3,5-Diaminobenzoic Acid
<strong>3,5-Diaminobenzoic Acid</strong>_x000D_ <strong>Catalog number:</strong> B2016172_x000D_ <strong>Lot number:</strong> Batch Dependent_x000D_ <strong>Expiration Date:</strong> Batch dependent_x000D_ <strong>Amount:</strong> 10 g_x000D_ <strong>Molecular Weight or Concentration:</strong> 152.15_x000D_ <strong>Supplied as:</strong> Powder_x000D_ <strong>Applications:</strong> a molecular tool for various biochemical applications_x000D_ <strong>Storage:</strong> RT, Dry_x000D_ <strong>Keywords:</strong> 3,5-Diaminobenzoic Acid_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: Du C, Ma C, Gu J, Li L, Chen G. Fluorescence Sensing of Caffeine in Tea Beverages with 3,5-diaminobenzoic_Acid Sensors (Basel). 2020 Feb 3;20(3):819._x000D_ 2: Anyama CA, Inah B, Utsu P, Ayi AA. Tailoring the band-gap, optical and fluorescent properties of 3,5-diaminobenzoic acid via functionalization with chemical groups: A DFT study Talanta. 2023 Dec 1;265:124777._x000D_ 3: Chattopadhayay S, Ghosh A, Kumar Mukhopadhyay T, Sharma R, Datta A, Talukdar P. Supramolecular Barrel-Rosette Ion Channel Based on 3,5-Diaminobenzoic Acid for Cation-Anion Symport Angew Chem Int Ed Engl. 2023 Nov 13;62(46):e202313712._x000D_ 4: Farag AA, Gafar Afif A, Salih SA, Altalhi AA, Mohamed EA, Mohamed GG. Highly Efficient Elimination of Pb(+2) and Al(+3) Metal Ions from Wastewater Using Graphene Oxide/3,5-Diaminobenzoic Acid Composites: Selective Removal of Pb(2+) from Real Industrial Wastewater ACS Omega. 2022 Oct 20;7(43):38347-38360._x000D_ 5: Mulhearn WD, Stafford CM. Highly Permeable Reverse Osmosis Membranes via Molecular Layer-by-Layer Deposition of Trimesoyl Chloride and 3,5-Diaminobenzoic_Acid ACS Appl Polym Mater. 2021;3(1):10.1021/acsapm.0c01199._x000D_ 6: Povedailo VA, Lysenko IL, Tikhomirov SA, Yakovlev DL, Tsybulsky DA, Kruhlik AS, Fan F, Martynenko-Makaev YV, Sharko OL, Duong PV, Minh PH, Shmanai VV. Fluorescent Properties of Carboxyfluorescein Bifluorophores J Fluoresc. 2020 May;30(3):629-635._x000D_ 7: Brylev VA, Lysenko IL, Kokin EA, Martynenko-Makaev YV, Ryazantsev DY, Shmanai VV, Korshun VA. Molecular Beacon DNA Probes with Fluorescein Bifluorophore Russ J Bioorg Chem. 2021;47(3):734-740._x000D_ 8: Gao Y, Dong C, Zhang F, Ma H, Li Y. Constructing Polyimide Aerogels with Carboxyl for CO(2) Adsorption Polymers (Basel). 2022 Jan 18;14(3):359._x000D_ 9: Schy WE, Plewa MJ. Use of the diaminobenzoic acid fluorescence assay in conjunction with uv absorbance as a means of quantifying and ascertaining the purity of a DNA preparation Anal Biochem. 1989 Aug 1;180(2):314-8._x000D_ <a href="https://pubmed.ncbi.nlm.nih.gov/16149858">10: Chaignon P, Cortial S, Guerineau V, Adeline MT, Giannotti C, Fan G, Ouazzani J. Photochemical reactivity of trifluoromethyl aromatic amines: the example of 3,5-diamino-trifluoromethyl-benzene (3,5-DABTF) Photochem Photobiol. 2005 Nov-Dec;81(6):1539-43. </a>_x000D_ _x000D_ <strong>Products Related to 3,5-Diaminobenzoic Acid can be found at</strong> <a href="https://moleculardepot.com/product-category/Chemicals/"> Chemicals</a>
Product Specifications
Short Description
Catalog Number: B2016172 (10 g)
Weight
2.6
Length
3.3
Width
1.2
Height
1.2
Frequently Asked Questions
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