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AbstractAbstract
[en] Possibilities of atomic tritium application as surface nanoprobe for structural investigations of adsorption layers on the liquid-air interface have been demonstrated. Frozen aqueous solutions of a series of amino acids and their mixtures and one well-known surface-active substance (cetyltrimethylammonium bromide, CTAB) were exposed to bombardment by tritium atoms generated on hot tungsten wire in a special vacuum device. This procedure resulted in substitution of hydrogen atoms by radioactive tritium in the thin surface layer of investigated samples. Curves of radioactivity changes depending on bombardment time and solution concentration for applied compounds were obtained and analyzed
Primary Subject
Source
E-MRS spring meeting 2003: Symposium A - Current trends in nanoscience - From materials to application; Strasbourg (France); 9-13 Jun 2003; S0928493103001838; Copyright (c) 2003 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Materials Science and Engineering. C, Biomimetic Materials, Sensors and Systems; ISSN 0928-4931; ; v. 23(6-8); p. 797-802
Country of publication
BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BROMINE COMPOUNDS, CARBOXYLIC ACIDS, DISPERSIONS, ELEMENTS, HALIDES, HALOGEN COMPOUNDS, HOMOGENEOUS MIXTURES, HYDROGEN ISOTOPES, ISOTOPES, LIGHT NUCLEI, METALS, MIXTURES, NUCLEI, ODD-EVEN NUCLEI, ORGANIC ACIDS, ORGANIC COMPOUNDS, RADIOISOTOPES, REFRACTORY METALS, SOLUTIONS, SORPTION, TRANSITION ELEMENTS, YEARS LIVING RADIOISOTOPES
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Ksenofontov, A.L.; Baratova, L.A.; Badun, G.A.; Melik-Nubarov, N.S.
Fourth Russian conference on radiochemistry. Radiochemistry-2003. Abstracts of reports2003
Fourth Russian conference on radiochemistry. Radiochemistry-2003. Abstracts of reports2003
AbstractAbstract
No abstract available
Original Title
Issledovanie lipid-belkovykh membrannykh sistem atomarnym tritiem. Vklyuchenie tritiya v gramitsidin
Primary Subject
Source
Rossijskaya Akademiya Nauk, Moscow (Russian Federation); Ministerstvo RF po Atomnoj Ehnergii, Moscow (Russian Federation); Mezhvedomstvennyj Nauchnyj Sovet po Radiokhimii pri Prezidiume RAN i Minatome RF, Moscow (Russian Federation); FGUP Proizvodstvennoe Ob''edinenie Mayak, Ozersk (Russian Federation); 311 p; 2003; p. 291-292; 4. Russian conference on radiochemistry. Radiochemistry-2003; Chetvertaya Rossijskaya konferentsiya po radiokhimii. Radiokhimiya-2003; Ozersk (Russian Federation); 20-25 Oct 2003; Available from FSUE TSNIIATOMINFORM, Russian Federation, 127434, Moscow, Dmitrovskoe sh., 2; 3 refs.
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AbstractAbstract
[en] A method of tritium introduction into different types of organic molecules that is based on the interaction of atomic tritium with solid organic target is described. Tritium atoms are formed on the hot W-wire, which is heated by the electric current. Such an approach is called 'tritium thermal activation method'. Here we summarize the results of labeling globular proteins (lysozyme, human and bovine serum albumins); derivatives of pantothenic acid and amino acids; ionic surfactants (sodium dodecylsulfate and alkyltrimethylammonium bromides) and nonionic high-molecular weight surfactants - pluronics. For the first time it is observed that if the target-compound is fixed and its radicals are stable the specific radioactivity of the labeled product can be drastically increased (up to 400 times) when the target temperature is ca. 295 K compared with the results obtained at 77 K. The influence of labeling parameters as tritium gas pressure, exposure time and W-wire temperature was tested for each target temperature that results in the optimum labeling conditions with high specific radioactivity and chemical yield of the resulting compound. (orig.)
Primary Subject
Record Type
Journal Article
Journal
Country of publication
AMINO ACIDS, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BIOLOGICAL MATERIALS, BLOOD, BLOOD PLASMA, BODY FLUIDS, CARBOXYLIC ACIDS, CHEMISTRY, ENZYMES, GLYCOSYL HYDROLASES, HYDROGEN ISOTOPES, HYDROLASES, HYDROXY ACIDS, ISOTOPES, LIGHT NUCLEI, MATERIALS, NUCLEI, ODD-EVEN NUCLEI, O-GLYCOSYL HYDROLASES, ORGANIC ACIDS, ORGANIC COMPOUNDS, PROTEINS, RADIOISOTOPES, TEMPERATURE RANGE, VITAMIN B GROUP, VITAMINS, YEARS LIVING RADIOISOTOPES, YIELDS
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Lukashina, E.V.; Badun, G.A.; Fedoseev, V.M.; Fedorova, N.V.; Ksenofontov, A.L.; Baratova, L.A.; Dobrov, E.N.
Fourth Russian conference on radiochemistry. Radiochemistry-2003. Abstracts of reports2003
Fourth Russian conference on radiochemistry. Radiochemistry-2003. Abstracts of reports2003
AbstractAbstract
No abstract available
Original Title
Primenenie atomarnogo tritiya dlya sravnitel'nogo issledovaniya prostranstvennoj organizatsii x virusa kartofelya i ego mutanta
Primary Subject
Source
Rossijskaya Akademiya Nauk, Moscow (Russian Federation); Ministerstvo RF po Atomnoj Ehnergii, Moscow (Russian Federation); Mezhvedomstvennyj Nauchnyj Sovet po Radiokhimii pri Prezidiume RAN i Minatome RF, Moscow (Russian Federation); FGUP Proizvodstvennoe Ob''edinenie Mayak, Ozersk (Russian Federation); 311 p; 2003; p. 294; 4. Russian conference on radiochemistry. Radiochemistry-2003; Chetvertaya Rossijskaya konferentsiya po radiokhimii. Radiokhimiya-2003; Ozersk (Russian Federation); 20-25 Oct 2003; Available from FSUE TSNIIATOMINFORM, Russian Federation, 127434, Moscow, Dmitrovskoe sh., 2
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AbstractAbstract
[en] A system consisting of a cold target and hot atoms generated by dissociation of tritium on a tungsten wire was studied with the aim to determine conditions for preparing tritium-labeled organic compounds with the maximal radiochemical yield. The influence of the atomizer temperature on the result of the reaction of tritium atoms with amino acids and tetraalkylammonium bromides was studied; homological series of the substrates were examined with the aim to evaluate the contributions of functional groups and hydrocarbon tail to the processes occurring in the target. The dependence of the yield of the labeled parent compound on the atomizer temperature varied in the range 1600-2000 K was determined. The rates of decarboxylation and deamination sharply grew with increasing temperature of the tungsten wire. The highest yield of labeled amino acids was attained at an atomizer temperature of 1800-1900 K, and at higher temperature their yield decreased. The difference between the activation energies of the elimination of the carboxy and amino groups and of the isotope exchange of hydrogen for tritium in the C-H bond appeared to be 93 and 59 kJ mol-1, respectively. For alkyltrimethylammonium bromides with the alkyl radicals C12H25, C14H29, and C16H33, the yield of the labeled parent compound reached 80-90% and was virtually independent of the atomizer temperature. The capability of tritium atoms to penetrate into the targets was evaluated. For the exponential model of the attenuation of the flow of tritium atoms inside the target, the attenuation factor for freeze-dried amino acids and alkyltrimethylammonium bromides as targets was 1.8 nm-1
[ru]
С целью определения условий получения меченных тритием органических соединений с максимальным радиохимическим выходом была изучена система, состоящая из горячих атомов, полученных при диссоциации трития на вольфрамовой проволоке, и холодной мишени. Исследовано влияние температуры атомизатора на результат взаимодействия атомов трития с аминокислотами и бромидами тетраалкиламмония, причем использовали гомологические ряды этих соединений для соотнесения вклада функциональных групп и углеводородного хвоста в процессы, происходящие в мишени. Найдена зависимость выхода меченого материнского соединения от температуры атомизатора в интервале от 1600 до 2000 К. Скорости реакций декарбоксилирования и дезаминирования резко возрастали с увеличением температуры вольфрамовой проволоки. Максимальный выход меченых аминокислот достигался при температуре атомизатора 1800-1900 К, а при более высокой температуре их выход снижался. Разница в энергии активации реакций отрыва карбоксильных и аминогрупп и изотопного замещения водорода на тритий по связи С-Н оказалась равна 93 и 59 кДж/моль соответственно. Для бромидов алкилтриметиламмония с алкильным радикалом С12Н25>С14Н29 и С16Н33 выход меченого материнского соединения достигал 80-90% и практически не зависел от температуры атомизатора. Проведена оценка способности атомов трития проникать в исследованные мишени. Для экспоненциальной модели ослабления потока атомов трития в глубь мишени соответствующий коэффициент для мишеней лиофилизованных аминокислот и бромидов алкилтриметиламмония составил 1,8 нм-1Original Title
Neravnovesnye protsessy pri vzaimodejstvii goryachikh atomov tritiya s okhlazhdennymi tverdymi mishenyami. Vliyanie temperatury atomizatora na obrazovanie mechenykh veshchestv
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Source
13 refs., 2 figs., 1 tab.
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Journal Article
Journal
Country of publication
AMINES, AMMONIUM COMPOUNDS, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BROMINE COMPOUNDS, CARBOXYLIC ACIDS, ENERGY, HALIDES, HALOGEN COMPOUNDS, HYDROGEN COMPOUNDS, HYDROGEN ISOTOPES, ISOTOPES, KINETICS, LIGHT NUCLEI, NUCLEI, ODD-EVEN NUCLEI, ORGANIC ACIDS, ORGANIC COMPOUNDS, RADIOISOTOPES, REACTION KINETICS, SYNTHESIS, TEMPERATURE RANGE, YEARS LIVING RADIOISOTOPES, YIELDS
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AbstractAbstract
[en] It is studied the influence of reaction time and molecular tritium pressure on formation of labelled amino acids during effect of atomic tritium prepared by the method thermal activation on their lyophilized mixtures and frozen solutions. It is determined that in the case of small action times radioactivity of amino acids is dependent above all on its concentration in near-the-surface layer. In the case of long-duration times of labelling it is possible decreasing of yield of labelled products for surface-active compounds at the expense of side reactions. It is discussed the water effect on formation rate of labelled products and its role in thermalization of hot tritium atoms in target. It is detected that in the case of tritium pressure increase in the system though enlarges initial target radioactivity, but has low effect on yield of labelled amino acids
[ru]
Исследовано влияние времени реакции и давления молекулярного трития на образование меченых аминокислот при воздействии на их лиофилизованные смеси и замороженные растворы атомарного трития, полученного с помощью метода термической активации. Обнаружено, что при малых временах воздействия радиоактивность аминокислоты зависит прежде всего от ее концентрации в приповерхностном слое. При длительных временах мечения возможно уменьшение выхода меченых продуктов для поверхностно-активных соединений за счет протекания побочных реакций. Обсуждается влияние воды на скорость образования меченых продуктов и ее роль в термализации горячих атомов трития в мишени. Обнаружено, что увеличение давления трития в системе хотя и увеличивает исходную радиоактивность мишени, но мало сказывается на вызоде меченых аминокислотOriginal Title
Kineticheskie zakonomernosti obrazovaniya mechenykh produktov pri dejstvii atomarnogo tritiya na zamorozhennye rastvory i liofilizovannye smesi aminokislot
Primary Subject
Source
7 refs.; 3 figs.
Record Type
Journal Article
Journal
Country of publication
AMINES, AMINO ACIDS, AZOLES, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, CARBOXYLIC ACIDS, DISPERSIONS, HETEROCYCLIC ACIDS, HETEROCYCLIC COMPOUNDS, HOMOGENEOUS MIXTURES, HYDROGEN ISOTOPES, HYDROXY ACIDS, ISOTOPES, KINETICS, LIGHT NUCLEI, MIXTURES, NUCLEI, ODD-EVEN NUCLEI, ORGANIC ACIDS, ORGANIC COMPOUNDS, ORGANIC NITROGEN COMPOUNDS, PYRROLES, PYRROLIDINES, RADIOISOTOPES, REACTION KINETICS, YEARS LIVING RADIOISOTOPES, YIELDS
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AbstractAbstract
[en] Potential application of the Radiomatic 150TR Flow Scintillation Analyzer (Packard Instrument Co., USA) for measuring low radioactivity of tritium-labelled amino acids in eluate from the Amino Acid Analyzer 835 (Hitachi, Japan) was studied. Six scintillating cocktails were tested and the Hionic-Fluor and Ultima-Flo AP cocktails proved the most appropriate for flow measurement of radioactivity. Efficiency of tritium radioactivity recording under various conditions of analysis was determined. Under optimal conditions the lower detection limit for the Hionic-Fluor was 150, while for Ultima-Flo AP-100 decays/min in the peak of amino acid
[ru]
Исследована возможность применения проточного сцинтилляционного счетчика Radiomatic 150TR Flow Scintillation Analyzer (Packard Instrument Co., США) для измерения низких радиоактивностей меченных тритием аминокислот в элюате с аминокислотного анализатора Amino Acid Analyzer 835 (Hitachi, Япония). Протестировано шесть сцинтилляционных коктейлей и показано, что наиболее подходящими для проточного измерения радиоактивности являются Hionic-Fluor и Ultima-Flo AP. Определена эффективность регистрации радиоактивности трития при различных условиях проведения анализа. При оптимальных условиях нижний предел обнаружения для Hionic-Fluor составлял 150, а для Ultima-Flo AP - 100 расп/мин в пике аминокислотыOriginal Title
Ispol'zovanie protochnogo stsintillyatsionnogo schetchika v sochetanii s aminokislotnym analizatorom dlya izmereniya nizkikh radioaktivnostej mechennykh tritiem aminokislot
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Secondary Subject
Source
5 refs.; 1 tab.; 4 figs.
Record Type
Journal Article
Journal
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Lukashina, E.V.; Fedorova, N.V.; Ksenofontov, A.L.; Baratova, L.A.; Dobrov, E.N.; Badun, N.V.
The Fifth Russian conference on radiochemistry. Radiochemistry-2006. Summaries of reports2006
The Fifth Russian conference on radiochemistry. Radiochemistry-2006. Summaries of reports2006
AbstractAbstract
No abstract available
Original Title
Primenenie atomarnogo tritiya dlya poiska strukturnykh perestroek, opredelyayushchikh razlichnye funktsional'nye sostoyaniya belka obolochki v virionakh X virusa kartofelya
Primary Subject
Source
Rossijskaya Akademiya Nauk, Moscow (Russian Federation); Federal'noe Agentstvo po Atomnoj Ehnergii (Rosatom), Moscow (Russian Federation); Mezhvedomstvennyj Nauchnyj Sovet po Radiokhimii pri Prezidiume RAN i Rosatome, Moscow (Russian Federation); Ob''edinennyj Institut Yadernykh Issledovanij, Dubna (Joint Institute for Nuclear Research (JINR)); 354 p; ISBN 5-903159-07-9; ; 2006; p. 326; The Fifth Russian conference on radiochemistry. Radiochemistry-2006; Pyataya Rossijskaya konferentsiya po radiokhimii. Radiokhimiya-2006; Dubna (Russian Federation); 23-27 Oct 2006
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Book
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Ksenofontov, A.L.; Kordyukova, L.V.; Baratova, L.A.; Badun, G.A.; Shishkov, A.V.
3. Russian conference on radiochemistry: Radiochemistry-2000. Abstracts of reports2000
3. Russian conference on radiochemistry: Radiochemistry-2000. Abstracts of reports2000
AbstractAbstract
No abstract available
Original Title
Issledovanie lipid-belkovykh membrannykh sistem atomarnym tritiem
Primary Subject
Source
Ministerstvo Rossijskoj Federatsii po Atomnoj Ehnergii, Moscow (Russian Federation); Mezhvedomstvennyj Nauchnyj Sovet po Radiokhimii pri Prezidiume RAN i Minatome RF, Moscow (Russian Federation); GUP NPO Radievyj Inst. im. V.G. Khlopina, Sankt-Petersburg (Russian Federation); 280 p; 2000; p. 260; 3. Russian conference on radiochemistry: Radiochemistry-2000; 3. Rossijskaya konferentsiya po radiokhimii: Radiokhimiya-2000; Sankt-Petersburg (Russian Federation); 28 Nov - 1 Dec 2000
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Lukashina, E.V.; Badun, G.A.; Fedoseev, V.M.; Ksenofontov, A.L.; Baratova, L.A.; Dobrov, E.N.
3. Russian conference on radiochemistry: Radiochemistry-2000. Abstracts of reports2000
3. Russian conference on radiochemistry: Radiochemistry-2000. Abstracts of reports2000
AbstractAbstract
No abstract available
Original Title
Ispol'zovanie protochnogo schetchika Canberra Packard Radiomatic 150TR dlya izmereniya nizkikh radioaktivnostej mechennykh tritiem aminokislot
Primary Subject
Source
Ministerstvo Rossijskoj Federatsii po Atomnoj Ehnergii, Moscow (Russian Federation); Mezhvedomstvennyj Nauchnyj Sovet po Radiokhimii pri Prezidiume RAN i Minatome RF, Moscow (Russian Federation); GUP NPO Radievyj Inst. im. V.G. Khlopina, Sankt-Petersburg (Russian Federation); 280 p; 2000; p. 212; 3. Russian conference on radiochemistry: Radiochemistry-2000; 3. Rossijskaya konferentsiya po radiokhimii: Radiokhimiya-2000; Sankt-Petersburg (Russian Federation); 28 Nov - 1 Dec 2000
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