SPRINGER
INSTITUTE OF CHEMISTRY
SLOVAK ACADEMY OF SCIENCES
Home
Editorial Board
Information for Contributors
Table of Contents
Contacts
ISSN print edition: 0366-6352
ISSN electronic edition: 1336-9075
Registr. No.: MK SR 9/7
Published monthly
Author:
Mikulášová
The malate dehydrogenase from Streptomyces aureofaciens: Purification and properties
355
–
355
D. Mikulasova
,
N. Mernik
, and
M. Kollarova
Vol.
52
,
SI
The malate dehydrogenase from Streptomyces aureofaciens
356
–
356
M. Kollarova
,
D. Mikulasova
, and
N. Mernik
Vol.
52
,
SI
Cytotoxic effects of 2,4-disubstituted 6H-5,1,3-benzothiadiazocines
574
–
574
M. Hazuchova
,
M. Mikulasova
, and
A. Gul'asova
Vol.
52
,
SI
Synthesis and some solution properties of block copolymer styrene acrylonitrile
235
–
242
V. Chrástová
,
D. Mikulášová
,
P. Citovický
, and
J. Schenkmayer
Vol.
42
,
2
Influence of the type of activator and emulsifier on heterogeneously initiated polymerization of styrene
499
–
507
V. Chrástová
,
P. Citovický
,
D. Mikulášová
, and
J. Schenkmayer
Vol.
40
,
4
Emulsion polymerization in the presence of inorganic material
475
–
483
D. Mikulášová
,
V. Chrástová
,
P. Citovický
, and
I. Hudec
Vol.
37
,
4
Photoinitiated emulsion polymerization of styrene or methyl methacrylate in the presence of zinc oxide
485
–
494
I. Hudec
,
D. Mikulášová
,
P. Citovický
, and
V. Chrástová
Vol.
37
,
4
Oxidized poly(vinyl chloride) as a heterogeneous initiator of emulsion polymerization
223
–
230
V. Chrástová
,
D. Mikulášová
, and
P. Citovický
Vol.
36
,
2
Polymolecularity of the extremely high molecular mass polymer prepared by emulsion polymerization with a macromolecular initiator forming a heterogeneous phase
533
–
541
L. Šoltés
,
D. Mikulášová
,
J. Susla
, and
I. Hudec
Vol.
35
,
4
Measurements of molecular characteristics of the extremely high molecular mass polystyrene in solution
543
–
549
L. Šoltés
,
D. Mikulášová
, and
I. Hudec
Vol.
35
,
4
Role of polypropylene polyhydroperoxide in the emulsion polymerization of styrene and methyl methacrylate
186
–
193
D. Mikulášová
,
V. Chrástová
,
P. Citovický
, and
T. Fačková
Vol.
32
,
2
Decomposition of peroxides of isotactic powdered polypropylene by hydroiodic acid
194
–
204
P. Citovický
,
I. Šimek
,
D. Mikulášová
, and
V. Chrástová
Vol.
32
,
2
Influence of triethylenetetramine on the emulsion polymerization of styrene
205
–
210
V. Chrástová
,
D. Mikulášová
, and
P. Citovický
Vol.
32
,
2
Iodometric determination of hydroperoxides of powdered isotactic polypropylene
342
–
350
P. Citovický
,
I. Šimek
,
D. Mikulášová
, and
V. Chrástová
Vol.
30
,
3
Emulsion polymerization of styrene initiated by peroxides of powdered isotactic polypropylene in the presence of triethylenetetramine
802
–
809
P. Citovický
,
I. Šimek
,
D. Mikulášová
,
V. Chrástová
, and
J. Řezníček
Vol.
28
,
6
Redox polymerization systems for the preparation of grafted polypropylene. I. Grafting of polypropylene with styrene in the presence of triethylenetetramine metal chelates
263
–
267
D. Mikulášová
and
P. Citovický
Vol.
27
,
2
Redox polymerization systems for the preparation of grafted polypropylene. II. Grafting of polypropylene with vinyl or diene monomers in the presence of iron(2+) ion chelates
268
–
272
P. Citovický
,
D. Mikulášová
, and
V. Chrástová
Vol.
27
,
2
Preparation of crystalline polychloroprene rubber
449
–
456
P. Citovický
,
D. Mikulášová
, and
V. Chrástová
Vol.
26
,
5
The role of the emulsifier in grafting oxidized polypropylene by styrene in the presence of iron(II) sulfate and triethylenetetramine
605
–
609
P. Citovický
and
D. Mikulášová
Vol.
22
,
8
Mechanism of action of the triethylenetetramine-ferrous sulfate system in grafting
37
–
42
D. Mikulášová
and
P. Citovický
Vol.
20
,
1
Inoculation of polypropylene with styrene. I. Use of tri-ethylenetetramine-iron(II) redox system
614
–
619
D. Mikulášová
and
M. Gheorghiu
Vol.
18
,
8
Inoculation of polypropylene with styrene. II. The optimum concentration of components of the redox system
620
–
628
I. Šimek
,
D. Mikulášová
, and
M. Gheorghiu
Vol.
18
,
8
Polymerization of tetrasubstituted allylmethylsilanes. IV. Copolymerization of methyl methacrylate with triallylmethylsilane and tetraallylsilane
228
–
233
D. Mikulášová
,
J. Pavlinec
,
I. Šimek
, and
A. Hrivík
Vol.
13
,
4
Polymerization of tetrasubstituted allylmethylsilanes. III. Kinetics of the polymerization of triallylmethylsilane and tetraallylsilane
32
–
36
A. Hrivík
and
D. Mikulášová
Vol.
12
,
1
Polymerization of tetrasubstituted allylmethylsilanes. II. The mechanism of radical polymerization of allyltrimethylsilane
708
–
714
D. Mikulášová
and
A. Hrivík
Vol.
11
,
12
The polymerization of tetrasubstituted allylmethylsilanes. I. Kinetics of the polymerization of allyltrimethylsilane and diallyldimethylsilane
641
–
650
D. Mikulášová
and
A. Hrivík
Vol.
11
,
11
The preparation of allylmagnesium bromide
622
–
625
D. Mikulášová
,
A. Hrivík
, and
I. Šimek
Vol.
10
,
10
Sunday, November 24, 2024
IMPACT FACTOR 2023
2.1
SCImago Journal Rank 2023
0.381
SEARCH
Advanced
VOLUMES
» Online First Articles
⇓ Volumes 71 – 78
»
Volume 78
»
Volume 77
»
Volume 76
»
Volume 75
»
Volume 74
»
Volume 73
»
Volume 72
»
Volume 71
⇓ Volumes 61 – 70
»
Volume 70
»
Volume 69
»
Volume 68
»
Volume 67
»
Volume 66
»
Volume 65
»
Volume 64
»
Volume 63
»
Volume 62
»
Volume 61
⇓ Volumes 51 – 60
»
Volume 60
»
Volume 59
»
Volume 58
»
Volume 57
»
Volume 56
»
Volume 55
»
Volume 54
»
Volume 53
»
Volume 52
»
Volume 51
⇓ Volumes 41 – 50
»
Volume 50
»
Volume 49
»
Volume 48
»
Volume 47
»
Volume 46
»
Volume 45
»
Volume 44
»
Volume 43
»
Volume 42
»
Volume 41
⇓ Volumes 31 – 40
»
Volume 40
»
Volume 39
»
Volume 38
»
Volume 37
»
Volume 36
»
Volume 35
»
Volume 34
»
Volume 33
»
Volume 32
»
Volume 31
⇓ Volumes 21 – 30
»
Volume 30
»
Volume 29
»
Volume 28
»
Volume 27
»
Volume 26
»
Volume 25
»
Volume 24
»
Volume 23
»
Volume 22
»
Volume 21
⇓ Volumes 11 – 20
»
Volume 20
»
Volume 19
»
Volume 18
»
Volume 17
»
Volume 16
»
Volume 15
»
Volume 14
»
Volume 13
»
Volume 12
»
Volume 11
⇓ Volumes 1 – 10
»
Volume 10
»
Volume 9
»
Volume 8
»
Volume 7
»
Volume 6
»
Volume 5
»
Volume 4
»
Volume 3
»
Volume 2
»
Volume 1
»
Most Cited Articles
»
Impact Factor
»
SCImago Journal Rank
© 2024 Chemical Papers