[1] Galdiero S., Falanga A., Vitiello M., Cantisani M., Marra V., Galdiero M.,
Silver Nanoparticles as Potential Antiviral Agents,
Molecules,
16(10): 8894-8918 (2011).
[3] Jung J.H., Oh H.C., Noh H.S., Ji J.H., Kim S.S.,
Metal Nanoparticle Generation Using a Small Ceramic Heater with a Local Heating Area,
J. Aerosol Sci.,
37(12): 1662-1670 (2006).
[6] Waksmundzka-Hajnos M., Sherma J., Kowalska T., "
Thin Layer Chromatography in Phytochemistry", 1nd Edition, CRC Press, Boca Raton, (2008).
[7] Sharma V.K., Yngard R.A., Lin Y.,
Silver Nanoparticles: Green Synthesis and Their Antimicrobial Activities,
Advances Coll. Interface Sci.,
145(1-2): 83-96 (2009).
[9] Karpudewan M., Ismail Z.H., Mohamed N.,
"Enhancing The Acquisition of Concepts Central To Sustainable Development Through Green Chemistry", In The Second İnternational Conference On Science And Mathematics Education, Seameo Recsam, Penang, Malaysia, (2007).
[11] Waring D.R., Hallas G., "
The Chemistry and Application of Dyes", Plenum Press, New York, (1990).
[16] Elizalde-Gonzalez M.P., Hernandez-Montoya V.,
Removal of Acid Orange 7 by Guava Seed Carbon: A Four Parameter Optimization Study,
J. Hazard. Mater.,
168: 515-522 (2009).
[20] Arbabi M., Ahmadi
M.A., Sedehi M.,
Optimization of Removal of COD and Color from Baker’s Yeast Wastewater by FENTON OXIdation, Iran. J. Health and Environ., 7: 375-384 (2014).
[21] Padervand M., Nasiri F., Hajiahmadi S., Bargahi A., Esmaeili S., Amini M., Nami R.K., Shahsavari Z., Karima S.,
Ag@Ag2MoO4 Decorated Polyoxomolybdate/C3N4 Nanostructures as Highly Efficient Photocatalysts for the Wastewater Treatment and Cancer Cells Killing Under Visible Light,
Inorganic Chem. Communications,
141: 109500 (2022).
[24] Padervand M., Ghasemi S., Hajiahmadi S., Rhimi B., Nejad Z.G., Karima S., Shahsavari Z., Wang C.,
Multifunctional Ag/AgCl/ZnTiO3 Structures as Highly Efficient Photocatalysts for the Removal of Nitrophenols, CO2 Photoreduction, Biomedical Waste Treatment, and Bacteria Inactivation,
Applied Catalysis A: General, 643: 118794 (2022).
[28] Sreemanti D., Jayeeta D., Asmita S., Soumya Sundar B.C., Durba D., Anisur R., Khuda-Bukhsh A.R.,
Biosynthesized Silver Nanoparticles by Ethanolic Extracts of Phytolacca Decandra, Gelsemium Sempervirens, Hydrastis Canadensis and Thuja Occidentalis Induce Differential Cytotoxicity Through G2/M Arrest in A375 Cells,
Coll. Surf. B: Biointerfaces,
101: 325 -336 (2013).
[29] Foster W.T., "Basic Taguchi Design of Experiments", National Association of Industrial Technology Conference, Pittsburgh, PA, (2000).
[31] Atil H., Unver Y.,
A Different Approach of Experimental Design: Taguchi Method,
Pakistan j. Biol. Sci.,
3: 1538-1540 (2000).
[32] Ranjit K., "
Qualitek-4, Software for Automatic Design and Analysis of TAGUCHI Experiments", Bloomfield Hills, Mich.: Nutek, Inc. Limited-capability working copy downloadable from www. Nutek-us.com/wp-q4w.html (1996).
[33] Hussain I., Singh N.B., Singh A., Singh H., Singh, S.C.,
Green Synthesis of Nanoparticles and Its Potential Application, Biotechnology lett.,
38: 545-560 (2016).
[34] Shahverdi A.R., Minaeian S., Shahverdi H.R., Jamalifar H., Nohi A.A.,
Rapid Synthesis of Silver Nanoparticles Using Culture Supernatants of Enterobacteria: A Novel Biological Approach,
Process Biochem.,
42: 919-923 (2007).
[36] Sellmann D., Nakamoto K., "
Infrared Spectra of Inorganic and Coordination Compounds", Second Edition, John Wiley & Sons, New York, (1971).
[37] Izadiyan Z., Shameli K., Miyake M., Hara H., Eva Binti Mohamad Sh., Kalantari K., Husnaa Mohd Taib S., Rasouli E.,
Cytotoxicity Assay of Plant-Mediated Synthesized Iron Oxide Nanoparticles Using Juglans Regia Green Husk Extract,
Arab. J. Chem.,
13: 2011-2023 (2020).
[40] Goncalves M.S.T., Oliveira-Campos A.M.F., Pinto E.M.M.S., Plasencia P.M.S., Queiroz M.J.R.P.,
Photochemical Treatment of Solutions of Azo Dyes Containing TiO2,
Chemosphere,
39: 781-786 (1999).
[42] Zhang T., Oyama T., Aoshima A., Hidaka H., Zhao J., Serpone N.,
Photooxidative N-Demethylation of Methylene Blue in Aqueous TiO2 Dispersions under UV Irradiation,
J. Photochem. Photobiol. A: Chem.,
140: 163–172 (2001).
[43] Ross P.J., "
Taguchi Techniques for Quality Engineering", Second Edition, McGraw Hill, New York, (1996).