1960 .
49
-
.., ..
NF2X3 (X=H, Cl, Br): ab initio
: ,
,
, ,
Vessally E.
Aromatic stability energy studies on five-membered
heterocyclic C4H4M (M = O, S, Se, Te, NH, PH, AsH and SbH):
DFT calculations
Keywords: aromatic character, isodesmic reaction, NICS; five-membered
heterocycle, C4H4M
..
. I.
: , ,
, , QSPR
.., ..
,
BN
: BN ,
, , ,
.., .., .., ..,
.., ..
-. XV.
: , DFT, -,
, -,
- Dy, Ho, Er Yb
1040
1033
1026
1020
1013
6
6, 2008
Стр.1
.., .., ..
,
. III. -
: , -,
,
.., .., ..
,
. IV. L- DL-
: , , ,
.., .., ..,
.., ..
RM3(BO3)4
(R – Nd, Gd, Y; M – Al, Ga, Cr, Fe)
: , -
, ,
.., .., .., ..
–
(NH4)2,4Rb0,6ZrF7 (1H, 19F)
: (19F,1H),
–, ,
Gao E.J., Yin H.X., Zhu M.C., Sun Y.G., Gu X.F., Wu Q.,
Ren L.X.
Study on the interaction of a palladium complex with DNA
Keywords: palladium(II) complex, adenine, interaction mechanism,
kinetics, crystal structure
.., ..
: , , ,
,
.., .., ..,
.., ..
Y1-xTbxBa2Cu3O6+ (=0,10; = 0,75)
: Ln123,
(Y/Tb)123, , , ,
.., .., ..,
.., ..
LuBaCo4O7
: , , ,
,
1108
1101
1092
1086
1081
1074
1061
1051
Стр.2
.., .., .., ..,
..
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: , ,
,
.., .., ..,
.., ..
()(II)
: (II), -, , -, ,
, ,
.., .., ..
-
[Ru(NO)(NH3)2Cl3] [Ru(NO)(NH3)2(H2O)Cl2]Cl H2O
: , , ,
, ,
.., .., .., H..,
..
(IV)
: - (IV), ,
, ,
.., .., ..,
.., .., ..
(II)
3--5-
: ,
, ,
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: , B3LYP/6-311G**,
-C8F12
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-
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, ,
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: : ,
,
1154
1150
1147
1143
1137
1128
1122
1114
Стр.3
.., .., .., ..
1
: , ,
,
.., ., ., ..
(Me4N)2[Nb6F6Br6(H2O)2Cl4]·6H2O
: , , , ,
.., .., .., .-.,
..
Cs[Re6Te8(CN)6Gd(H2O)4] 4H2O
: , , ,
,
.., .., ..
(II)
c S-1,1--2,2-
: , ,
Lai L.-L., Lee L.-J., Luo D.-W., Liu Y.-H., Wang Y.
Single crystal XRD study of 4,4'-dipyridyl – p-ethoxybenzoic acid
and N,N'-dipyridylpiperazine – p-ethoxybenzoic acid
co-crystals: direct evidence of H-bond interaction in the
corresponding liquid-crystalline mesogenic phases
Keywords: bipyridine, molecular crystals, liquid crystals, neumatic,
mesogenic
.., .., ..
8--18--14--20-16--4,8--15-[11.7.1.03,1204,9012,19014,18016,21017,20]
: , , ,
.., .., ..
2-
: 2-, ,
, ,
2,3-[3,2-]
Hoyska M., Lis T.
Electrostatic Mo—O (methanol) bond in
benzyltriphenylphosphonium
trans-tetrachloro(methanol)oxomolybdate(V)
Keywords: Crystal structure; electrostatic bond; Mo(V) complex;
oxomolibdates
. 49…………………………………………………………………….1191
. 49……….………………………………………………………1200
—
©
, 6, 2008
1187
1182
1179
1175
1171
1167
1163
1159
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..
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(II),
.
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, « » 1977 .
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.
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.
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,
.
22 2008 . 80
Стр.5
:
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——
-
- C2H2/MOH/
(M = Li, Na, K)
.., .., .., ..,
.., ..
LI X.-H., TANG Z.-X., ZHANG X.-Z.
DFT STUDY OF THE C—Cl BOND DISSOCIATION ENTHALPIES AND ELECTRONIC
STRUCTURE OF SUBSTITUTED CHLOROBENZENE COMPOUNDS
.., .., - .., ..
.., .., .., .., ..
Cu(salen), CuO2N2C16H14,
-
(III)
.., .., ..
MONAJJEMI M., HONARPARVAR B., NASSERI S.M., KHALEGHIAN M.
NQR AND NMR STUDY OF HYDROGEN BONDING INTERACTIONS IN ANHYDROUS
AND MONOHYDRATED GUANINE CLUSTER MODEL: A COMPUTATIONAL STUDY
.., ..
5- pH
.., ..
,
.., ..
.., ..
Стр.6
La0,25Sr0,75O3–
.., .., .., ..
.., ..
(III)
.., .., ..
.., .., .., .., ..
Ru(NH3)5Cl][ReCl6]
[Ru(NH3)5Cl]2[ReCl6]Cl2 .
Ru—Re
.., .., .., .., ..
1,3,2,4-
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..
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(-)(III).
Стр.7
2008. 49, 6
–
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.., . ., 6
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Alizadeh R., Najafi N.M., 4
Anusuya J., see Manimekalai A., 3
.., .., ..,
4, 6
.., . ..,
.
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A.., . .., .
., . .., .
Burchell T.J., Soldatov D.V., Ripmeester J.A., 1
Castro E.A., see Okulik N.B., 5
Chen L.J., see Wang X.F., 4
Gao G.R., see Wang J., 1
Gao J., see Wang X.F., 4
Ghiasi R., Monajjemi M., Mokarram E.E., Makkipour
P., 4
Gu X.F., see Gao E.J., 6
Hoyska M., Lis T., 6
Huang S.-P., see Wang J.-L., 3
Jayabharathi J., see Manimekalai A., 3
Jiang H.-Q., see Yin Y.-B., 5
Jubert A.H., see Okulik N.B., 5
Lai L.-L., Lee L.-J., Luo D.-W., Liu Y.-H.,
Wang Y., 6
Lee L.-J., see Lai L.-L., 6
Liao X.C., see Yuan J.Y., 5
Lis T., see Hoyska M., 6
Liu B., see Wang J.-L., 3
Liu X.Zh., see Wang J., 1
Liu Y.-H., see Lai L.-L., 6
Luo D.-W., see Lai L.-L., 6
.., .., ..,
.., .., 2
.., . .., 1
Makkipour P., see Ghiasi R., 4
Manimekalai A., Anusuya J., Jayabharathi J., 3
Mokarram E.E., see Ghiasi R., 4
Monajjemi M., see Ghiasi R., 4
Najafi N.M., see Alizadeh R., 4
Okulik N.B., Jubert A.H., Castro E.A., 5
Ravikumar K., see Swamy G.Y.S.K., 4
Reddy K.S., see Swamy G.Y.S.K., 4
Reddy V.V.N., see Swamy G.Y.S.K., 4
Ren L.X., see Gao E.J., 6
Gao E.J., Yin H.X., Zhu M.C., Sun Y.G., Gu X.F.,
Wu Q., Ren L.X., 6
Стр.14
Ripmeester J.A., see Burchell T.J., 1
Soldatov D.V., see Burchell T.J., 1
Song Z.-Q., see Yin Y.-B., 5
Sridhar B., see Swamy G.Y.S.K., 4
Sun W., see Wang X.F., 4
Swamy G.Y.S.K., Sridhar B., Ravikumar K., Reddy
K.S., Reddy V.V.N., 4
Tang M.S., see Yuan J.Y., 5
Vessally E., 6
Wang J., see Wang X.F., 4
Wang J.-L., Liu B., Yang B.-S., Huang S.-P., 3
Wang X.F., Gao J., Wang J., Zhang Zh.H.,
Wang Y.F., Chen L.J., Sun W., Zhang X.D., 4
Wang H.M., see Yuan J.Y., 5
Wang J., Liu X.Zh., Wang X.F., Gao G.R.,
Xing Zh.Q., Zhang X.D., Xu R., 1
Wang X.F., see Wang J., 1
Wang Y., see Lai L.-L., 6
Wang Y.F., see Wang X.F., 4
Wang Z.-D., see Yin Y.-B., 5
Wu Q., see Gao E.J., 6
Xing Zh.Q., see Wang J., 1
Xu R., see Wang J., 1
Yang B.-S., see Wang J.-L., 3
Yin H.X., see Gao E.J., 6
Yin Y.-B., Song Z.-Q., Wang Z.-D., Jiang H.-Q., 5
Yuan J.Y., Liao X.C., Wang H.M., Tang M.S., 5
Zhang X.D., see Wang J., 1
Zhang X.D., see Wang X.F., 4
Zhang Zh.H., see Wang X.F., 4
Zhu M.C., see Gao E.J., 6
1207
Стр.15
CONTENTS
Theory of molecular structure and chemical bonding
Getmanskii I.V., Minyaev R.M. Structure and thermodynamical stability study of pentacoordinate nitrogen
compounds NF2X3 (X = H, Cl, Br): ab initio calculations ................................. 1013
Vessally E. Aromatic stability energy studies on five-membered heterocyclic C4H4M (M = O, S, Se, Te,
NH, PH, AsH and SbH): DFT calculations .................................................... 1020
Krasnykh E.L. Prediction of enthalpy of vaporization on the basis of modified randichs indexes. Alkanes
.................................................................................... 1026
Enyashin A.N., Ivanovskii A.L. Simulation of the structural, elastic and electronic properties of the
novel isotropic crystals of carbon and BN nanotubes ........................................... 1033
Study of the structure of molecules by physical methods
Tverdova N.V., Girichev G.V., Rybkin V.V., Shlykov S.A., Kuzmina N.P., Zaitseva I.G. The study
of structure and energetics of -diketonates. XV. Molecular Structure of tris(hexafluoroacetilacetonate)
dysprosium, holmium, erbium, ytterbium by synchronous gas-phase electron diffraction and
mass spectrometric experiment .............................................................. 1040
Chesalov Yu.A., Chernobay G.B., Boldyreva E.V. Temperature effects on the IR spectra of crystalline
amino acids, dipeptides, and polyamino acids. III. -Glycylglycine ............................. 1051
Minkov V.S., Chesalov Yu.A., Boldyreva E.V. Temperature effects on the IR spectra of crystalline
amino acids, dipeptides, and polyamino acids. IV. L-cysteine and DL-cysteine ................... 1061
Kurazhkovskaya V.S., Borovikova E.Yu., Leonyuk N.I., Koporulina E.V., Belokoneva E.L. Infrared
spectroscopy and structures of polytypic modifications of borates RM3(BO3)4 (R — Nd, Gd, Y;
M — Al, Ga, Cr, Fe) ....................................................................... 1074
Kavun V.Ya., Tkachenko I.A., Didenko N.A., Sergienko V.I. Ionic mobility in ammonium-rubidium
heptafluorozirconate (NH4)2.4Rb0.6ZrF7 by (1H, 19F) NMR data .................................. 1081
Gao E.J., Yin H.X., Zhu M.C., Sun Y.G., Gu X.F., Wu Q., Ren L.X. Study on the interaction of a palladium
complex with DNA ................................................................. 1086
Structure of liquids and solutions
Malomuzh N.P., Oleynik A.V. Nature of the kinematic shear viscosity for water ...................... 1092
Crystal chemistry
Kozeeva L.P., Podberezskaya N.V., Kuratieva N.V., Kameneva M.Yu., Blinov A.G. Composition and
structure refinement of Y1–xTbxBa2Cu3O6+ (x = 0,10; = 0,75) superconducting crystals ........... 1101
Kozeeva L.P., Kameneva M.Yu., Smolentsev A.I., Danilovich V.S., Podberezskaya N.V. Crystal
structure of the cobaltate LuBaCo4O7 ........................................................ 1108
Nadeev A.N., Tsybulya S.V., Belyaev V.D., Yakovleva I.S., Isupova L.A. Mobile oxygen form and its
role in stability of La1–xSrxFeO3– solid solutions ............................................... 1114
Stabnikov P.A., Zharkova G.I., Smolentsev A.I., Ukraintseva E.A., Soldatov D.V. Crystal structure
and thermodynamic stability of a complex of bis(trifluoroacetylacetonato)copper(II) with acetone . . . 1122
Стр.16
Ilin M.A., Emeryanov V.A., Baidina LA. Structure and synthesis of nitrosoruthenium trans-diammine
complexes, [Ru(NO)(NH3)2Cl3] and [Ru(NO)(NH3)2Cl2(H2O)]ClH2O ........................... 1128
Zherikova K.V., Baidina I.A., Morozova N.B., Kuratieva N.V., Igumenov I.K. X-ray structural investigation
of the seven- and eight-coordinated hafnium(IV)complexes with dipivaloylmethane ........ 1137
Lavrenova L.G., Peresypkina E.V., Zhilin A.S., Shakirova O.G., Novikov M.N., Vasilevskii S.F.
Structure of new copper(II) complex with 3-methyl-5-carboxylatopyrazole ....................... 1143
Brief communications
Kalninsh K.K., Semenov S.G. Quantum-chemical study of the structure of saturate tricyclic dimers of
hexafluoro-l,3-butadiene ................................................................... 1147
Koudriavtsev A.B., Linert W. Molecular-statistical model of spin-crossover equilibrium in the crystal
state taking into account the phenomenon of ordering .......................................... 1150
Koudriavtsev A.B., Linert W. Why the model of non-interacting chains yields adequate description of
spin crossover in space structures? ........................................................... 1154
Kumeev R.S., Nikiforov M.Yu., Totchasov E.D., Alper G.A. 1H NMR spectroscopic study of formation
of molecular methanol complexes with benzol and phenanthrene ............................ 1159
Naumov N.G., Cordier S., Perrin C., Artemkina S.B. The synthesis and crystal structure of new octahedral
niobium complex (Me4N)2[Nb6F6Br6(H2O)2Cl4]6H2O ................................... 1163
Tarasenko M.S., Naumov N.G., Virovets A.V., Kim S.-J., Fedorov V.E. Crystal structure of
Cs[{Gd(H2O)4}{Re6Te8(CN)6}]4H2O ....................................................... 1167
Kalinina I.V., Dybtsev D.N., Fedin V.P. Chiral complex of cobalt (II) with S-1,1-binaphtalene-2,2diacetimide
............................................................................... 1171
Lai L.-L., Lee L.-J., Luo D.-W., Liu Y.-H., Wang Y. Single crystal XRD study of 4,4-dipyridyl —
p-ethoxybenzoic acid and N,N-dipyridylpiperazine — p-ethoxybenzoic acid co-crystals: Direct evidence
of H-bond interaction in the corresponding liquid-crystalline mesogenic phases ............. 1175
Fazlyev R.R., Vafina G.F., Galin F.Z. Molecular structure of 8-carboxy-18-chloro-14-hydroxy-20-isopropyl-16-methoxy-4,8-dimethyl-15-oxaocta-cyclo[11.7.1.03.1204.9012.19014.18016.21017.20]henicozane
.... 1179
SlepukhinP.A., Kim D.G., Charushin V.N. X-Ray structural research of products iodomercurocyclisation
reaction of 2-alkenylthiopyridines ....................................................... 1182
Hoyska M., Lis T. Electrostatic Mo—O(methanol) bond in benzyltriphenylphosphonium trans-tetrachloro(methanol)oxomolybdate(V)
.......................................................... 1187
Tables of contents. Volume 49 .................................................................. 1191
Author index. Volume 49....................................................................... 1200
Стр.17
2008. 49, 6
–
49
..
.................................................................................. 1,7
.. -
..... 2,207
.., .., ..
................................................................................ 1,13
.., .., ..
................................................................................ 2,211
.., .., .., .., .. -
sp-
..................... 3,415
.. :
......... 3,407
.., .., ..
[Re4Q4X12]4– (Q = S, Se, Te; X = F, CN–) AIM ELF .............................. 4,616
.., .., .., ..
. -
............................................................................. 4,609
.., .., .., .., ..
- -
//3 ( = Li, Na, K) ....................................................... 4,623
Ghiasi R., Monajjemi M., Mokarram E.E., Makkipour P. Theoretical studies on the structures, properties,
and aromaticities of fluorinated arsabenzenes .......................................... 4,628
.., .., .., ..
MBiS2 (M = Li, Na, K) M—S, Bi—S ......... 5,821
.., .., .., ..
Sr2FeMO6 (M = Sc, Ti, … Ni, Cu)
FLAPW-GGA ............................................................... 5,815
.., .., .. ,
Fe—W—C .................................................. 5,827
.., .., .., .., .., ..
- Cu(I) . . . 5,842
.., .. - —
...................................... 5,861
Yuan J.Y., Liao X.C., Wang H.M., Tang M.S. Camphor-based -Bromoketones for the Asymmetric
Darzens Reaction: Insights into the Mechanism Using Density Functional Theory ................. 5,851
.., ..
NF2X3 (X = H, Cl, Br): ab initio ........... 6,1013
Vessally E. Aromatic stability energy studies on five-membered heterocyclic C4H4M (M = O, S, Se, Te,
NH, PH, AsH and SbH): DFT calculations .................................................... 6,1020
.., .. -
[RuCl5NO]2– ..................................... 5,835
.., .., .. [1,3]-
................................................ 2,230
.., .., ., .., .., ..
......................... 2,221
.., .., .., .., ..
.............................................. 2,215
. 1191 – 1199
Стр.18
1192
..
.
.., .., .., ..
HfO2 ........................................... 1,27
.., .., .., ..
(NH4)3TiOF5 Rb2KTiOF5 ........ 1,19
.., .. -1,3- - 13C-
............................................ 2,249
.., .., - ..
-
...................................................................... 2,238
.., - .., ..
-D- ................. 1,37
.. V(IV) ............. 2,259
.., .., .. 2
2+2 Pt/MoO3 ........................................ 2,269
.., .., .. 2-, 3- 4-
................................................................................ 3,419
.. -
.................................................................................. 3,445
.., ..
................................................... 3,439
Manimekalai A., Anusuya J., Jayabharathi J. Synthesis and conformational analysis of some cyanomethylene
derivatives of piperidines ......................................................... 3,465
.., .., .., ..
Si3Cl8 ................................................................. 4,633
.., .., .., .., ..
................................................................................... 3,433
.., .., .., .., ..
........................................ 3,427
.., .. ,
BN ................................ 6,1033
I. ....................................................................... 6,1026
.., .., .. ,
...................................................... 4,640
Alizadeh R., Najafi N.M. Theoretical study of structure, stability and infrared spectra of hydrogen bonding
complexes pairing N-nitrosodiethanolamine (NDELA) and one to five water molecules ......... 4,649
.., .., .., .., ..
, , 5--1,3- . 4,667
.., .., ..
, . II. L- DL- .. 4,655
.., .., .., ..
......... 4,672
.., .., .., ., ..
- 2- ... 5,883
.., .., .., .., ..
N,N--() (II) (II), MO2N2C12H18,
- .......................... 5,871
.., .., .., .., ..
,
Li2Zn2(MoO4)3 .................................................................. 5,891
.., .., .., .., .., ..
-. XV.
- Dy, Ho, Er Yb ..................... 6,1040
Стр.19
1193
.., .., ..
, . IV. L- DL
.................................................................................. 6,1061
.., .., .., .., .. ..,
.., ..
, . III. - .... 6,1051
.., .., .., ..
— (NH4)2,4Rb0,6ZrF7 (1H, 19F) .................... 6,1081
Gao E.J., Yin H.X., Zhu M.C., Sun Y.G., Gu X.F., Wu Q., Ren L.X. Study on the interaction of a palladium
complex with DNA ................................................................. 6,1086
.. :
H- ...................................................... 2,275
.., .. -
.................... 2,299
.., .., .., .., ..,
.., .. ,
- ............. 2,292
.. .................... 5,896
.., ..
- NaCl ................................ 5,901
.., ..
......................................... 4,717
..
..................................................................... 5,920
.., .., .., .., .., ..
Rb2MoO4—Eu2(MoO4)3—
Hf(MoO4)2 ................................................................................ 1,58
.., .. , InFeZn2O5 ............... 1,47
.., .., .., .., .., ..,
..
Re0,67Rh0,33 .............................................................. 1,52
.. .................. 5,907
.., ..
278,15323,15 K ..................................... 5,912
.., .. ............... 6,1092
.., .. ,
HF—H3CN ............................................................... 4,707
.. 263—348 K ...... 4,688
..
. ........................................... 4,696
.. . IV.
................................................................................... 4,684
................................................................................... 4,678
III.
..
-. I. .................................... 2,284
RM3(BO3)4 (R —
Nd, Gd, Y; M — Al, Ga, Cr, Fe) ............................................................ 6,1074
.. ... 3,476
.., .., .., ..
............................. 3,490
.. .
Стр.20
1194
.., .., .., .., ..
(II) 2,2,6,6--4--3,5
.................................................................................. 1,63
.., .., ..
Na3[Rh(SO3)3(NH3)3]6H2O ....................................... 1,75
.., .., .., .., ..
[e][4,3b]
............................................................................. 1,101
.., .., ..
100—295 K — ..... 1,90
Wang J., Liu X.Zh., Wang X.F., Gao G.R., Xing Zh.Q., Zhang X.D., Xu R. Nine-coordinate rare earth
metal complexes with aminopolycarboxylic acids: mononuclear (NH4)3[TbIII(ttha)]5H2O and binuclear
(NH4)4[TbIII
2(dtpa)2]9H2O ............................................................ 1,81
.., .., .., .., .., ..
8- 8- (III) . . . 1,70
.., .., .., .., ..
N-(2-)-- (2-)--
(II) ................................................... 1,108
.., .., ..
Rh[(C2H5O)2PS2]3 Co[(C6H5O)2PS2]3 ....................... 2,330
.., .., .. Ni(II) Pd(II)
2,2,6,6--3--4--5-: , .......................... 2,322
.., .., .., .., ..
............................ 3,495
.., .., .., ..
.................................................. 2,335
.., .., .., .. —-
- (II) (II)
.................................................................................... 3,507
.., .., .., .., .., ..
.., ..
(NH4)3ZrF7 (NH4)3NbOF6 ................................................................. 3,500
.., .., .., .., .. ,
Cu3(OH)2(V2O7)2H2O ......... 4,736
.., .. ........... 4,725
.., .., .., ..
Nb—Mo ............................................................ 4,729
.., .., .., .. ,
3-(1--2,2,2-)-1,1,4,5,6,7--2-,
2--1,1,4,5,6,7--3-
................................................................................... 3,522
{[(C6H5)NH]2C=NH(C6H5)}
[B(C6H5)4]C2H5OH ...................................................................... 3,512
.. ..................... 2,309
.., .., .., ..
(II)
(II) Cu(tfa)2Pb(hfa)2 ........................................................ 2,317
.., ., .., ..
.
.................................................................................... 4,741
.., .., .., .., ..
C—S :
Ru4(4-S)(,3-C3H5)2(CO)12 ............................................................... 4,748
Wang X.F., Gao J., Wang J., Zhang Zh.H., Wang Y.F., Chen L.J., Sun W., Zhang X.D. Crystal
structures of seven-coordinate (NH4)2[MnII(edta)(H2O)]3H2O, (NH4)2[MnII(cydta)(H2O)]4H2O
and K2[MnII(Hdtpa)]3,5H2O complexes ..................................................... 4,753
Стр.21
1195
.., .., .., .., ..,
.. 1--1- (2--2--1,3-6--2-)
.......................................................... 4,760
.., .., C .., .., .., ..
-
.......................... 5,933
.., .., .., .., ..,
..
Os3(µ,2-OCC6H5)(3-C3H5)(CO)9 .................................................... 5,926
.., .., .., .., ..
Y1–xTbxBa2Cu3O6+ ( = 0,10; = 0,75) ......... 6,1101
.., .., .., .., ..
(3Z)-()-4-(2-)- (3Z)-4-(2-)--3--2-
.............................................................. 5,950
.., .., .., .., .., ..,
.., ..
, .. 5,942
.., .., .., .., ..
LuBaCo4O7 ................................................. 6,1108
.., .., .. -
[Ru(NO)(NH3)2Cl3] [Ru(NO)(NH3)2(H2O)Cl2]ClH2O ................................... 6,1128
.., .., .., .., ..
()(II)
.................................................................. 6,1122
.., .., .., .., ..,
.. (II) 3--5- ........ 6,1143
.., .., .., H.., ..
(IV) .................... 6,1137
.., .., .., .., ..
-4--2,5- .............. 1,132
.., .., .. . 1,115
.., .., .., .., ..
[Pb(Phen){(-C4H9)2PS2}2], [Pb(2,2-Bipy)(-C4H9)2PS2}2]
................... 1,123
.., .., .., ..
.., .. 1:1 :
D—H…A (D = O, C;
A = O, ) ................................................................................. 2,340
.., .., ..
, C3O4 .............. 3,530
.., .., ..
CuO , .......................................... 2,353
.., .. ..... 4,764
.., .., .., ..
......................................... 4,769
.., .., .., .., ..
.......................... 3,535
--(3-) (II), [Cu(782N2)2(OH2)2]SO4
H2O ..................................................................................... 2,347
.., .., .., .., ..
La1–xSrxFeO3– .......................... 6,1114
Стр.22
1196
.., .., .., ..
s- ............................................... 1,138
.., .. : ,
, - .................................................... 2,360
.., .., ..
.................................................... 3,541
Okulik N.B., Jubert A.H., Castro E.A. Theoretical Studies on the Structure and Spectroscopic Properties
of Pseudohalides ....................................................................... 5,956
.., .., .., ..
K2[Pd(NO2)4]22 ....................................................................... 1,173
.., .., .., .. 2--4--6--1,3,5-
...................................... 1,187
.., .., .., ..
[Y(Phen){(i-C4H9)2PS2}2NO3] ........................ 1,182
.., .., .., .., ..
Fe(dpm)3 243—210 K .......................................................... 2,383
.., .., .., .., .. Burchell
T.J., Soldatov D.V., Ripmeester J.A. Crystal structure of the CO-crystal ALA-VALALAH2O:
a layered inclusion compound ............................................................... 1,193
.., .., .., .., ..,
.. 1--1--5- (2--2-1,3--6--6--2-)
.......................................... 2,390
[RhPy4Cl2]4[Re6S8(CN)6]
1,5H2O .................................................................................. 2,387
.., .., .. [(C6H5)4P]
[Ni(B9C2H11)2]CCl4 ...................................................................... 3,579
.., .., ., ..
--(4---2-) (II) ........................................ 3,575
.., .., .. (III)
(NH4)2[Ru(H2O)Cl5] ...................................................... 3,585
Wang J.-L., Liu B., Yang B.-S., Huang S.-P. Novel copper(II) complex with unusual -stacking structure,
[Cu(SSC)Cl]2 CH3OH2H2O (SSC = salicylaldehyde semicarbazone anion) ................. 3,589
., .., ..
[N-(2-)](III) , Ba(4-HCO3)[(N)Co(heida)2]2H2O
......................................................................... 3,594
..
(III)
............................................................................ 3,572
.., .., ..
-
..................... 3,567
.., .., .., .., ..,
.. Pt0,25Os0,75 ...................... 2,394
.., .., .., ..
Ru(NH3)5Cl]2[Re6S8(CN)6]3H2O .................... 1,178
.. ................................. 1,164
.., .., .., .., ..
(II) — --[Pd(NO3)2(2)2] ....... 1,168
.., .. 60
- ..................................... 1,160
.., .., .., .., ..,
.. ,
- ............................................. 1,190
Стр.23
1197
A.., .., .., ..
K2[Mo3(PdPPh3)S4(C2O4)3(H2O)3]0,5H2O ................................................... 4,775
.., .., .. (4--2,6-)
(II) .................. 4,787
., .., .. (II)
(l-)(II) [Cu(l-Arg)2]Hg2Cl6 ............................................. 4,783
.., .., .., .., ..
4,4,4--3,3--1--2---1- ... 4,795
.., .., .. - 2-N,N--5-
16H18N2O ..................................................... 4,791
.., .., .., ..
6,11--6,11--5H-[5,6][1,2-b]-11 .................... 4,798
Swamy G.Y.S.K., Sridhar B., Ravikumar K., Reddy K.S., Reddy V.V.N. Synthesis and crystal structure
of two derivatives of benzodiazepines .................................................... 4,800
.., .., ..
........................................................ 5,974
.. .................................. 5,977
.., .. Cl3P=NC(CF3)3
Cl3P=NCCl(CCl3)2 ................................ 5,971
.., .. ........................ 5,993
.., .., .., .., A..,
.. 1,3,6--3,6-
2,5--2,5- — 2,5--1,5
....................................................... 5,997
.., .., .., ..
-()(II) ............................................... 5,989
.., .., .., ..
LiFe5O8 ........................................................................ 5,985
Yin Y.-B., Song Z.-Q., Wang Z.-D., Jiang H.-Q. Crystal and Molecular Structure of ()-2-[(1S,3S)-3Acetyl-2,2-Dimethylcyclobutyl]-N-(p-Tolyl)Acetamide
........................................ 5,1001
.., .., .., .-., ..
Cs[Re6Te8(CN)6Gd(H2O)4]4H2O ................................................. 6,1167
.., ., ., ..
(Me4N)2[Nb6F6Br6(H2O)2Cl4]6H2O ........................................... 6,1163
.., .., .. 8--18--14-20--16--4,8--15-[11.7.1.03,1204,9012,19014,18016,21017,20]
............................................... 6,1179
Lai L.-L., Lee L.-J., Luo D.-W., Liu Y.-H., Wang Y. Single crystal XRD study of 4,4-dipyridyl-pethoxybenzoic
acid and N,N-dipyridylpiperazine-p-ethoxybenzoic acid co-crystals: direct evidence
of H-bond interaction in the corresponding liquid-crystalline mesogenic phases ................... 6,1175
.., .., ..
2- .................................................. 6,1182
.., .., .., ..
1 .... 6,1159
.., .
? ........................................... 6,1154
.., . -
...................................... 6,1150
.., .. -
-1,3- ............................................. 6,1147
.., .., ..
DyBr3:20H2O, YbBr3:20H2O.
................................................................... 5,982
A.., .., E.., ..
Tl5{[Nb2S4Br8]Br} ......................................................................... 4,779
.., .., .. (II) c S-1,1-2,2-
........................................................................ 6,1171
Стр.24
1198
Hoyska M., Lis T. Electrostatic Mo—O (methanol) bond in benzyltriphenylphosphonium transtetrachloro(methanol)oxomolybdate(V)
...................................................... 6,1187
.., .., .., .., ..,
(II)
.................................................................................... S22
.., .., .., ..
Cr(CO)6:
- ......... S5
.., .., .., .., .., ..,
.., ., A. ,
BN ..................................................................... S44
.., .., .. MnK-
MnO ............................................... S51
.., M.K., ., .
: , , .S58
.., .., .., .., ., .,
., ., .-.
1s* NO ............................................. S67
.., .., .., .., ..,
.. - Zn3P2,
d3P2 (Cd0,5Zn0,5)3P2 ................................................ S63
.., .., .. 5p—4d,
3d- Xe ....................................................... S77
.., .., .., .., ..,
.., A.. XPS XANES SnOx ........................ S84
EXAFS
.. XANES ............................................... S96
..
...................................................................................... S105
.., .., .., ..
V—M—Nb EXAFS ......... S118
.., ..
: XANES DFT ...................................................... S110
.., .., .., ., ., .,
C., .., .., ..
Fe—Ni/V EXAFS
............................................................................. S130
.., .., .., .., .., ..,
.., .., ..
EXAFS .......................................... S125
..
- ........................... S139
.., .., ., .., .., ..
: .................... S166
.., .., ..
................................................................................. S161
Стр.25
1199
.., .., .., .., ..
3d
................................................................................. S174
.. .... S206
.., .., ..
1639 1613 16 ........................................ S198
.., .. -
, - ....................... S211
. 49 ..................................................................... 6,1191
. 49 ................................................................. 6,1200
.., .., .., ., A., P.
Fe1/4TiTe2 ............................................ S190
Стр.26