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Sodium 4-formylbenzenesulfonate

  • Product Name: Sodium 4-formylbenzenesulfonate
  • CasNo: 13736-22-6
  • Purity:
  • Appearance: white crystal

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CasNo: 13736-22-6

Molecular Formula: C7H5NaO4S

Appearance: white crystal

Factory Supply Industrial Grade Sodium 4-formylbenzenesulfonate 13736-22-6 with Best Price

  • Molecular Formula:C7H5NaO4S
  • Molecular Weight:208.17
  • Appearance/Colour:white crystal 
  • PSA:82.65000 
  • LogP:1.48400 

Sodium 4-formylbenzenesulfonate(Cas 13736-22-6) Usage

General Description

Sodium 4-formylbenzenesulfonate (C₇H₅NaO₄S) is an organic compound that contains both aldehyde (-CHO) and sulfonate (-SO₃Na) functional groups. It is a key intermediate in the synthesis of dyes, pharmaceuticals, and other organic compounds. The chemical is commonly found as a yellow to brownish solid, soluble in water.
Chemical Structure Functional Groups: It contains an aldehyde group (-CHO) at the para position relative to a sulfonate group (-SO₃Na) on the benzene ring. The combination of these groups makes the compound reactive in various synthetic processes.
Uses Sodium 4-formylbenzenesulfonate is primarily used as a dye intermediate in industrial applications. It is involved in the synthesis of various dyes, contributing to color, stability, and other properties. It acts as a building block for synthesizing azo dyes and other colorants, essential in textiles and printing industries. It is also used in the pharmaceutical industry as an intermediate in the synthesis of drug molecules, taking part in reactions that create carbon-carbon bonds and introducing aldehyde functionalities in organic frameworks.
Factory Shanghai Wibson Biotechnology Co., Ltd. is a high-tech enterprise that mainly develops and sells pharmaceutical and chemical raw materials and other related products. The company has advanced and perfect supporting system and has formed advanced chemical synthesis technology, which can quickly meet the personalized needs and series development from suitable testing to industrial production. Products are exported to Russia, Southeast Asia and other countries, in the world has a very high reputation and visibility. The company has strong financial strength and a good operating environment, can provide customers with high-quality, efficient and fast services.

InChI:InChI=1/C7H6O4S.Na/c8-5-6-1-3-7(4-2-6)12(9,10)11;/h1-5H,(H,9,10,11);/q;+1/p-1

13736-22-6 Relevant articles

Selective catalytic 2e--oxidation of organic substrates by an FeIIcomplex having an N-heterocyclic carbene ligand in water

Fujisaki, Hiroto,Ishizuka, Tomoya,Shimoyama, Yoshihiro,Kotani, Hiroaki,Shiota, Yoshihito,Yoshizawa, Kazunari,Kojima, Takahiko

, p. 9783 - 9786 (2020)

An FeII complex, 1, having a pentadentat...

Photocatalytic oxidation of organic compounds in water by using ruthenium(II)-pyridylamine complexes as catalysts with high efficiency and selectivity

Ohzu, Shingo,Ishizuka, Tomoya,Hirai, Yuichirou,Fukuzumi, Shunichi,Kojima, Takahiko

, p. 1563 - 1567 (2013)

The photocatalytic oxidation of organic ...

Hydrogen production coupled to hydrocarbon oxygenation from photocatalytic water splitting

Singh, Wangkheimayum Marjit,Pegram, Derek,Duan, Haifeng,Kalita, Diganta,Simone, Paul,Emmert, Gary L.,Zhao, Xuan

, p. 1653 - 1656 (2012)

On the sunny side: A homogeneous system ...

Visible-Light-Driven Oxidation of Organic Substrates with Dioxygen Mediated by a [Ru(bpy)3]2+/Laccase System

Schneider, Ludovic,Mekmouche, Yasmina,Rousselot-Pailley, Pierre,Simaan, A. Jalila,Robert, Viviane,Réglier, Marius,Aukauloo, Ally,Tron, Thierry

, p. 3048 - 3051 (2015)

Oxidation reactions are highly important...

Biodegradation of 3-methyldiphenylether (MDE) by Hydrogenophaga atypical strain QY7-2 and cloning of the methy-oxidation gene mdeABCD

Q Yang, S Cai, S Dong, L Chen, J Chen, T Cai

, Scientific Reports, 2016

… mdeC and mdeD exhibited high sequence homology to the genes encoding 4-formylbenzenesulfonate dehydrogenase TsaD (99%) and 4-(hydroxymethyl) benzenesulfonate …

13736-22-6 Process route

sodium 4-styrenesulfonate
2695-37-6

sodium 4-styrenesulfonate

sodium 4-carboxy-benzenesulfonate
13736-22-6

sodium 4-carboxy-benzenesulfonate

Conditions
Conditions Yield
With ammonium cerium (IV) nitrate; [Ru(dmp)2(H2O)2](PF6)2; water-d2; at 20 ℃; for 3h; Inert atmosphere;
 
With triiron dodecarbonyl; tris(2,2'-bipyridyl)ruthenium dichloride; bis(2-phenylpyridinato)(2,2'-bipyridine)iridium(III) hexafluorophosphate; [Ru(TPA)(H2O)2](BPh4)2; water; In tetrahydrofuran; at 20 ℃; for 18h; Inert atmosphere; Irradiation;
 
With tris(2,2'-bipyridyl)ruthenium dichloride; chloropentamminecobalt(III)(2+); diaqua(tris(2-pyridylmethyl)amine)ruthenium(II)(2+); In water-d2; at 24.84 ℃; Irradiation;
 
With sodium persulfate; C29H22Cl2FeN6O(2+)*2NO3(1-); at 49.84 ℃; for 3h; Catalytic behavior;
 
sodium 4-styrenesulfonate
2695-37-6

sodium 4-styrenesulfonate

sodium 4-carboxy-benzenesulfonate
13736-22-6

sodium 4-carboxy-benzenesulfonate

sodium 4-(1,2-dihydroxyethyl)benzenesulfonate

sodium 4-(1,2-dihydroxyethyl)benzenesulfonate

sodium 4-(oxiranyl)benzenesulfonate

sodium 4-(oxiranyl)benzenesulfonate

Conditions
Conditions Yield
With tris(2,2’-bipyridine)ruthenium(II); laccase LAC3 from Trametes sp. C30; oxygen; for 6h; pH=6; pH-value; Reagent/catalyst; Irradiation; Inert atmosphere; Glovebox; Enzymatic reaction;
 

13736-22-6 Upstream products

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    2695-37-6

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