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Full text publications:

  1. Gazieva E.A., Gavrilenko N.A., Kasymova T.A., Gavrilenko M.A. Sensor based on metals acetylacetonates for determination of organic substances vapour in the atmosphere // Key Engineering Materials. Volume 670, 2016, Pages 241-245
  2. Faustova Z.V., Slizhov Y.G., Gavrilenko M.A., Gavrilenko N.A., Terentiev R.A. Determination of antioxidant composition in berry juices using solid phase extraction with copper phthalocyanine // Key Engineering Materials. Volume 670, 2016, Pages 213-217
  3. M.A. Gavrilenko, E.A. Gazieva, N.A. Gavrilenko, I.V. Kirsanova Effect of Polyethylene Glycol Immobilized into a Polymethacrylate Matrix on the Sorption of Rhodamine //Procedia Chemistry 15 ( 2015 ) 21 – 26
Solid Phase Spectrophotometric Determination of Silver Using Dithizone Immobilized in a Polymethacrylate Matrix
Abstract: The sensitivity of the earlier proposed procedures for the determination of iron(II, III) with 1,10-phenanthroline, silver(I) with dithizone, mercury with copper(II) dithizonate, copper(II) with lead diethyldithiocarbamate, and ascorbic acid with 2,6-dichlorophenolindophenol using polymethacrylate optical sensitive elements for solid phase spectrophotometry is enhanced through the use of thermal lens spectrometry as the most sensitive method of molecular absorption spectroscopy. The limits of detection for all photometric reactions in the polymethacrylate matrix are reduced by an order of magnitude (to 10 nM) without substantial changes in the experimental conditions.
Potentials of thermal lens spectroscopy for polymethacrylate optical sensors
Abstract: The sensitivity of the earlier proposed procedures for the determination of iron(II, III) with 1,10-phenanthroline, silver(I) with dithizone, mercury with copper(II) dithizonate, copper(II) with lead diethyldithiocarbamate, and ascorbic acid with 2,6-dichlorophenolindophenol using polymethacrylate optical sensitive elements for solid phase spectrophotometry is enhanced through the use of thermal lens spectrometry as the most sensitive method of molecular absorption spectroscopy. The limits of detection for all photometric reactions in the polymethacrylate matrix are reduced by an order of magnitude (to 10 nM) without substantial changes in the experimental conditions.
Solid Phase-Enhanced Photothermal Lensing with Mesoporous Polymethacrylate Matrices for Optical-Sensing Chemical Analysis
Abstract: Procedures for the photothermal lens determination of metals and organic compounds, on the basis of solid-phase mesoporous optical-sensing materials (polymethacrylate [PMA]) matrices with immobilized reagents, were developed. These procedures combine (i) selective and efficient preconcentration of trace substances to be analyzed in specially designed and synthesized transparent mesoporous PMA plates; (ii) sensitive determination with the reliable and traceable photometric reactions previously developed for classical spectrophotometry; and (iii) the sensitivity enhancement of photothermal lens detection in polymers, which provides at least a ten-fold increase in sensitivity compared with solutions due to polymer thermo-optical properties (solid phase–enhanced thermal lensing). It is shown that the overall sensitivity of photothermal lens measurements in PMA matrices is two orders higher than photometric absorbance measurements for the same excitation source power, which is in good agreement with the expected theoretical sensitivities. Changes in the preparation of transparent PMA plates and analytical procedures for photothermal measurements compared with spectrophotometry are discussed. PMA matrices modified with various analytical reagents were applied to trace determination of mercury(II), Fe(II), Ag(I), Cu(II), and ascorbic acid, with subnanomolar to nanomolar limits of detection.
Determination of chromium(VI) using 1.5-diphenylcarbazide immobilized in a polymethacrylate matrix
Abstract: The interaction of chromium(VI) with 1.5-diphenylcarbazide immobilized in transparent polymethacrylate matrix was studied. The optimal conditions were found for interaction metal with reagent in solid phase. The solid-phase spectrophotometric procedure was proposed for determination of chromium(VI) with the range of determinated concentrations 0.05...1.0 mg/L and the detection limit 0.014 mg/L. The possibility of using thermal lens spectrometry as a more sensitive method of molecular absorption spectroscopy for lowering the limit of detection of chromium(VI) was studied. The thermal lens spectrometer with the modulated excitation beam at 514.5 nm was used for measurement thermal lens signal. Changes in the preparation of transparent polymethacrylate matrix and analytical procedures for photothermal measurements compared with spectrophotometry not required. The using of thermal lens spectrometry allowed decreasing of the detection limit to the value 0.002 mg /L. The range of determinated concentrations was 0.005...0.05 mg/L.

Список публикаций

По техническим причинам добавление новых публикаций временно недоступно.

Количество записей: 75

  1. Solid-Phase Spectrophotometric Iodometric Determination of Nitrite and Selenium(IV) Using a Polymethacrylate Matrix / N. A. Gavrilenko [et al.] // Journal of Analytical Chemistry . — 2017 . — Vol. 72, iss. 5 . — [P. 546–550] . — Title screen. — [References: p. 550 (16 tit.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  2. Gavrilenko, Mikhail Alekseevich. Colorimetric sensor for the determination of low-molecular-weight heparin / M. A. Gavrilenko, N. A. Gavrilenko // Mendeleev Communications . — 2017 . — Vol. 27, iss. 4 . — [P. 419–420] . — Title screen. — [References: p. 420 (33 tit.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  3. Гавриленко, Наталия Айратовна. Твердофазно-спектрофотометрическое определение меди(II) с использованием неокупроина, иммобилизованного в полиметакрилатной матрице / Н. А. Гавриленко, Н. В. Саранчина, М. А. Гавриленко // Аналитика и контроль . — 2016 . — Т. 20, № 4 . — [С. 330-336] . — Заглавие с экрана. — [Библиогр.: с. 336 (21 назв.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  4. Polymethacrylate Matrix with Immobilized Acid–Base Indicators as pH Sensor / A. V. Sukhanov [et al.] // Procedia Engineering . — 2016 . — Vol. 168 : Eurosensors 2016 . — [P. 477–480] . — Title screen. — [References: p. 480 (5 tit.)]..

  5. Visible color changes estimation in colorimetric determination of chromium (VI) using polymeric sensors / N. A. Gavrilenko [et al.] // Acta IMEKO . — 2016 . — Vol. 5, iss. 3: Introduction to the Special Section TC21 of the XXI IMEKO World Congress 2015 . — [P. 95-100] . — Title screen. — Режим доступа: по договору с организацией-держателем ресурса..

  6. Novel Colorimetric Sensor for Cupric Reducing Antioxidant Capacity (CUPRAC) Measurement / E. S. Krylova [et al.] // Procedia Engineering . — 2016 . — Vol. 168 : Eurosensors 2016 . — [P. 355-358] . — Title screen. — [References: p. 358 (9 tit.)]..

  7. A digital colorimetric analyzer for chemical measurements on the basis of polymeric optodes / S. V. Muravyov (Murav’ev) [et al.] // Instruments and Experimental Techniques . — 2016 . — Vol. 59, iss. 4 . — [P. 592-600] . — Title screen. — [References: 27 tit.]. — Режим доступа: по договору с организацией-держателем ресурса..

  8. Цифровой цветометрический анализатор состава веществ на основе полимерных оптодов / С. В. Муравьев [и др.] // Приборы и техника эксперимента научный журнал: . — 2016 . — № 4 . — [С. 115-123] . — Заглавие с экрана. — [Библиогр.: 27 назв.]. — Режим доступа: по договору с организацией-держателем ресурса..

  9. Гавриленко, Наталия Айратовна. Твердофазно-спектрофотометрическое определение нитритов в воде с использованием реактива грисса и сафранина, иммобилизованных в полиметакрилатной матрице / Н. А. Гавриленко, Н. В. Саранчина, А. В. Суханов // Аналитика и контроль . — 2015 . — Т. 19, № 3 . — [С. 252-258] . — Заглавие с экрана. — [Библиогр.: с. 258 (15 назв.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  10. Acid-base properties of the pH indicators into polymethacrylate matrix / N. A. Gavrilenko [et al.] // 9th International Conference onInstrumental Methods of Analysis: Modern Trends and Applications (IMA2015) 20-24 September 2015, Kalamata, Greece : book of abstracts: / Technological Educational Institute of Peloponnese ; National Technical University of Athens . — Greece : 2015 . — [P. 284] . — Title screen. — [References: p. 284 (2 tit.)]..

  11. Sensor Based on Metals Acetylacetonates for Determination of Organic Substances Vapour in the Atmosphere / E. A. Gazieva [et al.] // Key Engineering Materials Scientific Journal: . — 2015 . — Vol. 670 : Multifunctional Chemical Materials and Technologies . — [P. 241-245] . — Title screen. — Режим доступа: по договору с организацией-держателем ресурса..

  12. Determination of Antioxidant Composition in Berry Juices Using Solid Phase Extraction with Copper Phthalocyanine / Zhanna V. Faustova [et al.] // Key Engineering Materials Scientific Journal: . — 2015 . — Vol. 670 : Multifunctional Chemical Materials and Technologies . — [P. 213-217] . — Title screen. — Режим доступа: по договору с организацией-держателем ресурса..

  13. Gavrilenko, Natalia Airatovna. A colorimetric sensor based on a polymethacrylate matrix with immobilized 1-(2-pyridylazo)-2-naphthol for the determination of cobalt / N. A. Gavrilenko, N. V. Saranchina, M. A. Gavrilenko // Journal of Analytical Chemistry Scientific Journal: . — 2015 . — Vol. 70, iss. 12 . — [P. 1475-1479] . — Title screen. — [References: p. 1479 (21 tit.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  14. Gavrilenko, Mikhail Alekseevich. The transparent of optical sensors PEG-PMMA on xantene dyes / M. A. Gavrilenko, N. A. Gavrilenko, N. V. Saranchina // 9th International Conference onInstrumental Methods of Analysis: Modern Trends and Applications (IMA2015) 20-24 September 2015, Kalamata, Greece : book of abstracts: / Technological Educational Institute of Peloponnese ; National Technical University of Athens . — Greece : 2015 . — [P. 285] . — Title screen. — [References: p. 285 (1 tit.)]..

  15. Effect of Polyethylene Glycol Immobilized into a Polymethacrylate Matrix on the Sorption of Rhodamine / M. A. Gavrilenko [et al.] // Procedia Chemistry . — 2015 . — Vol. 15 : Chemistry and Chemical Engineering in XXI century (CCE 2015) . — [P. 21-26] . — Title screen. — [References: р. 26 (14 tit.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  16. Consideration of Complementary Error During Design of the Alternating Current Coaxial Shunts / E. V. Bedareva [et al.] // Mechanical Engineering, Automation and Control Systems (MEACS) proceedings of the International Conference, Tomsk, 1-4 December, 2015: / National Research Tomsk Polytechnic University (TPU) ; Institute of Electrical and Electronics Engineers (IEEE) . — [S. l.] : IEEE , 2015 . — [4 p.] . — Title screen. — [References: 11 tit.]. — Режим доступа: по договору с организацией-держателем ресурса..

  17. Gavrilenko, Mikhail Alekseevich. Solid-phase extraction of fluorinated benzoic acids for the chromatographic analysis of oil tracer agents / M. A. Gavrilenko, N. A. Gavrilenko // Mendeleev Communications . — 2015 . — Vol. 25, iss. 2 . — [P. 159-160] . — Title screen. — [References: p. 160 (11 tit.)]. — Режим доступа: по договору с организацией-держателем ресурса..

  18. Colorimetric polymer sensor for determination of chromium (VI): Comparison of estimation methods of the visible color changes / N. V. Saranchina, N. A. Gavrilenko, A. V. Sukhanov, S. V. Muravyov (Murav’ev) // Measurement in Research and Industry Proceedings of the XXI IMEKO World Congress, August 30 − September 4, 2015, Prague, Czech Republic: . — Budapest : IMEKO , 2015 . — [4 р.] . — Title screen. — [References: 11 tit.]..

  19. Гавриленко, Михаил Алексеевич. Экспериментальные методы пробоподготовки. Хроматография = Experimental Methoods of Pretreatment. Chromatography : учебное пособие для вузов / М. А. Гавриленко, Н. А. Гавриленко; Национальный исследовательский Томский политехнический университет (ТПУ). — Томск: Изд-во ТПУ, 2014. — 117 с.: ил.. — Библиогр.: с. 114..

  20. Гавриленко, Михаил Алексеевич. Экспериментальные методы пробоподготовки. Хромотография = Experimental methods of pretreatment. Chromatography : учебное пособие [Электронный ресурс] / М. А. Гавриленко, Н. А. Гавриленко; Национальный исследовательский Томский политехнический университет (ТПУ). — 1 компьютерный файл (pdf; 1.9 Mb). — Томск: Изд-во ТПУ, 2014. — Заглавие с титульного экрана. — Электронная версия печатной публикации. — Текст на английском языке. — Режим доступа: из корпоративной сети ТПУ. — Системные требования: Adobe Reader..

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