUCTOR k-(BEDT-TTF)2Cu(NCS)2,” Mol. Cryst. Liq. Cryst. 380,
227–232 (2002). (8) J.
Yamada, M. Watanabe, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K.
Kikuchi, “NEW ORGANIC SUPERCONDUCTORS FROM A NON-TTF DONOR, BDA-TTP,” Mol. Cryst. Liq. Cryst. 380, 145–150 (2002). (9) S.
Nakatsuji, M. Mizumoto, H. Ikemoto, H. Akutsu, J. Yamada, “Preparation and
Properties of Organic Radical Compounds with Mesogenic Cores,” Eur. J. Org. Chem. 1912–1918 (2002). (10) J.
Yamada, M. Watanabe, T. Toita, H. Akutsu, S. Nakatsuji, H. Nishikawa, I.
Ikemoto, K. Kikuchi, “2-(1,3-Dithiolan-2-ylidene)-5-(1,3-dithian-2-ylidene)-1,3,4,6-tetrathiapentalene
(DHDA-TTP), a hybrid of BDH- TTP and BDA-TTP, and its metallic cation-radical
salts,” Chem. Commun. 1118–1119
(2002). (11) Y.
Shimojo, T. Ishiguro, T. Toita, J. Yamada, “Superconductivity of Layered
Organic Compound b-(BDA- TTP)2SbF6,
Where BDA-TTP is 2,5-Bis(1,3-dithian-2-ylidene)-1,3,4,6-tetrathiapentalene,” J. Phys. Soc. Jpn. 71, 717–720 (2002). (12) S.
Nakatsuji, T. Ojima, H. Akutsu, J. Yamada, “Anthracene Derivatives and the
Corresponding Dimers with TEMPO Radicals,”
J. Org. Chem. 67, 916–921
(2002). (13) H.
Nishikawa, T. Morimoto, T. Kodama, I. Ikemoto, K. Kikuchi, J. Yamada, H.
Yoshino, K. Murata, “New Organic Superconductors Consisting of an
Unprecedented p-Electron Donor,” J. Am. Chem. Soc. 124, 730–731 (2002). 【2001】
学術論文 (1) J.
Yamada, T. Toita, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K.
Kikuchi, “The crystal structure and physical properties of b-(BDA-TTP)2FeCl4
[BDA-TTP = 2,5-bis(1,3-dithian-2-ylidene)-1,3,4,6-tetrathiapenta- lene],” Chem. Commun. 2538–2539 (2001). (2) H.
Ikemoto, H. Akutsu, J. Yamada, S. Nakatsuji, “Aminoxyl radicals bearing a
mesogenic core,” Tetrahedron Lett. 42, 6873–6875 (2001). (3) V.
Bondarenko, S. Uji, T. Terashima, C. Terakura, S. Tanaka, S. Maki, J. Yamada,
S. Nakatsuji, “First observations of the heat capacity quantum oscillations
in the organic superconductor (BEDT-TTF)2Cu(NCS)2,” Synth. Met. 120, 1039–1040 (2001). (4) S.
Nakaharai, T. Ishiguro, J. Yamada, S. Takasaki, H. Anzai, “Scanning tunneling
spectroscopy of (TMTSF)2ClO4 under magnetic fields at
0.3 K,” Synth. Met. 120, 987–988 (2001). (5) S.
Uji, C. Terakura, T. Terashima, J. S. Brooks, S. Tanaka, S. Maki, S.
Nakatsuji, J. Yamada, “Interlayer conduction for bulk quantum hall systems
(TMTSF)2X,” Synth. Met. 120, 975–976 (2001). (6) N.
Matsunaga, H. Kotani, K. Yamashita, K. Nomura, T. Sasaki, T. Hanajiri, J.
Yamada, S. Nakatsuji, H. Anzai, “SDW phase of (TMTSF)2PF6
at high magnetic field,” Synth. Met.
120, 957–958 (2001). (7) K.
Nomura, M. Kotomizu, A. Hoshikawa, T. Terazaki, M. Inoue, N. Matsunaga, T.
Hanajiri, J. Yamada, S. Nakatsuji, H. Anzai, “Static and dynamic properties
of the SDW in (TMTSF)2X,” Synth.
Met. 120, 907–908 (2001). (8) H.
Nishikawa, T. Isaka, T. Kodama, I. Ikemoto, K. Kikuchi, J. Yamada, Y. Misaki,
“Synthesis and properties of new type TTP donors,” Synth. Met. 120,
903–904 (2001). (9) K.
Kikuchi, S. Ikeda, H. Nishikawa, T. Kodama, I. Ikemoto, J. Yamada, “Oxygen
and selenium substituted derivatives of DOET donor: synthesis and properties,”
Synth. Met. 120, 901–902 (2001). (10) K.
Ichimura, M. Kobayashi, K. Nomura, T. Hanajiri, J. Yamada, S. Nakatsuji, H.
Anzai, “SDW gap in (TMTSF)2PF6: STM spectroscopy,” Synth. Met. 120, 897–898 (2001). (11) H.
Akutsu, J. Yamada, S. Nakatsuji, “Preparation and characterization of a novel
organic radical anion for organic conductor: TEMPO-NHSO3–,”
Synth. Met. 120, 871–872 (2001). (12) J.
Yamada, S. Kawagishi, T. Shinomaru, H. Akutsu, S. Nakatsuji, H. Nishikawa, I.
Ikemoto, K. Kikuchi, “Oxygen-substituted derivatives of DHTTF-fused donors:
synthesis and properties,” Synth. Met.
120, 787–788 (2001). (13) T.
Arai, K. Ichimura, K. Nomura, S. Takasaki, J. Yamada, N. Nakatsuji, H. Anzai,
“STM spectroscopy on k-(BEDT-TTF)2Cu(NCS)2,”
Synth. Met. 120, 707–708 (2001). (14) N.
Matsunaga, K. Yamashita, H. Kotani, K. Nomura, T. Sasaki, T. Hanajiri, J.
Yamada, S. Nakatsuji, H. Anzai, “Spin-density-wave transition of (TMTSF)2PF6
at high magnetic fields,” Phys. Rev. B
64, 052405–1–4 (2001). (15) M.
Mizumoto, H. Ikemoto, H. Akutsu, J. Yamada, S. Nakatsuji, “Preparation and
Properties of Novel Mesogenic Spin Systems,” Mol. Cryst. Liq. Cryst. 363,
149–156 (2001). (16) T.
Ojima, H. Akutsu, J. Yamada, S. Nakatsuji, “Magnetic properties of anthracene
derivatives and the corresponding photo-dimers with stable radical
substituents,” Polyhedron 20, 1335–1338 (2001). (17) G. C.
Papavassiliou, Y. Misaki, K. Takahashi, J. Yamada, G. A. Mousdis, T.
Shirahata, T. Ise, “New p-Donor
Molecules with a Pyrazino Group and their Conducting Salts,” Z. Naturforsch. 56b, 297–300 (2001). (18) A. E.
Kovalev, T. Ishiguro, J. Yamada, S. Takasaki, H. Anzai, “The Anisotropic
Low-Temperature Specific Heat of Organic Superconductor k-(BEDT-TTF)2Cu(NCS)2 in
Magnetic Field,” J. Exp. Theor. Phys.
92, 1035–1037 (2001). (19) J.
Yamada, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K. Kikuchi,
“Development of Organic Metals Based on the Extended TTF Donors by the s-Bond Framework,” Mol. Cryst. Liq. Cryst. 356,
253–262 (2001). (20) S.
Nakatsuji, M. Mizumoto, K. Kitamura, H. Akutsu, J. Yamada, “Preparation and
Properties of Biphenyl and Cholesterol Derivatives with Nitroxide Radicals,” Mol. Cryst. Liq. Cryst. 356, 33–40 (2001). (21) S.
Nakatsuji, S. Takeuchi, T. Ojima, Y. Ogawa, H. Akustu, J. Yamada,
“Preparation and Properties of Photo- Functional Systems with Nitroxide
Radicals,” Mol. Cryst. Liq. Cryst. 356, 23–32 (2001). (22) J.
Yamada, R. Oka, T. Mangetsu, H. Akutsu, S. Nakatsuji, H. Nishikawa, I.
Ikemoto, K. Kikuchi, “Tetrathiafulvalene Derivatives Linking a
Dichalcogenolane Ring: New Donor Components for Organic Metals,” Chem. Mater. 13, 1770–1777 (2001). (23) J.
Yamada, M. Watanabe, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K.
Kikuchi, “New Organic Superconductors b-(BDA-TTP)2X [BDA-TTP =
2,5-Bis(1,3-dithian-2-ylidene)-1,3,4,6-tetrathiapentalene; X– =
SbF6–, AsF6–, and PF6–],”
J. Am. Chem. Soc. 123, 4174–4180 (2001). (24) T.
Arai, K. Ichimura, K. Nomura, S. Takasaki, J. Yamada, S. Nakatsuji, H. Anzai,
“Tunneling spectroscopy on the organic superconductor k-(BEDT-TTF)2Cu(NCS)2
using STM,” Phys. Rev. B 63, 104518–1–5 (2001). (25) N.
Matsunaga, M. Inoue, A. Hoshikawa, K. Nomura, T. Hanajiri, J. Yamada, S.
Nakatsuji, H. Anzai, “Nonlinear Electric Conduction in the SDW Phase of
(TMTSF)2PF6 under Pressure,” Phys. Stat. Sol. (b)223,
549–553 (2001). (26) N.
Matsunaga, K. Yamashita, H. Kotani, K. Nomura, T. Sasaki, T. Hanajiri, J.
Yamada, S. Nakatsuji, H. Anzai, “Magnetic Field Dependence of the SDW Phase
in (TMTSF)2PF6 under Pressure: Rapid Oscillations in
the Magnetoresistance,” Phys. Stat. Sol.
(b)223, 545–548 (2001). (27) K.
Nomura, N. Matsunaga, A. Ishikawa, H. Kotani, K. Yamashita, T. Sasaki, T.
Hanajiri, J. Yamada, S. Nakatsuji, H. Anzai, T. Nakamura, T. Takahashi, G.
Saito, “Spin Density Wave in Quasi-One-Dimensional Organic Condictors,” Phys. Stat. Sol. (b)223, 449–458 (2001). (28) H.
Akutsu, J. Yamada, S. Nakatsuji, “A New Organic Anion Consisting of the TEMPO
Radical for Organic Charge-Transfer Salts:
2,2,6,6-Tetramethylpiperidinyloxy-4-sulfamate (TEMPO-NHSO3–),”
Chem. Lett. 208–209 (2001). (29) S. Uji,
C. Terakura, T. Terashima, J. S. Brooks, S. Tanaka, S. Maki, S. Nakatsuji, J.
Yamada, “Correlation between rapid oscillation and phase diagram in
quasi-one-dimensional organic conductor (TMTSF)2ClO4,” Current Applied Physics 1, 77–83 (2001). (30) J.
Yamada, T. Mangetsu, H. Akutsu, S. Nakatsuji, H. Nishikawa, I. Ikemoto, K.
Kikuchi, “Dichalcogenane Derivatives of
Methylenedithio(ethylenedithio)tetrathiafulvalene (MET) and a Derived
Metallic Cation-Radical Salt with Screwed Donor Stacks,” Chem. Lett. 86–87 (2001). 著書(分担執筆) (1) J. Yamada, “Tetrathiafulvalenes extended by
a s-bond framework: new p-electron donors for organic metals,” Trends in Organic Chemistry, Research
Trends, Trivandrum, vol. 9, 115–128 (2001). 【2000】
学術論文 (1) T.
Arai, K. Ichimura, K. Nomura, S. Takasaki, J. Yamada, S. Nakatsuji, H. Anzai,
“Superconducting and normal- state gaps in k-(BEDT-TTF)2Cu(NCS)2 studies by STM
spectroscopy,” Solid State Commun. 116, 679–682 (2000). (2) N.
Matsunaga, K. Nomura, T. Nakamura, T. Takahashi, G. Saito, S. Takasaki, J.
Yamada, S. Nakatsuji, H. Anzai, “Static magnetic susceptibility in (TMTSF)2Br
and (TMTSF)2AsF6,” Physica
B 284–288, 1583–1584 (2000). (3) N.
Matsunaga, A. Briggs, A. Ishikawa, K. Nomura, S. Takasaki, J. Yamada, S.
Nakatsuji, H. Anzai, “SDW transition of quenched (TMTSF)2ClO4
at high magnetic fields,” Physica B
284–288, 1581–1582 (2000). (4) N.
Matsunaga, A. Briggs, A. Ishikawa, K. Nomura, T. Hanajiri, J. Yamada, S.
Nakatsuji, H. Anzai, “Spin- density wave and field-induced spin-density wave
transitions of (TMTSF)2ClO4 at high magnetic fields,” Phys. Rev. B 62, 8611–8614 (2000). (5) S.
Nakatsuji, M. Mizumoto, A. Takai, H. Akutsu, J. Yamada, H. Kawamura, S.
Schmitt, K. Hafner, “Novel CT Complexes Derived from 4-Alkylamino-TEMPO and
2,4,6,8-Tetracyanoazulene,” Mol. Cryst.
Liq. Cryst. 348, 1–6 (2000). (6) S.
Nakatsuji, Y. Ogawa, S. Takeuchi, H. Akutsu, J. Yamada, A. Naito, K. Sudo, N.
Yasuoka, “Novel photo-responsive organic spin systems: preparation and
properties of norbornadienes and spiropyrans with TEMPO radical substituents,”
J. Chem. Soc., Perkin Trans. 2,
1969–1975 (2000). (7) T.
Ojima, H. Akutsu, J. Yamada, S. Nakatsuji, “Structures and Magnetic
Properties of 4-(9-Anthrylmethyl-amino) TEMPO and Its Dimer,” Chem. Lett. 918-919 (2000). (8) S.
Takeuchi, Y. Ogawa, A. Naito, K. Sudo, N. Yasuoka, H. Akustu, J. Yamada, S.
Nakatsuji, “Preparation and Properties of Some Photo-Responsive Compounds
with TEMPO Radical,” Mol. Cryst. Liq. Cryst.
345, 167–172 (2000). (9) A.
Hoshikawa, K. Nomura, S. Takasaki, J. Yamada, S. Nakatsuji, H. Anzai, M.
Tokumoto, N. Kinoshita, “Collective Mode of Spin-Density-Wave in (TMTSF)2ClO4,”
J. Phys. Soc. Jpn. 69, 1457–1461 (2000). (10) A.
Hoshikawa, K. Nomura, S. Takasaki, J. Yamada, S. Nakatsuji, H. Anzai, M.
Tokumoto, N. Kinoshita, “Depinning of Spin-Density-Wave in (TMTSF)2ClO4,”
J. Phys. Soc. Jpn. 69, 155–159 (2000). |