Colorimetric sensor for the determination of low-molecular-weight heparin; Mendeleev Communications; Vol. 27, iss. 4
| Parent link: | Mendeleev Communications Vol. 27, iss. 4.— 2017.— [P. 419–420] |
|---|---|
| Autor principal: | Gavrilenko M. A. Mikhail Alekseevich |
| Autor Corporativo: | Национальный исследовательский Томский политехнический университет (ТПУ) Институт кибернетики (ИК) Кафедра систем управления и мехатроники (СУМ) |
| Outros Autores: | Gavrilenko N. A. Natalia Airatovna |
| Resumo: | Title screen A colorimetric sensor was proposed for the visual and solid phase spectrophotometric detection of low-molecular-weight heparin in concentration ranges of 40–120 and 5–40 mg dm–3, respectively, with a detection limit of 2.0 mg dm–3 using a color destruction reaction of toluidine blue immobilized in an optically transparent polymethacrylate matrix. Режим доступа: по договору с организацией-держателем ресурса |
| Idioma: | inglês |
| Publicado em: |
2017
|
| Assuntos: | |
| Acesso em linha: | https://doi.org/10.1016/j.mencom.2017.07.035 |
| Formato: | Recurso Electrónico Capítulo de Livro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=656305 |
Registos relacionados
Colorimetric sensor for determination of thiocyanate in fossil and drill waters; Mendeleev Communications; Vol. 27, iss. 5
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2017)
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2017)
A colorimetric sensor based on a polymethacrylate matrix with immobilized 1-(2-pyridylazo)-2-naphthol for the determination of cobalt; Journal of Analytical Chemistry; Vol. 70, iss. 12
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2015)
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2015)
Solid phase colorimetric determination of iodine in food grade salt using polymethacrylate matrix; Food Chemistry; Vol. 280
Publicado em: (2019)
Publicado em: (2019)
Colorimetric polymethacrylate sensors; Theoretical and experimental chemistry
Publicado em: (2017)
Publicado em: (2017)
Chemical Analysis; Vol. III: Colorimetric Determination of Traces of Metals
Por: Sandell E. B.
Publicado em: (New York, Interscience Publishers, INC., 1959)
Por: Sandell E. B.
Publicado em: (New York, Interscience Publishers, INC., 1959)
Naked-eye colorimetric sensors for mercury detection in fish products; Theoretical and experimental chemistry
Por: Posvyashennaya A. K.
Publicado em: (2017)
Por: Posvyashennaya A. K.
Publicado em: (2017)
Colorimetric sensors for heparin detection by toluidine blue and malachite green dyes; Перспективы развития фундаментальных наук; Т. 4 : Биомедицина
Por: Sukhoroslova E. V.
Publicado em: (2016)
Por: Sukhoroslova E. V.
Publicado em: (2016)
Colorimetric Sensor Based on Silver Nanoparticle – Embedded Polymethacrylate Matrix; Advanced Materials Research; Vol. 1040 : High Technology: Research and Applications 2014 (HTRA 2014)
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2014)
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2014)
Polymethacrylate Colorimetric Sensor for Evaluation of Total Antioxidant Capacity; Procedia Chemistry; Vol. 10 : Chemistry and Chemical Engineering in XXI century
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2014)
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2014)
Transparent polymer sensor for visual and photometrical detection of thiocyanate in oilfield water; Journal of Petroleum Science and Engineering; Vol. 172
Publicado em: (2019)
Publicado em: (2019)
Novel Colorimetric Sensor for Cupric Reducing Antioxidant Capacity (CUPRAC) Measurement; Procedia Engineering; Vol. 168 : Eurosensors 2016
Publicado em: (2016)
Publicado em: (2016)
Твердофазно-спектрофотометрическое определение ионов ртути (II) с использованием дифенилкарбазона; Химия в интересах устойчивого развития; Т. 26, № 1
Por: Посвященная А. К. Анжелика Константиновна
Publicado em: (2018)
Por: Посвященная А. К. Анжелика Константиновна
Publicado em: (2018)
Polymeric analytical medium for colorimetric test methods; Энерго-ресурсоэффективность в интересах устойчивого развития
Publicado em: (2018)
Publicado em: (2018)
Colorimetric Polymethacrylate Sensor; Advanced Materials Research : Advanced materials, synthesis, development and application; Vol. 880 : Prospects of Fundamental Sciences Development (PFSD-2013)
Publicado em: (2014)
Publicado em: (2014)
Rapid colorimetric determination of ascorbic acid by solid phase extraction of iodine into a polymethacrylate matrix; Mendeleev Communications; Vol. 32, iss. 1
Publicado em: (2022)
Publicado em: (2022)
Определение синтетических красителей Е102,Е110, Е124, Е131 в йогурте методом твердофазнойспектрофотометрии; Аналитика и контроль; Т. 24, № 1
Publicado em: (2020)
Publicado em: (2020)
Colorimetric Determination of Metal Ions Using Smartphone; Key Engineering Materials; Vol. 769 : High Technology: Research and Applications (HTRA 2017)
Por: Urazov E. V. Eldar Valentinovich
Publicado em: (2018)
Por: Urazov E. V. Eldar Valentinovich
Publicado em: (2018)
Колориметрическое определение глюкозы с использованием наночастиц золота, иммобилизованных в ПММ; Химия и химическая технология в XXI веке; Т. 1
Por: Баженова О. А. Ольга Александровна
Publicado em: (2025)
Por: Баженова О. А. Ольга Александровна
Publicado em: (2025)
Smartphone-based colorimetric determination of fluoride anions using polymethacrylate optode; Talanta; Vol. 226
Publicado em: (2021)
Publicado em: (2021)
The Low Molecular Weight Proteome Methods and Protocols /
Publicado em: (2013)
Publicado em: (2013)
Sorption of Rhodamine into Polymer Block Matrix; Advanced Materials Research; Vol. 1040 : High Technology: Research and Applications 2014 (HTRA 2014)
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2014)
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2014)
Colorimetric and fluorescent sensing of rhodamine using polymethacrylate matrix; Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy; Vol. 220
Publicado em: (2019)
Publicado em: (2019)
Практическое руководство по спектрофотометрии и колориметрии: учебное пособие для университетов
Por: Пешкова В. М. Валентина Моисеевна
Publicado em: (Москва, Изд-во Московского ун-та, 1965)
Por: Пешкова В. М. Валентина Моисеевна
Publicado em: (Москва, Изд-во Московского ун-та, 1965)
Colorimetric determination of bromate in drinking water using methyl red immobilized into polymethacrylate matrix; International Journal of Environmental Analytical Chemistry; Vol. 103, iss. 5
Publicado em: (2023)
Publicado em: (2023)
Polymethacrylate Sensors for Rapid Digital Colorimetric Analysis of Toxicants in Natural and Anthropogenic Objects; IEEE Sensors Journal; Vol. 19, iss. 13
Publicado em: (2019)
Publicado em: (2019)
Gas-chromatographic separation of phenols on nickel, copper and zinc diethyldithiocarbamates; Mendeleev Communications; Vol. 16, iss. 5
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2006)
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2006)
Определение железа (III) в водных объектах методом твердофазной спектроскопии диффузного отражения; Современные технологии, экономика и образование
Publicado em: (2019)
Publicado em: (2019)
Determination of vanillin in smoking mixtures by spectrophotometry; Modern Analytical Chemistry
Por: Efremenko E. A. Elizaveta Andreevna
Publicado em: (2020)
Por: Efremenko E. A. Elizaveta Andreevna
Publicado em: (2020)
Solid-phase extraction of fluorinated benzoic acids for the chromatographic analysis of oil tracer agents; Mendeleev Communications; Vol. 25, iss. 2
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2015)
Por: Gavrilenko M. A. Mikhail Alekseevich
Publicado em: (2015)
Voltammetric Determination of Carmoisine in Soft Drinks; Inorganic Materials; Vol. 53, iss. 14
Publicado em: (2017)
Publicado em: (2017)
Voltammetric Determination of Tartrazine in Food; Journal of Analytical Chemistry; Vol. 72, iss. 4
Por: Lipskikh O. I. Olga Ivanovna
Publicado em: (2017)
Por: Lipskikh O. I. Olga Ivanovna
Publicado em: (2017)
Solid-Phase Spectrophotometric Iodometric Determination of Nitrite and Selenium(IV) Using a Polymethacrylate Matrix; Journal of Analytical Chemistry; Vol. 72, iss. 5
Publicado em: (2017)
Publicado em: (2017)
Electrochemical determination of heparin in pharmaceuticals; Theoretical and experimental chemistry
Por: Vishenkova D. A. Dariya Aleksandrovna
Publicado em: (2017)
Por: Vishenkova D. A. Dariya Aleksandrovna
Publicado em: (2017)
Piezoelectric Sensorics. Force. Strain. Pressure. Acceleration and Acoustric Emission Sensors. Materials and Amplifiers
Por: Gautschi G. Gustav
Publicado em: (Berlin, Springer-Verlag, 2002)
Por: Gautschi G. Gustav
Publicado em: (Berlin, Springer-Verlag, 2002)
Безаппаратурное колориметрическое определение металлов с помощью смартфона; Высокие технологии в современной науке и технике (ВТСНТ-2017)
Por: Уразов Э. В. Эльдар Валентинович
Publicado em: (2017)
Por: Уразов Э. В. Эльдар Валентинович
Publicado em: (2017)
Сравнительная оценка цитотоксичности производных вердазильных радикалов разными колориметрическими тестами; Химия и химическая технология в XXI веке; Т. 1
Por: Бердинская Е.С.
Publicado em: (2021)
Por: Бердинская Е.С.
Publicado em: (2021)
Sensor Based on Metals Acetylacetonates for Determination of Organic Substances Vapour in the Atmosphere; Key Engineering Materials; Vol. 670 : Multifunctional Chemical Materials and Technologies
Publicado em: (2015)
Publicado em: (2015)
Low field magnetic sensing with anisotropic magnetoresistive sensors; Вестник науки Сибири; № 2 (8)
Por: Uchaykin S. V. Sergey Victorovich
Publicado em: (2013)
Por: Uchaykin S. V. Sergey Victorovich
Publicado em: (2013)
Sensors for voltammetric determination of food azo dyes - A critical review; Electrochimica Acta; Vol. 260
Publicado em: (2018)
Publicado em: (2018)
Цветовые измерения
Por: Кривошеев М. И. Марк Иосифович
Publicado em: (Москва, Энергоатомиздат, 1990)
Por: Кривошеев М. И. Марк Иосифович
Publicado em: (Москва, Энергоатомиздат, 1990)
Registos relacionados
-
Colorimetric sensor for determination of thiocyanate in fossil and drill waters; Mendeleev Communications; Vol. 27, iss. 5
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2017) -
A colorimetric sensor based on a polymethacrylate matrix with immobilized 1-(2-pyridylazo)-2-naphthol for the determination of cobalt; Journal of Analytical Chemistry; Vol. 70, iss. 12
Por: Gavrilenko N. A. Natalia Airatovna
Publicado em: (2015) -
Solid phase colorimetric determination of iodine in food grade salt using polymethacrylate matrix; Food Chemistry; Vol. 280
Publicado em: (2019) -
Colorimetric polymethacrylate sensors; Theoretical and experimental chemistry
Publicado em: (2017) -
Chemical Analysis; Vol. III: Colorimetric Determination of Traces of Metals
Por: Sandell E. B.
Publicado em: (New York, Interscience Publishers, INC., 1959)