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Metody otrzymywania oraz perspektywy zastosowań barwnych układów organiczno – nieorganicznych w tworzywach sztucznych

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Preparation methods and application perspective of colorful organic – inorganic systems in plastics
Języki publikacji
PL
Abstrakty
PL
Środki barwiące są powszechnie stosowane w wielu gałęziach gospodarki, przede wszystkim w przemyśle tworzyw sztucznych oraz do produkcji farb i lakierów. W ostatnich latach interesującym rozwiązaniem okazało się otrzymywanie organiczno-nieorganicznych kompozytów pigmentowych łączących w sobie zalety związków organicznych (intensywna barwa, szeroka gama kolorystyczna) oraz nieorganicznych, które charakteryzują się wysoką stabilnością termiczną oraz chemiczną. W pracy omówiono główne rodzaje barwnych kompozycji hybrydowych, jak również aspekty dotyczące ich syntezy oraz charakterystyki fizykochemicznej. Ponadto, przedstawiono szeroki potencjał aplikacyjny pigmentów hybrydowych, wynikający z ich struktury oraz wysokiej odporności na działanie czynników zewnętrznych.
EN
Coloring agents are widely used in many areas of industry, primarily in the plastics technology as well as dyes and lacquers production. In recent years, an interesting industrial trend may be the preparation of an organic-inorganic pigment composites combining the advantages of organic (intense color, wide range of colors) and inorganic parts, which are characterized by high thermal stability as well as chemical resistance. The paper discusses the main types of hybrid color composites as well as aspects related to their synthesis and physicochemical characterization. In addition, wide application potential of hybrid pigments resulting from their structure and high resistance to external factors has been presented.
Rocznik
Tom
Strony
76--84
Opis fizyczny
Bibliogr. 46 poz., rys., tab.
Twórcy
  • Instytut Technologii Polimerów i Barwników, Wydział Chemiczny, Politechnika Łódzka
autor
  • Instytut Technologii Polimerów i Barwników, Wydział Chemiczny, Politechnika Łódzka
autor
  • Instytut Technologii Polimerów i Barwników, Wydział Chemiczny, Politechnika Łódzka
Bibliografia
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  • [10] Yuan J., Xing W., Gu G., Wu L.: The properties of organic pigment encapsulated with nano-silica via layer-by-layer assembly technique, Dyes and Pigments, 76, 2008, str. 463–469.
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  • [12] Fabian E., Skapin A. S., Skrlep L., Zivec P., Ceh M., Gaberscek M.: Protection of organic pigments against photocatalysis by encapsulation, Journal of Sol-Gel Science and Technology, 62, 2012, str. 65–74.
  • [13] Wen Z., Feng Y., Li X., Bai Y., Tang Q., Gao Y.: Fabrication of diarylide yellow pigments/modified SiO2 core-shell hybrid composite particles for electrophoretic displays, Current Applied Physics, 12, 2012, str. 259–265.
  • [14] Jesionowski T., Przybylska A., Kurc B., Ciesielczyk F.: Hybrid pigments preparation via adsorption of C. I. Mordant Red 3 on both unmodified and aminosilane-functionalised silica supports, Dyes and Pigments, 89, 2011, str. 127–136.
  • [15] Tang P., Feng Y., Li D.: Faciles synthesis of multicolor organic-inorganic hybrid pigments based on layered double hydroxides, Dyes and Pigments, 104, 2014, str. 131–136.
  • [16] Tang P., Deng F., Feng Y., Li D.: Mordant yellow 3 anions intercalated layered double hydroxides: preparation, thermo- and photostability, Industrial and Engineering Chemistry, 51, 2012, str. 10542–10545.
  • [17] Cao L., Fei X., Zhang T., Yu L., Gu Y., Zhang B.: Modification of C. I. Pigment Red 21 with sepiolite and lithopone in its preparation process, Industrial and Engineering Chemistry, 53, 2014, str. 31–37.
  • [18] Fei X., Zhang T., Zhou C.: Modification study involving a naphthol as red pigments, Dyes and Pigments, 44, 2000, str. 75–80.
  • [19] Horiouchi S., Horie S., Ichimura K.: Core-shell structures of silica-organic pigment nanohybrids visualized by electron spectroscopic imaging, ACS Applied Materials and Interfaces, 1, 2009, str. 977–981.
  • [20] Jesionowski T.: Synthesis of organic-inorganic hybrids via adsorption of dye on an aminosilane-functionalised silica surface, Dyes and Pigments, 55, 2002, str. 133–141.
  • [21] Jesionowski T.: Influence of aminosilane surface modification and dye adsorption on zeta potential of spherical silica particles formed in emulsion system, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 222, 2003, str. 87–94.
  • [22] Jesionowski T., Przybylska A., Kurc B., Ciesielczyk F.: The preparation of pigment composites by adsorption of C.I. Mordant Red 11 and 9-aminoacridine on both unmodified and aminosilane-grafted silica supports, Dyes and Pigments, 88, 2011, str. 116–124.
  • [23] Yuan J., Zhou S., You B., Wu L.: Organic pigment particles coated with colloidal nano-silica particles via layer-by-layer assembly, Chemistry of Materials, 17, 2005, str. 3587–3594.
  • [24] Binkowski S., Jesionowski T., Krysztafkiewicz A.: Preparation of pigments on modified precipitated silicas, Dyes and Pigments, 47, 2000, str. 247–257.
  • [25] Cao L., Fei X., Zhao H., Gu Y.: Inorganic-organic hybrid pigment fabricated in the preparation process of organic pigment: preparation and characterization, Dyes and Pigments, 119, 2015, str. 75–83.
  • [26] Andrzejewska A., Krysztafkiewicz A., Jesionowski T.: Adsorptio of organic dyes on the aminosilane modified TiO2 surface, Dyes and Pigments, 62, 2004, str. 121–130.
  • [27] Kohno Y., Inagawa M., Ikoma S., Shibata M., Matsushima R., Fukuhara C., Tomita Y., Maeda Y., Kobayashi K.: Stabilization of a hydrophobic natural dye by intercalation into organomontmorillonite, Applied Clay Science, 54, 2011, str. 202–205.
  • [28] Luo Z., Gao M., Ye S.: Modification of reduced-charge montmorillonites by a series of Gemini surfactants: characterization and application in methyl orange removal, Applied Surface Science, 324, 2015, str. 807–816.
  • [29] Wang C., Juang L., Hsu T., Lee C., Lee J., Huang F.: Adsorption of basic dyes onto montmorillonite, Journal of Colloid and Interface Science, 273, 2004, str. 80–86.
  • [30] Alkan M., Demirbaş Ö., Çelikçapa, S., Doğan, M.: Sorption of acid red 57 from aqueous solution onto sepiolite, Journal of Hazardous Materials, 116, 2004, str. 135–145.
  • [31] Karaoğlu M., Doğan M., Alkan M.: Kinetic analysis of reactive blue 221 adsorption on kaolinite, Desalination, 256, 2010, str. 154–165.
  • [32] Jović-Jovičić N., Milutinović-Nikolić A., Banković P., Mojović Z., Žunić M., Gržetić I., Jovanović, D.: Organo-inorganic bentonite for simultaneous adsorption of Acid Orange 10 and lead ions, Applied Clay Science, 47, 2010, str. 452–456.
  • [33] Pérez E., Ibarra I., Guzmán A., Lima E.: Hybrid pigments resulting from several guest dyes onto -alumina host: A spectroscopic analysis, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 172, 2017, str. 174–181.
  • [34] Duman O., Tunç S., Polat T.: Determination of adsorptive properties of expanded vermiculite for the removal of CI Basic Red 9 from aqueous solution: kinetic, isotherm and thermodynamic studies, Applied Clay Science, 109, 2015, str. 22–32.
  • [35] Shan R., Yan L., Yang Y., Yang K., Yu S., Yu H., Zhu B., Du B.: Highly efficient removal of three red dyes by adsorption onto Mg-Al-layered double hydroxide, Journal of Industrial and Engineering Chemistry, 21, 2015, str. 561–568.
  • [36] Darmograi G., Prelot B., Layrac G., Tichit D., Martin-Gassin G., Salles F., Zając J.: Study of adsorption and intercalation of orange-type dyes into Mg-Al layered double hydroxide, The Journal of Physical Chemistry C, 119, 2015, str. 23388–23397.
  • [37] Laguna H., Loera S., Ibarra I., Lima E., Vera M., Lara V.: Azoic dyes hosted on hydrotalcite-like compounds: Non-toxic hybrid pigments, Microporous and Mesoporous Materials, 98, 2007, str. 234–241.
  • [38] Tamg P., Xu X., Lin Y., Li D.: Enhancement of the thermo- and photostability of an anionic dye by intercalation in a zanic-aluminum layered double hydroxide host, Industrial and Engineering Chemistry Research, 47, 2008, str. 2478–2483.
  • [39] Marangoni R., Bouhent M., Taviot-Guého C., Wypych F., Leroux F.: Zn2Al layered double hydroxide intercalated and adsorbed with anionic blue dyes: A physico-chemical characterization, Journal of Colloid and Interface Science, 333, 2009, str. 120–127.
  • [40] Kohno Y., Totsuka K., Ikoma S., Yoda K., Shibata M., Matsushima R., Tomita Y., Maeda Y., Kobayashi K.: Photostability enhancement of anionic natural dye by intercalation into hydrotalcite, Journal of Colloid and Interface Science, 337, 2009, str. 117–121.
  • [41] Kang N., Wang D., Kutlu B., Zhao P., Leuteritz A., Wagenknecht U., Heinrich G.: A new approach to reducing the flammability of layered double hydroxide (LDH)-based polymer composites: preparation and characterization of dye structure-intercalated LDH and its effect on the flammability of polypropylene-grafted maleic anhydride/d-LDH composites, ACS Applied Materials and Interfaces, 5, 2013, str. 8991–8997.
  • [42] Kutlu B., Leuteritz A., Häußler L., Oertel U., Heinrich G.: Stabilization of polypropylene using dye modified layered double hydroxides, Polymer Degradation and Stability, 102, 2014, 9–14.
  • [43] Hajibeygi M., Omidi-Ghallemohamadi M.: One-step synthesized azo-dye modified Mg-Al-LDH reinforced biobased semi-aromatic polyamide containing naphthalene ring; study on thermal stability and optical properties, Journal of Polymer Research, 24, 2017, str. 61–71.
  • [44] Marangoni R., Taviot-Guého C., Illaik A., Wypych F., Leroux F.: Organic inorganic dye filler for polymer: Blue-coloured layered double hydroxides into polystyrene, Journal of Colloid and Interface Science, 326, 2008, str. 366–373.
  • [45] da Silva M., Marangoni R., Cursino A., Schreiner W., Wypych F.: Colorful and transparent poly(vinyl alcohol) composite films filled with layered zinc hydroxide salts, intercalated with anionic orange azo dyes (methyl orange and orange II), Materials Chemistry and Physics, 134, 2012, str. 392–398.
  • [46] Marangoni R., Ramos L., Wypych F.: New multifunctional materials obtained by the intercalation of anionic dyes into layered zinc hydroxide nitra te followed by dispersion into poly(vinyl alcohol) (PVA), Journal of Colloid and Interface Science, 330, 2009, str. 303–309.
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-3d3052f5-7a9b-4541-967d-121e6cbbf718
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