Zobrazeno 1 - 10
of 52
pro vyhledávání: '"O. O. Parenago"'
Publikováno v:
Russian Journal of Physical Chemistry B. 16:1416-1421
Publikováno v:
Russian Journal of Physical Chemistry B. 16:1253-1258
Publikováno v:
Russian Journal of Physical Chemistry B. 16:1242-1252
Publikováno v:
Russian Journal of Physical Chemistry B. 15:1107-1112
Publikováno v:
Russian Journal of Physical Chemistry B. 15:1314-1319
Autor:
A. M. Vorobei, O. O. Parenago
Publikováno v:
Russian Journal of Physical Chemistry A. 95:407-417
Literature data on basic research for and practical application of the synthesis of micro- and nanoparticles with the use of supercritical fluids (SCFs) are systematized and analyzed. The review of SCF-based micronization is divided into sections acc
Publikováno v:
Сорбционные и хроматографические процессы. 20:658-673
Supercritical fluid extraction (SFE) is actively used in the separation of valuable components or espe-cially toxic and radioactive substances from various natural sources, such as water systems. Despite the active study of this method, its possibili
Autor:
Elena N. Golubeva, O. O. Parenago, Igor I. Mishanin, Alexey E. Lazhko, A. V. Bystrova, Peter S. Timashev, Sergei G. Zlotin, Anton Sergeevich Shalygin, Evgeniya V. Filatova, Mikhail G. Kiselev, Alexander Yu. Nikolaev, Anastasia S. Belova, R. D. Oparin, Maxim N. Temnikov, Oleg P. Parenago, Evgenii S. Alekseev, Alexey A. Philippov, O. V. Turova, Yuriy N. Kononevich, T. V. Bogdan, Ekaterina A. Grebenik, Aleksei E. Koklin, Inga A. Ronova, Oleg I. Gromov, Anna B. Solovieva, Nikolay S. Nesterov, Aziz M. Muzafarov, Sergey E. Lyubimov, Elvira R. Gafarova, Vadim A. Davankov, Andrey M. Chibiryaev, Alexander Alentiev, V. V. Lunin, Viktor I. Bogdan, Yana A. Pokusaeva, Oleg N. Martyanov
Publikováno v:
Russian Chemical Reviews. 89:1337-1427
Autor:
R. A. Zdrajevsky, D. A. Zimnyakov, D. A. Vereshagin, E. O. Epifanov, Vladimir K. Popov, O. V. Ushakova, Nikita V. Minaev, O. O. Parenago
Publikováno v:
Russian Journal of Physical Chemistry B. 14:1268-1276
The mechanisms that control the nucleation kinetics in foamed amorphous D,L-polylactide, which was preliminary plasticized using subcritical or supercritical carbon dioxide, were determined by analyzing the video data on the depressurization-induced
Publikováno v:
Russian Journal of Physical Chemistry B. 13:1111-1116
—The three most common methods for measuring chromatographic dead time in supercritical fluid chromatography are tested. It is shown that at low concentrations of a polar cosolvent in the mobile phase, the use of the simplest “system peak” meth