618
Views
8
CrossRef citations to date
0
Altmetric
Research Article

Examination of Dyeing Properties on Silk of Some Flavonoids by Spectroscopic Techniques

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon

References

  • Adeel, S., M. Hussaan, F. Rehman, N. Habib, M. Salman, S. Naz, N. Amin, and N. Akhtar. 2018d. Microwave-assisted sustainable dyeing of wool fabric using cochineal-based carminic acid as natural colorant. Journal of Natural Fibers (In press). doi:10.1080/15440478.2018.1448317.
  • Adeel, S., K. Naseer, S. Javed, S. Mahmmod, R. C. Tang, N. Amin, and S. Naz. 2018a. Microwave-assisted improvement in dyeing behavior of chemical and bio-mordanted silk fabric using safflower (Carthamus tinctorius L) extract. Journal of Natural Fibers (In press). doi:10.1080/15440478.2018.1465877.
  • Adeel, S., K. M. Zia, M. Abdullah, F. U. Rehman, M. Salman, and M. Zuber. 2018c. Ultrasonic assisted improved extraction and dyeing of mordanted silk fabric using neem bark as source of natural colourant. Natural Product Research (In press). doi:10.1080/14786419.2018.1484466.
  • Adeel, S., M. Zuber, F. U. Rehman, and K. M. Zia. 2018b. Microwave-assisted extraction and dyeing of chemical and bio-mordanted cotton fabric using harmal seeds as a source of natural dye. Environmental Science and Pollution Research 25 (11):11100–10. doi:10.1007/s11356-018-1301-2.
  • Arai, T., G. Freddi, R. Innocenti, and M. Tsukada. 2004. Biodegradation of Bombyx mori silk fibroin fibers and films. Journal of Applied Polymer Science 91:2383–90. doi:10.1002/app.13393.
  • Asakura, T., Y. Watanabe, A. Uchida, and H. Minegava. 1984. NMR of silk fibroin. 2. 13C NMR study of the chain dynamics and solution structure of bombyx mori silk fibroin. Macromolecules 17 (5):1075–81. doi:10.1021/ma00135a017.
  • Asakura, T., and J. Yao. 2002. 13C CP/MAS NMR study on structural heterogeneity in Bombyx mori silk fiber and their generation by stretching. Protein Science 11 (11):2706–13. doi:10.1110/ps.0221702.
  • Baaka, N., W. Haddar, M. B. Ticha, M. T. P. Amorim, and M. F. M’Henni. 2017. Sustainability issues of ultrasonic wool dyeing with grape pomace colourant. Natural Product Research 31 (14):1655–62. doi:10.1080/14786419.2017.1285303.
  • Boulet-Audet, M., F. Vollrath, and C. Holland. 2015. Identification and classification of silks using infrared spectroscopy. Journal of Experimental Biology 218:3138–49. doi:10.1242/jeb.128306.
  • Bylka, W., I. Matlawska, and N. A. Pilewski. 2004. Natural flavonoids as antimicrobial agents. Journal of the American Nutraceutical Association 7 (2):24–31.
  • Castro, G. T., and S. E. Blanco. 2004. Structural and spectroscopic study of 5,7-dihydroxy-flavone and its complex with aluminum. Spectrochimica Acta Part A 60 (10):2235–41. doi:10.1016/j.saa.2003.11.022.
  • Cornard, J. P., A. C. Boudet, and J. C. Merlin. 2001. Complexes of Al(III) with 3ʹ4’-dihydroxy-flavone: Characterization, theoretical and spectroscopic study. Spectrochimica Acta Part A 57 (3):591–602. doi:10.1016/S1386-1425(00)00412-1.
  • Crews, P. C. 1987. The fading rates of some natural dyes. Studies in Conservation 32 (2):65–72. doi:10.2307/1506293.
  • Cristea, D., I. Bareau, and G. Vilarem. 2003. Identification and quantitative HPLC analysis of the main flavonoids present in weld (Reseda luteola L.). Dyes and Pigments 57 (3):267–72. doi:10.1016/S0143-7208(03)00007-X.
  • Deveoglu, O., G. Erkan, E. Torgan, and R. Karadag. 2013. The evaluation of procedures for dyeing silk with buckthorn and walloon oak on the basis of colour changes and fastness characteristics. Coloration Technology 129 (3):223–31. doi:10.1111/cote.12023.
  • Deveoglu, O., B. Y. Sahinbaskan, E. Torgan, and R. Karadag. 2012. Investigation on colour, fastness properties and HPLC-DAD analysis of silk fibres dyed with Rubia tinctorium L. and Quercus ithaburensis Decaisne. Coloration Technology 128 (5):364–70. doi:10.1111/j.1478-4408.2012.00389.x.
  • El-Nagar, K., S. H. Sanad, A. S. Mohamed, and A. Ramadan. 2005. Mechanical properties and stability to light exposure for dyed Egyptian cotton fabrics with natural and synthetic dyes. Polymer-Plastics Technology And Engineering 44 (7):1269–79. doi:10.1080/03602550500207816.
  • Erdogan, G., R. Karadag, and E. Dolen. 2005. Potentiometrie and spectrophotometric determination of the stability constants of quercetin complexes with aluminium (III) and iron (II). Reviews in Analytical Chemistry 24 (4):247–62. doi:10.1515/REVAC.2005.24.4.247.
  • Gupta, D., A. Agrawal, and A. Rangi. 2014. Extraction and characterization of silk sericin. Indian Journal of Fibre & Textile Research 39 (4):364–72.
  • Hoffman, D. 2003. Medical herbalism - the science and practice of herbal medicine. Rochester: Healing Arts Press.
  • Jain, A. K., A. Gupta, R. Bohra, I. P. Lorenz, and P. Mayer. 2006. Synthesis and structural elucidation of some novel aluminium(III) complexes with Schiff bases: Crystal and molecular structure of [Al{O(C6H4)CH=NC6H5}2{HO(C6H4)CH=NC6H5}2]Br. Polyhedron 25 (3):654–62. doi:10.1016/j.poly.2005.07.028.
  • Karadag, R., G. Erdogan, M. Bayar, and E. Dolen. 2007. Determining stability constants of naringenin (4ʹ,5,7-trihydroxy flavanone) complexes with aluminium (III) and iron (II) by potentiometric and spectrophotometric methods. Reviews in Analytical Chemistry 26 (3):169–86. doi:10.1515/REVAC.2007.26.3.169.
  • Karadag, R., E. Torgan, and G. Erkan. 2014. Dyeing properties and analysis by Rp-Hplc-dad of silk fabrics dyed with madder (Rubia tinctorum L.). Journal of Textile Science & Engineering 4 (2):154. doi:10.4172/2165-8064.1000154.
  • Koperska, M. 2011. Degradation of natural fibers in artifacts: Mechanism and inhibition. Report, Krakow.
  • Luo, X., J. Wu, A. Intisar, J. Geng, L. Wu, K. Zheng, and Y. Du. 2012. Study on light aging of silk fabric by fourier transform infrared spectroscopy and principal component analysis. Analytical Letters 45 (10):1286–96. doi:10.1080/00032719.2012.673098.
  • Marsh, R. E., R. B. Corey, and L. Pauling. 1955. An investigation of the structure of silk fibroin. Biochimica Et Biophysica Acta 16:1–34. doi:10.1016/0006-3002(55)90178-5.
  • McNab, H., E. S. B. Ferreira, A. N. Hulme, and A. Quye. 2009. Negative ion ESI–MS analysis of natural yellow dye flavonoids—an isotopic labelling study. International Journal of Mass Spectrometry 284 (1–3):57–65. doi:10.1016/j.ijms.2008.05.039.
  • Mirjalili, M., K. Nazarpoor, and L. Karimi. 2011. Eco-friendly dyeing of wool using natural dye from weld as co-partner with synthetic dye. Journal of Cleaner Production 19 (9–10):1045–51. doi:10.1016/j.jclepro.2011.02.001.
  • Misiak, M., and E. L. Chruscinska. 2010. Interaction of flavonoids with transition metal ions. Pharmaceuticals, November/December 39–42.
  • Neurath, H. 1966. The proteins – Composition, structure and function, Vol. 4, Second ed. USA: Academic Press.
  • Rehman, F., S. Adeel, R. Hanif, M. Muneer, K. M. Zia, M. Zuber, M. A. Jamal, and M. K. Khosa. 2017. Modulation of marigold based lutein dye and its dyeing behaviour using UV radiation. Journal of Natural Fibers 14 (1):63–70. doi:10.1080/15440478.2016.1146642.
  • Ritz, M., L. Vaculíková, and E. Plevová. 2011. Application of infrared spectroscopy and chemometric methods to identification of selected minerals. Acta Geodyn Geomater 8 (1):47–58. (161).
  • Sashina, E. S., A. M. Bochek, N. P. Novoselov, and D. A. Kirichenko. 2006. Structure and solubility of natural silk fibroin. Russian Journal of Applied Chemistry 79 (6):869–76. doi:10.1134/S1070427206060012.
  • Septhum, C., S. Rattanaphani, J. B. Bremner, and V. Rattanaphani. 2009. An adsorption study of alum-morin dyeing onto silk yarn. Fibers and Polymers 10 (4):481–87. doi:10.1007/s12221-009-0481-2.
  • Septhum, C., V. Rattanaphani, and S. Rattanaphani. 2007. UV-VIS Spectroscopic study of natural dyes with alum as a mordant. Suranaree Journal of Science and Technology 14 (1):91–97.
  • Soubayrol, P., G. Dana, and P. P. Man. 1996. Aluminium-27 solid state NMR study of aluminium coordination complexes of alizarin. Magnetic Resonance in Chemistry 34 (8):638–45. doi:10.1002/(SICI)1097-458X(199608)34:8<638::AID-OMR926>3.0.CO;2-5.
  • Uddin, M. G. 2014. Effects of different mordants on silk fabric dyed with onion outer skin extracts. Journal of Textiles 2014:1–8. doi:10.1155/2014/405626.
  • Uddin, M. G. 2015. Extraction of eco-friendly natural dyes from mango leaves and their application on silk fabric. Textiles and Clothing Sustainability 1 (1):1–8. doi:10.1186/s40689-015-0007-9.
  • Yasukawa, A., A. Chida, Y. Kato, and M. Kasai. 2017. Dyeing silk and cotton fabrics using natural blackcurrants. Textile Research Journal 87 (19):2379–87. doi:10.1177/0040517516671125.
  • Yate, L., J. C. Caicedo, A. H. Macias, F. J. Espinoza-Beltrán, G. Zambrano, J. Muñoz-Saldaña, and P. Prieto. 2009. Composition and mechanical properties of AlC, AlN and AlCN thin films obtained by r.f. magnetron sputtering. Surface and Coatings Technology 203 (13):1904–07. doi:10.1016/j.surfcoat.2009.01.023.
  • Zhang, W., J. He, and Y. Wang. 2011. 13C CP/MAS NMR spectroscopic characterization of native silk fibers. Advanced Materials Research 175–176:328–32. doi:10.4028/www.scientific.net/AMR.175-176.328.
  • Zhang, X., and P. Wyeth. 2010. Using FTIR spectroscopy to detect sericin on historic silk. Science China Chemistry 53 (3):626–31. doi:10.1007/s11426-010-0050-y.
  • Zhu, Z. H., K. Ohga, and T. Asakura. 2008. Preparation and characterization of regenerated Bombyx mori silk fibroin fiber with high strength. Express Polymer Letters 2 (12):885–89. doi:10.3144/expresspolymlett.2008.103.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.