References
- B. Lawal, M.B. Olaniyi, S.O. Rufai, A.O. Aremu, Comparative assessment of the foliar micromorphology, phytochemicals and elemental composition of two cultivars of Persea americana Mill leaves, Scientia Africana 14 (2021) 1-9. DOI: 10.1016/j.sciaf.2021.e01034.
- N. Uren, Eco-friendly dyeing of cotton and wool fabrics with avocado seed and peel extracts, Journal of Natural Fibers 19 (2022) 13765-13775. DOI: 10.1080/15440478.2022.2106340
- A. Kusumastuti, N. Auliyana, M. Rozana, Application of avocado seed as textile natural dye, Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 104 (2023) 47-54. DOI: 10.37934/arfmts.104.1.4754
- N. Uren, B. Kutlu, Natural dyeing of plasma treated wool with avocado seed extract and use of tartaric acid as bio-mordant, Coloration Technology 140 (2024) 1-15. DOI: 10.1111/cote.12752
- D. Dabas, R.J. Elias, J.D. Lambert, G.R. Ziegler, A coloured avocado seed extract as a potential natural colorant, Journal of Food Science 76 (2011) 1335-1341. DOI: 10.1111/j.1750-3841.2011.02415.x
- A.M. Abd Elkader, S. Labib, T.F. Taha, F. Althobaiti, A. Aldhahrani, H.M. Salem, A. Saad, F.M. Ibrahim, Phytogenic compounds from avocado (Persea americana L.) extracts; antioxidant activity, amylase inhibitory activity, therapeutic potential of type 2 diabetes, Saudi Journal of Biological Science 29 (2022) 1428-1433. DOI: 10.1016/j.sjbs.2021.11.031
- D. Lin, M. Xiao, J. Zhao, Z. Li, B. Xing, X. Li, M. Kong, L. Li, O. Zhang, Y. Liu, H. Chen, W. Qin, H. Wu, S. Chen, An overview of plant phenolic compounds and their importance in human nutrition and management of type 2 diabetes, Molecules 21 (2016) 140-159. DOI: 10.3390/molecules21101374
- P.D. Clark, J.O. Otutu, G.I. Ndukwe, C.A. Idibie, Investigating the feasibility of utilizing Pennisetum purpureum leaves waste as a sustainable dye: extraction, characterization and application on textile, Scientia Africana 22 (2023) 231-246. DOI: 10.4314/sa.v22i3.21
- P.D. Clark, E.A. Omo-Udoyo. Comparative assessment on antioxidant and phytochemical of Trichillia Monadelpha (Thonn) J.J. De Wilde (Meliaceae) plant extracts, Chemical Science International Journal 30 (2021) 37-38. DOI: 10.9734/csji/2021/v30i1030257
- G.I. Ndukwe, S.Y. Garba, E.A. Adelakun, Activity-guided isolation and antimicrobial assay of a flavonol from Mitracarpus verticillatus (Schumach. & Thonn.) Vatke, International Organization of Scientific Research – Journal of Applied Chemistry 9 (2016) 118-131. DOI: 10.9790/5736-090902118131
- P.A. Paranagama, Vacuum liquid chromatography and gel permeation chromatography in natural product research, National Workshop on Separation Techniques in Natural Product Research (2016) 95-98
- G.I. Ndukwe, A. Oluah, G.K. Fekarurhobo, Isolation of an isoflavonoid and a terpenoid from the heartwood of Baphia nitida Lodd. (camwood), Ovidius University Annals of Chemistry 31 (2020) 5-8. DOI: 10.2478/auoc-2020-0002
- I.R. Jack, P.D. Clark, G.I. Ndukwe, Evaluation of phytochemical, antimicrobial and antioxidant capacities of Pennisetum purpureum (Schumach) extracts, Chemical Science International Journal 29 (2020) 1-14. DOI: 10.9734/csji/2020/v29i430170
- P.D. Clark, J.O. Otutu, A. K. Asiagwu, G.I. Ndukwe, Exploring the potential of Dacryodes edulis leaf extract as natural dye on polyamide fabrics: Extraction, characterization and application, Substantia 8 (2024) 103-118. DOI: 10.36253/substantia-2604
- N. Baaka, M.T. Ben, W. Hadder, S. Hammami, M.F. Mhenni, Extraction of natural dye from waste wine industry: optimization survey based on central composite design model, Fibers and Polymers 16 (2015) 38-45. DOI: 10.1007/s12221-015-0038-5
- ISO 105 C10: 2006 Textile: Tests for color fatness part C10. Color fastness to washing (Based ISO C10 2006).
- ISO 105-B01: 2014 Textile: Test for color fastness. Part B01. Color fastness to light Bael: 1SO 2014).
- ISO 105 E04 2013 Textile: Tests for color fastness. Part E04. Color fastness to perspiration (Basel ISO 2013).
- ISO 105-X12 2013 Textile: Tests for color fastness. Part X12. Color fastness to rubbing (Basel ISO 2013).
- M.A.M. Al-Alwani, A.B. Mohamad, A.A.H. Kadhum, N.A. Ludin, Effect of solvents on the extraction of natural pigments and adsorption onto TiO2 for dye-sensitized solar cell applications, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 138 (2015) 130-137. DOI: 10.1016/j.saa.2014.11.018
- R. Ghitescu, I. Volf, C. Carausu, A. Buhlmann, I.A. Gilca, V.I. Popa, Optimization of ultrasound-assisted extraction of polyphenols from spruce wood bark, Ultrasonics Sonochemistry 22 (2015) 535-541. DOI: 10.1016/j.ultsonch.2014.07.013
- H.Z. Suwari, Y. kotta, L. Buang, Optimization of Soxhlet extraction and physiochemical analysis of crop oil from seed kernel of feun kase (Thevetia peruviana), American Institute of Physics Conference Proceedings 1911 (2017) 1-5. DOI: 10.1063/1.5015998
- N.A.A. Rahman, S.M. Tumin, R. Tajuddin, Optimisation of ultrasonic extraction method of natural dyes from Xylocarpus moluccensis, International Journal of Bioscience, Biochemistry and Bioinformatics 3 (2013) 53-55. DOI: 10.7763/ijbbb.2013.v3.162
- L. Hidayati, D.C. Ningrum, H. Nugroho, T.R. Nuringtyas, Optimisation of extraction methods and dyeing standardization of nila leaves (Indigoferatinctoria Linn.) as natural dyes, Earth and Environmental Science 187 (2018) 1-7. DOI: 10.1088/1755-1315/187/1/012031
- S. Haldar, H.N. Mishra, G.C. Majumdar, Optimization of oleoresin extraction from Curcuma longa L. using RSM and determination of equilibrium constant, Journal of Food Processing and Preservation 40 (2016) 1188-1198. DOI: 10.1111/jfpp.12701
- Q. Chen, J. Qi, How much should we trust R2 and adjusted R2: evidence from regressions in top economics journals and Monte Carlo simulations, Journal of Applied Economics 26 2023 1-16. DOI: 10.1080/15140326.2023.2207326
- A. Hassani, R.D.C. Soltani, M. Kiransan, S. Karaca, C. Karaca, A. Khataee, Ultrasound-assisted adsorption of textile dyes using modified nano clay: central composite design optimization, Korean Journal of Chemical Engineering 33 (2015) 178-188. DOI: 10.1007/s11814-015-0106-y
- T.F. Frempong, N.O. Boadi, M. Badu, Optimisation of extraction conditions for polyphenols from the stem bark of Funtumia elastica (Funtum) utilizing response surface methodology, AAS Open Research 4 (2021) 1-27. DOI: 10.12688/aasopenres.13284.1
- A. Mahfoudhi, N. Baaka, W. Haddar, M.F. Mhenni, Z. Mighri, Development and optimisation of the extraction process of natural dye from Tamarix aphylla (L) Karst. leaves using response surface methodology (RSM), Fibers and Polymers 16 (2015) 1487-1496.
- A. Maurya, K. Kalani, S.C. Verma, R. Singh, A. Srivastava, Vacuum liquid chromatography: simple efficient and versatile separation technique for natural products, Organic Medicinal Chemistry 7 (2018) 1-3.
- N.O. Boadi, S.A. Saah, J.K. Mensah, M. Badu, S. Addai-Arhinand, M.B. Mensah, Phyto-constituents, antimicrobial and antioxidant properties of the leaves of Persea americana Mill cultivated in Ghana, Journal of Medicinal Plant Research 9 (2015) 933-939. DOI: 10.1007/s12221-015-4772-5
- S. Park, Y.H. Nam, I. Rodriguez, J.H. Park, H.J. Kwak, Y. Oh, M. Oh, M.S. Park, K.W. Lee, J.S. Lee, D.H. Kim, Y.H. Park, I. S. Moon, S. Choung, K.W. Jeong, B.N. Hong, T.H. Kang, S.H. Kim, Chemical constituents of Persea americana (avocado) and their protective effects against neomycin-induced hair cell damage, Revista Brasileira de Farmacognosia 29 (2019) 739-743. DOI: 10.1016/j.bjp.2019.08.004
- T. Lojewski, P. Miskowiec, M. Missori, A. Lubanska, L.M. Proniewicz, J. Lojewska, FTIR and UV/Vis as methods for evaluation of oxidative degradation of model paper: DFT approach for carbonyl vibrations, Carbohydrate Polymers 82 (2010) 370-375. DOI: 10.1016/j.carbpol.2010.04.087
- Z. Zhao, C. Yan, F. Xu, J. Liu, Study on dyeing properties and colour characteristics of wool fabrics dyed with Geranium caespitosum L. Extract: A new natural yellow dye, Coatings 13 (2023) 2-16. DOI: 10.3390/coatings13061125
- E. Narbona, J. Carlos, M. Arista, M.L Buide, P.L. Ortiz, Major flower pigments originate different colour signals to pollinators, Frontiers in Ecology and Evolution 9 (2021) 1-14. DOI: 10.3389/fevo.2021.743850
- N. Sofyan, A. Ridhova, K.R.O. Pramono, A.H. Yuwono, A. Udhiarto, Visible light absorption and photo-sensitizing characteristics of natural dye extracted from Mangosteen pericarps using different solvents, International Journal of Advanced Science, Engineering, and Information Technology 8 (2018) 2059-2064. DOI: 10.18517/ijaseit.8.5.3499
- A. Talukdar, Extraction, isolation and characterization of natural dye from kathanda (Tabernaemontanum, divericata) and vaola (Mangifera macrophilla), International Journal of Research in Technology 11 (2018) 42-45.
- M.T. Uddin, M.A. Razzag, A.H. Quadery, M.J. Chowdhury, A. Mizan, M. Raihan, F. Ahmad, Extraction of dye from natural source (LAC) & its application on leather, American Scientific Research Journal for Engineering, Technology, and Sciences 34 (2017) 1-7.
- P. Charisiadis, V.G. Kontogianni, C.G. Tsiafoulis, A.G. Tzakos, M. Siskos, L.P. Gerothanasis, 1HNMR as a structural and analytical tool of intra-and intermolecular hydrogen bonds of phenol-containing natural products and model compounds, Molecules 19 (2014) 13643-13682. DOI: 10.3390/molecules190913643
- F. Maltese, C. Erkelens, F.V. Kooy, Y.H. Choi, R. Verpoorte, Identification of natural epimeric flavonone glycosides by NMR spectroscopy, Food Chemistry 116 (2019) 575-579. DOI: 10.1016/j.foodchem.2009.03.023
- P.E. Hansen, J. Spanget-Larsen, NMR and IR investigations of strong intramolecular hydrogen bonds, Molecules 22 (2017) 552-561. DOI: 10.3390/molecules22040552
- H. Zheng, S. Kwon, S. Chung, Viscozyme L aided flavonoid extraction and identification of quercetin from Saururus chinensis (Lour.) Baill, Journal of Applied Biological Chemistry 63 (2020) 197-201. DOI: 10.3839/jabc.2020.027
- J.G. Napolitano, D.C. Lankin, S. Chen, G.F. Pauli, Complete 1H NMR spectral analysis of ten chemical markers of Ginkgo biloba, Mag. Resonance Chemistry 50 (2012) 569-575. DOI: 10.1002/mrc.3829
- R. Mongkholrattanasit, J. Krystufek, J. Wiener, J. Studnickova, Properties of wool and cotton fabrics dyed with Eucalyptus, tannin and flavonoids, Fibers & Textiles in Eastern Europe 19 (2011) 90-95. DOI: 10.5772/20738
- D.R. Huang, Y.A. Chen, R.L. Liou, J.X. Lin, C.H. Tsai, Optical properties of dyes affected by accelerating UV light exposure, Japanese Journal of Applied Physics 54 (2015) 1-5. DOI: 10.7567/jjap.54.09mf03
- M.R. Repon, D.M. Barshan, A. Rahman, S. Jurkoniene, A. Haji, M.A. Alim, E. Kumpikaite, Textile dyeing using natural mordants and dyes: a review, Environmental Chemistry Letters 22 (2024) 1473-1520. DOI: 10.1007/s10311-024-01716-4
- Z. Kovacevic, A. Sutlovic, A. Matin, S. Bischof, Natural dyeing of cellulose and protein fibers with the flower of Spartium junceum L. plant, Materials 14 (2021) 1-18. DOI: 10.3390/ma14154091
- R. Mongkholrattanasit, J. Krystufek, J. Wiener, M. Vikova, Dyeing, fastness and UV protection properties of silk and wool fabrics dyed with Eucalyptus leaf extract by exhaustion process, Fibers and Textiles in Eastern Europe 19 (2011) 94-99.