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Barwniki otrzymywane przy użyciu związków wielkocząsteczkowych

Treść / Zawartość
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Warianty tytułu
EN
Polymer based dyes
Języki publikacji
PL
Abstrakty
PL
Tworzywa sztuczne, kosmetyki, leki, tekstylia zawierają liczne dodatki, mające na celu polepszenie ich właściwości użytkowych i zwiększenia ich funkcjonalności. Nowe metody wytwarzania substancji barwiących stały się jednym z ważniejszych kierunków rozwoju w technologii barwienia tworzyw sztucznych. W poniższym przeglądzie omówiono sposoby otrzymywania i możliwości aplikacyjne substancji barwiących otrzymanych przez modyfikację związków wielkocząsteczkowych barwnikami organicznymi.
EN
Plastics, cosmetics, medicines, textiles contain numerous additives aimed to improving their functional properties and increasing their functionality. New methods for producing coloring substances have become one of the major development trends in plastic dyeing technology. The review below discusses the methods of preparation and application possibilities of coloring substances obtained by modification of macromolecular compounds with organic dyes.
Rocznik
Tom
Strony
4--12
Opis fizyczny
Bibliogr. 34 poz., rys.
Twórcy
  • Instytut Technologii Polimerów i Barwników, Politechnika Łódzka
autor
Bibliografia
  • [1] Guerra E., Llompart M., Garcia-Jares C.: Analysis of dyes in cosmetics: challenges and recent developments, Cosmetics, 5, 2018, str. 47.
  • [2] Benkhaya S., El Harfi S., El Harfi A.: Classifications, properties and applications of textile dyes: A review, Applied Journal of Environmental Engineering - Science, 3, 2017, str. 311-320.
  • [3] Shahida M., WertzaIlaria J., Maurizio D., Mohd A., Khand I., Quye A.: Analytical methods for determination of anthraquinone dyes in historical textiles: A review, Analytica Chimica Acta, 1083, 2019, str. 58-87.
  • [4] Dauda M., Haib A., Banat F., Wazira M., Habiba M., Mamdouh G., Al-Harthic A.: A review on the recent advances, challenges and future aspect of layered double hydroxides (LDH) – Containing hybrids as promising adsorbents for dyes removal, Journal of Molecular Liquid, 288, 2019, str. 110989.
  • [5] Nambela L., Haule L., Q. Mgani Q.: A review on source, chemistry, green synthesis and application of textile colorants, Journal of Cleaner Production, 119036, 2019.
  • [6] Josea S., Joshy D., Narendranath S., Periyat P.: Recent advances in infrared reflective inorganic pigments, Solar Energy Materials and Solar Cells, 194, 2019, str. 7-27.
  • [7] Maile F., Pfaff G., Reynders P.: Effect pigments—past, present and future, Progress in Organic Coatings, 54, 2005, str. 150-163.
  • [8] Carmo D., Oliveira M., Soares B.: Effect of the dispersive method in the preparation of the polyurethane/hydrotalcite nanocomposites by in situ polymerization, Applied Clay Science, 101, 2014, str. 128-135.
  • [9] Zhu T., Zhou C., Kabwe F., Chun Q., Li S., Zhanga J.: Exfoliation of montmorillonite and related properties of clay/polymer nanocomposites, Applied Clay Science, 169, 2019, str. 48-66.
  • [10] Modhur M., Joykumar B., Bhata S.: Studies on a nanocomposite solid polymer electrolyte with hydrotalcite as a filler, Solid State Ionics, 181, 21–22, 2010, str. 964-970.
  • [11] Shin J., Park J., Kim H.: Clay-polystyrene nanocomposite from pickering emulsion polymerization stabilized by vinylsilane-functionalized montmorillonite platelets, Applied Clay Science, 182, 2019, str. 105288.
  • [12] Tian W., Li Z., Ge Z., Xu D., Zhang K.: Self-assembly of vermiculite-polymer composite films with improved mechanical and gas barrier properties, Applied Clay Science, 180, 2019, str. 105198.
  • [13] Tang Z., Lu D., Guo J., Su Z.: Thermal stabilities of vermiculites/polystyrene (VMTs/PS) naonocomposites via in-situ bulk polymerization, Materials Letters, 62, 2008, str. 4223-4225.
  • [14] Grygar T., Kuckova S., Hradil D., Hradilova J.: Electrochemical analysis of natural solid organic dyes and pigments, Journal of Solid State Electrochemistry, 7, 2003, str. 706.
  • [15] Sanaeia Z., Ramezanzadehb B., Shahrabia T.: Anti-corrosion performance of an epoxy ester coating filled with a new generation of hybrid green organic/inorganic inhibitive pigment; electrochemical and surface characterizations, Applied Surface Science, 454, 2018, str. 1–15.
  • [16] Wang S., Kang Y., Wang L., Zhang H., Wang Y., Wang Y.: Organic/inorganic hybrid sensors: A review, Sensors and Actuators B, 182, 2013, str. 467–481.
  • [17] Hunger K.: Industrial Dyes: Chemistry, Properties, Applications, Wiley-VCH, 2003.
  • [18] Polette-Niewold L., Manciu F., Torres B., Alvarado Jr M., Chianelli R.: Organic/inorganic complex pigments: ancient colors Maya Blue, Journal of Inorganic Biochemistry, 101, 2007, str. 1958–1973.
  • [19] Wang J., Zang S., Tang Bing B., Yang J.: Application of polymeric dyes in textile fields, Proceedings of the 3rd International Conference on Functional Molecules, 2005.
  • [20] Fleischmann C., Lievenbrück M., Ritter H.: Polymers and dyes: developments and applications, Polymers, 7, 2015, str. 717-746.
  • [21] Chalitangkoon J., Monvisade P.: Dual pH/thermal-dependent coloring polymeric dye through Mannich reaction of chitosan: Synthesis and characterization, Carbohydrate Polymers, 223, 2019, str. 1-8.
  • [22] Rinaudo M.: Chitin and chitosan: properties and applications, Progress in Polymer Science, 31 (7), 2006, str. 603–632.
  • [23] Dongjun L., Zhang M., Cui J., Lu J., Li W.: Grafting of edible colorants onto O-carboxymethyl chitosan: preparation, characterization and anti-reduction property evaluation, New Journal of Chemistry, 40, 2016, str. 3363–3369.
  • [24] Jain A., Gulbake A., Shilpi S., Hurkat P.: A new horizon in modifications of chitosan: Syntheses and applications, Critical Reviews in Therapeutic Drug Carrier Systems, 30, 2013, str. 91–181.
  • [25] Tang R., Yu Z., Zhang Y., Qi C.: Synthesis, characterization, and properties of antibacterial dye based on chitosan, Cellulose, 23, 2016, str. 1741–1749.
  • [26] Dongjun L., Cui J., Wang Y., Zhu G., Zhang M., Lic X.: Synthesis and color properties of novel polymeric dyes based on grafting of anthraquinone derivatives onto O-carboxymethyl chitosan, RSC Advances, 7, 2017, str. 33494–33501.
  • [27] Wang X., Tang R., Zhang Y., Yu Z., Qi S.: Preparation of a novel chitosan based biopolymer dye and application in wood dyeing, Polymers, 8, 2016, str. 338.
  • [28] Hu X., Liu X., Liu M., Li G.: A waterborne polyurethane-based polymeric dye with covalently linked disperse red 11, Reactive and Functional Polymers, 132, 2018, str. 1–8.
  • [29] Meng Q., Huang D., Wei S., Chen L.: Synthesis and application of polymeric dyes containing the anthraquinone structure, Journal of Applied Polymer Science, 83, 2002, str. 1252–1257.
  • [30] Habibu S., Gumel S., Ibrahim M., Ladan M., Fagge I.: Synthesis, characterization and application of some polymeric dyes derived from monoazo disperse dyes, Journal of Applied Chemistry, 5, 2013, str. 42-47.
  • [31] Maoa H., Linc L., Maa Z., Wang C.: Dual-responsive cellulose fabric based on reversible acidichromic andphotoisomeric polymeric dye containing pendant azobenzene, Sensors and Actuators B, 266, 2018, str. 195–203.
  • [32] Tang B., Zhang S., Jinzong Y. L.: Synthesis of a novel water-soluble crosslinking polymeric dye with good dyeing properties, Dyes and Pigments, 68, 2006, str. 69-71.
  • [33] Donati F., Pucci A., Ruggeri G.: Temperature and chemical environment effects on the aggregation extent of water soluble perylene dye into vinyl alcohol-containing polymers, Physical Chemistry Chemical Physics, 11, 2009, str. 6276–6282.
  • [34] Tang T., Qu J., Muellen K., Webber S. E.: Photophysics of water soluble perylene diimides in surfactant solutions, Langmuir, 22, 2006, str. 7610–7616.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c624642d-5435-4868-940c-6ef18d7e2a19
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