Methyl Red (Highly Pure)
<strong>Methyl Red (Highly Pure)</strong>_x000D_ <strong>Catalog number:</strong> B2013027_x000D_ <strong>Lot number:</strong> Batch Dependent_x000D_ <strong>Expiration Date:</strong> Batch dependent_x000D_ <strong>Amount:</strong> 5 g_x000D_ <strong>Molecular Weight or Concentration:</strong> 269.3 g/mol_x000D_ <strong>Supplied as:</strong> Lyophilized Powder_x000D_ <strong>Applications:</strong> molecular tool for various biochemical applications_x000D_ <strong>Storage:</strong> RT_x000D_ <strong>Keywords:</strong> 2-(4-Dimethylaminophenylazo)benzoic acid, 4-Dimethylaminoazobenzene-2′-carboxylic acid, Acid Red 2_x000D_ <strong>Grade:</strong> Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um._x000D_ _x000D_ <strong>References:</strong>_x000D_ 1: Lu Z, Guo W, Liu C. Isolation, identification and characterization of novel Bacillus subtilis J Vet Med Sci. 2018 Mar 24;80(3):427-433._x000D_ 2: Ikram M, Naeem M, Zahoor M, Rahim A, Hanafiah MM, Oyekanmi AA, Shah AB, Mahnashi MH, Al Ali A, Jalal NA, Bantun F, Sadiq A. Biodegradation of Azo Dye Methyl Red by Pseudomonas aeruginosa: Optimization of Process Conditions Int J Environ Res Public Health. 2022 Aug 12;19(16):9962._x000D_ 3: Roik NV, Belyakova LA, Dziazko MO. Selective sorptive removal of Methyl Red from individual and binary component solutions by mesoporous organosilicas of MCM-41 type J Environ Sci (China). 2021 Jan;99:59-71._x000D_ 4: Hu CY, Cheng HY, Yao XM, Li LZ, Liu HW, Guo WQ, Yan LS, Fu JL. Biodegradation and decolourization of methyl red by Aspergillus versicolor LH1 Prep Biochem Biotechnol. 2021;51(7):642-649._x000D_ 5: El-Naggar NE, Hamouda RA, Abou-El-Souod GW. Statistical optimization for simultaneous removal of methyl red and production of fatty acid methyl esters using fresh alga Scenedesmus obliquus Sci Rep. 2022 May 3;12(1):7156._x000D_ 6: Kim H, Purev O, Myung E, Choi N, Cho K. Removal of Methyl_Red from Aqueous Solution Using Polyethyleneimine Crosslinked Alginate Beads with Waste Foundry Dust as a Magnetic Material Int J Environ Res Public Health. 2022 Jul 25;19(15):9030._x000D_ 7: Maniyam MN, Ibrahim AL, Cass AEG. Decolourization and biodegradation of azo dye methyl red by Rhodococcus strain UCC 0016 Environ Technol. 2020 Jan;41(1):71-85._x000D_ 8: Prasad Tajpuriya G, Shah P, Shahi N, Bhattarai A. UV-Vis studies of methyl_red in the presence of sodium dioctylsulfosuccinate/acetone and sodium dioctylsulfosuccinate/acetone/water Spectrochim Acta A Mol Biomol Spectrosc. 2021 Jul 5;255:119646._x000D_ 9: Ji W, Wang Z, Huang N, Liu H. Reconstruction of weak near-infrared images in methyl_red-doped nematic liquid crystals via stochastic resonance Opt Express. 2022 Aug 15;30(17):30108-30120._x000D_ <a href="https://pubmed.ncbi.nlm.nih.gov/36431663">10: Bazan-Wozniak A, Paluch D, Wolski R, Cielecka-Piontek J, Nosal-Wiercińska A, Pietrzak R. Biocarbons Obtained from Fennel and Caraway Fruits as Adsorbents of Methyl Red Sodium Salt from Water System Materials (Basel). 2022 Nov 17;15(22):8177. </a>_x000D_ _x000D_ <strong>Products Related to Methyl Red (Highly Pure) can be found at</strong> <a href="https://moleculardepot.com/product-category/Chemicals/"> Chemicals</a>
Product Specifications
Short Description
Catalog Number: B2013027 (5 g)
Weight
0.8
Length
2
Width
0.9
Height
0.9
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