The valence-detrapping phase transition in a crystal of the mixed-valence trinuclear iron cyanoacetate complex [Fe3O(O2CCH2CN)(6)(H2O)(3)]

被引:67
作者
Nakamoto, T
Hanaya, M
Katada, M
Endo, K
Kitagawa, S
Sano, H
机构
[1] TOKYO METROPOLITAN UNIV, DEPT CHEM, FAC SCI, HACHIOJI, TOKYO 91203, JAPAN
[2] TOKYO METROPOLITAN UNIV, RADIOISOTOPE RES CTR, HACHIOJI, TOKYO 91203, JAPAN
[3] TOKYO INST TECHNOL, FAC SCI, DEPT CHEM, MEGURO KU, TOKYO 152, JAPAN
[4] SHOWA COLL PHARMACEUT SCI, MACHIDA, TOKYO 194, JAPAN
[5] OTSUMA WOMENS UNIV, DEPT ENVIRONM SCI, SCH SOCIAL INFORMAT STUDIES, TOKYO 206, JAPAN
关键词
D O I
10.1021/ic961438w
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
A mixed-valence trinuclear iron cyanoacetate complex, [Fe3O(O2CCH2CN)(6)(H2O)(3)] (1), was prepared, and the nature of the electron-detrapping phase transition was studied by a multitemperature single-crystal X-ray structure determination (296, 135, and 100 K) and calorimetry by comparison with an isostructural mixed-metal complex, [CoFe2O(O2CCH2CN)(6)(H2O)(3)] (2) The mixed-valence states at various temperatures were also determined by Fe-57 Mossbauer spectroscopy. The Mossbauer spectrum of 1 showed a valence-detrapped state at room temperature. With decreasing temperature the spectrum was abruptly transformed into a valence-trapped state around 129 K, well corresponding to the heat-capacity anomaly due to the phase transition (T-trs = 128.2 K) observed in the calorimetry. The single-crystal X-ray structure determination revealed that 1 has an equilateral structure at 296 and 135 K, and that the structure changes into an isosceles one at 100 K due to the electron trapping. The crystal system of 1 at 296 K is rhombohedral, space group R (3) over bar with Z = 6 and a = 20.026(1) Angstrom., c = 12.292(2) Angstrom; at 135 K, a = 19.965(3) Angstrom, c = 12.145(4) Angstrom; and at 100 K, the crystal system changes into triclinic system, space group P (1) over bar, with Z = 2 and a = 12.094(2) Angstrom, b = 12.182(3) Angstrom, c = 12.208(3) Angstrom, alpha = 110.04(2)degrees, beta = 108.71(2)degrees, gamma = 109.59(2)degrees. The X-ray structure determination at 100 K suggests that the electronically trapped phase of 1 at low temperature is an antiferroelectrically ordered phase, because the distorted Fe3O molecules, which are expected to possess a nonzero electronic dipole moment, oriented alternatively in the opposite direction with respect to the center of symmetry. On the other hand, no heat-capacity anomaly was observed in 2 between 7 and 300 K, and X-ray structure determination indicated that 2 shows no structure change when the temperature is decreased from 296 K down to 102 K. The crystal system of 2 at 296 K is rhombohedral, space group R (3) over bar with Z = 6 and a = 19.999(1) Angstrom, c = 12.259(1) Angstrom; at 102 K, a = 19.915(2) Angstrom, c = 12.061(1) Angstrom. Even at 102 K the CoFe2O complex still has a C-3 axis, and the three metal ion sites are crystallographically equivalent because of a static positional disorder of two Fe-III ions and one Co-II ion. The activation energy of intramolecular electron transfer of 1 in the high-temperature disordered phase was estimated to be 3,99 kJ mol(-1) from the temperature dependence of the Mossbauer spectra with the aid of the spectral simulation including the relaxation effect of intramolecular electron transfer. Finally the phase-transition mechanism of 1 was discussed in connection with the intermolecular dielectric interaction.
引用
收藏
页码:4347 / 4359
页数:13
相关论文
共 70 条
[1]   THE EFFECT OF AN UNUSUAL TYPE OF QUENCHED DISORDER ON PHASE-TRANSITIONS - ILLUSTRATION IN A MIXED-VALENCE SYSTEM [J].
ADACHI, SH ;
PANSON, AE ;
STRATT, RM .
JOURNAL OF CHEMICAL PHYSICS, 1988, 88 (02) :1134-1144
[2]   CRYSTAL-STRUCTURE AND VIBRATIONAL-SPECTRA OF [C(NH2)3]2[CR3(MU-3-O)(OOCC2H5)6F3] [J].
ANSON, CE ;
CHAISAARD, N ;
BOURKE, JP ;
CANNON, RD ;
JAYASOORIYA, UA ;
POWELL, AK .
INORGANIC CHEMISTRY, 1993, 32 (08) :1502-1507
[3]   STRUCTURE AND MIXED-VALENCE STATES OF THE TRINUCLEAR IRON(II,III,III) PIVALATE COMPLEX-PIVALIC ACID ADDUCT, [FE3O(O(2)CCME(3))(6)(ME(3)CCO(2)H)(3)](ME=-CH3) [J].
ASAMAKI, K ;
NAKAMOTO, T ;
KAWATA, S ;
SANO, H ;
KATADA, M ;
ENDO, K .
INORGANICA CHIMICA ACTA, 1995, 236 (1-2) :155-161
[4]   TIME-DEPENDENT EFFECTS USING SELECTIVE-EXCITATION DOUBLE-MOSSBAUER TECHNIQUES WITH APPLICATION TO ALPHA-FE2O3 [J].
BALKO, B ;
HOY, GR .
PHYSICAL REVIEW B, 1974, 10 (01) :36-49
[5]   INTRAMOLECULAR ASPECTS OF THE ELECTRON-TRANSFER IN THE BIFERROCENIUM MIXED-VALENCE CATION, USING PKS THEORY [J].
BOUKHEDDADEN, K ;
LINARES, J ;
BOUSSEKSOU, A ;
NASSER, J ;
RABAH, H ;
VARRET, F .
CHEMICAL PHYSICS, 1993, 170 (01) :47-55
[6]   MOSSBAUER ANALYSIS AND MODELING OF THE ORDER-DISORDER LOCALIZATION-DELOCALIZATION TRANSITION IN THE MIXED-VALENCE SALT DIETHYL BIFERROCENIUM TRI-IODIDE [J].
BOUKHEDDADEN, K ;
LINARES, J ;
VARRET, F .
PHYSICAL REVIEW B, 1993, 47 (21) :14070-14074
[7]   A DISCRETE S = 1 MODEL FOR ELECTRON LOCALIZATION PROPERTIES OF THE MIXED-VALENCE BIFERROCENIUM SALTS [J].
BOUKHEDDADEN, K ;
LINARES, J ;
GALAM, S ;
VARRET, F .
JOURNAL OF PHYSICS-CONDENSED MATTER, 1993, 5 (04) :469-476
[8]   TUNNELING TRANSFER IN A COUPLED BISTABLE OSCILLATOR PAIR [J].
BOUKHEDDADEN, K ;
LINARES, J ;
GALAM, S ;
VARRET, F .
CHEMICAL PHYSICS, 1994, 180 (01) :43-53
[9]   SIR88 - A DIRECT-METHODS PROGRAM FOR THE AUTOMATIC SOLUTION OF CRYSTAL-STRUCTURES [J].
BURLA, MC ;
CAMALLI, M ;
CASCARANO, G ;
GIACOVAZZO, C ;
POLIDORI, G ;
SPAGNA, R ;
VITERBO, D .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1989, 22 :389-393
[10]   PARTIAL ELECTRON DELOCALIZATION IN A MIXED-VALENCE TRINUCLEAR IRON(III)-IRON(II) COMPLEX [J].
CANNON, RD ;
MONTRI, L ;
BROWN, DB ;
MARSHALL, KM ;
ELLIOTT, CM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1984, 106 (09) :2591-2594