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934-00-9

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934-00-9 Usage

Description

3-Methoxycatechol, also known as 3-Methoxy-1,2-benzenediol, is a naturally occurring organic compound that belongs to the class of catechols. It is characterized by the presence of a hydroxyl group attached to each of the two adjacent carbon atoms in a benzene ring, with an additional methoxy group attached to one of the hydroxyl-bearing carbons. This unique structure endows 3-methoxycatechol with various chemical and biological properties, making it a versatile compound for different applications.

Uses

Used in Pharmaceutical Industry:
3-Methoxycatechol is used as a precursor in the synthesis of polyphenolic deoxybenzoins, which are compounds with potential applications as antioxidants and tyrosinase inhibitors. Antioxidants are essential in the pharmaceutical industry to protect against oxidative stress and prevent cell damage, while tyrosinase inhibitors can be used to treat conditions related to excessive melanin production, such as hyperpigmentation.
Used in Cosmetic Industry:
In the cosmetic industry, 3-Methoxycatechol and its derived polyphenolic deoxybenzoins can be utilized as active ingredients in skincare products. Their antioxidant properties can help protect the skin from environmental stressors and premature aging, while their tyrosinase inhibitory activity can assist in reducing the appearance of age spots, sunspots, and other pigmentation issues.
Used in Food and Beverage Industry:
3-Methoxycatechol and its derivatives can also find applications in the food and beverage industry as natural antioxidants. They can be incorporated into various products to extend shelf life, maintain freshness, and protect against the negative effects of oxidation, such as rancidity and color changes.
Used in Agricultural Industry:
In agriculture, 3-Methoxycatechol and its derived compounds can be employed as natural antioxidants to improve the quality and preservation of crops, reducing post-harvest losses and maintaining the nutritional value of the produce. Additionally, their tyrosinase inhibitory properties can be utilized in the development of novel plant protection products to control enzymatic browning in harvested fruits and vegetables.

Check Digit Verification of cas no

The CAS Registry Mumber 934-00-9 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 9,3 and 4 respectively; the second part has 2 digits, 0 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 934-00:
(5*9)+(4*3)+(3*4)+(2*0)+(1*0)=69
69 % 10 = 9
So 934-00-9 is a valid CAS Registry Number.
InChI:InChI=1/C7H8O3/c1-10-6-4-2-3-5(8)7(6)9/h2-4,8-9H,1H3

934-00-9 Well-known Company Product Price

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  • (Code)Product description
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  • Alfa Aesar

  • (B20006)  3-Methoxycatechol, 98%   

  • 934-00-9

  • 5g

  • 332.0CNY

  • Detail
  • Alfa Aesar

  • (B20006)  3-Methoxycatechol, 98%   

  • 934-00-9

  • 25g

  • 1104.0CNY

  • Detail
  • Alfa Aesar

  • (B20006)  3-Methoxycatechol, 98%   

  • 934-00-9

  • 100g

  • 3513.0CNY

  • Detail
  • Aldrich

  • (M13203)  3-Methoxycatechol  99%

  • 934-00-9

  • M13203-5G

  • 402.48CNY

  • Detail
  • Aldrich

  • (M13203)  3-Methoxycatechol  99%

  • 934-00-9

  • M13203-25G

  • 1,378.26CNY

  • Detail

934-00-9SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name 3-Methoxycatechol

1.2 Other means of identification

Product number -
Other names 3-METHOXYCATECHOL

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:934-00-9 SDS

934-00-9Relevant articles and documents

Iron-catalyzed arene C-H hydroxylation

Cheng, Lu,Wang, Huihui,Cai, Hengrui,Zhang, Jie,Gong, Xu,Han, Wei

, p. 77 - 81 (2021/10/05)

The sustainable, undirected, and selective catalytic hydroxylation of arenes remains an ongoing research challenge because of the relative inertness of aryl carbon-hydrogen bonds, the higher reactivity of the phenolic products leading to over-oxidized by-products, and the frequently insufficient regioselectivity. We report that iron coordinated by a bioinspired L-cystine-derived ligand can catalyze undirected arene carbon-hydrogen hydroxylation with hydrogen peroxide as the terminal oxidant. The reaction is distinguished by its broad substrate scope, excellent selectivity, and good yields, and it showcases compatibility with oxidation-sensitive functional groups, such as alcohols, polyphenols, aldehydes, and even a boronic acid. This method is well suited for the synthesis of polyphenols through multiple carbon-hydrogen hydroxylations, as well as the late-stage functionalization of natural products and drug molecules.

Structural features and antioxidant activities of Chinese quince (Chaenomeles sinensis) fruits lignin during auto-catalyzed ethanol organosolv pretreatment

Cheng, Xi-Chuang,Guo, Xin-Ran,Liu, Hua-Min,Liu, Yu-Lan,Qin, Zhao,Wang, Xue-De

, p. 4348 - 4358 (2020/09/22)

Chinese quince fruits (Chaenomeles sinensis) have an abundance of lignins with antioxidant activities. To facilitate the utilization of Chinese quince fruits, lignin was isolated from it by auto-catalyzed ethanol organosolv pretreatment. The effects of three processing conditions (temperature, time, and ethanol concentration) on yield, structural features and antioxidant activities of the auto-catalyzed ethanol organosolv lignin samples were assessed individually. Results showed the pretreatment temperature was the most significant factor; it affected the molecular weight, S/G ratio, number of β-O-4′ linkages, thermal stability, and antioxidant activities of lignin samples. According to the GPC analyses, the molecular weight of lignin samples had a negative correlation with pretreatment temperature. 2D-HSQC NMR and Py-GC/MS results revealed that the S/G ratios of lignin samples increased with temperature, while total phenolic hydroxyl content of lignin samples decreased. The structural characterization clearly indicated that the various pretreatment conditions affected the structures of organosolv lignin, which further resulted in differences in the antioxidant activities of the lignin samples. These results can be helpful for controlling and optimizing delignification during auto-catalyzed ethanol organosolv pretreatment, and they provide theoretical support for the potential applications of Chinese quince fruits lignin as a natural antioxidant in the food industry.

Cleavage of Catechol Monoalkyl Ethers by Aluminum Triiodide-Dimethyl Sulfoxide

Sang, Dayong,Tian, Juan,Tu, Xiaodong,He, Zhoujun,Yao, Ming

, p. 704 - 712 (2019/01/23)

Using eugenol and vanillin as model substrates, a practical method is developed for the cleavage o -hydroxyphenyl alkyl ethers. Aluminum oxide iodide (O=AlI), generated in situ from aluminum triiodide and dimethyl sulfoxide, is the reactive ether cleaving species. The method is applicable to catechol monoalkyl ethers as well as normal phenyl alkyl ethers for the removal of methyl, ethyl, isopropyl, and benzyl groups. A variety of functional groups such as alkenyl, allyl, amide, cyano, formyl, keto, nitro, and halogen are well tolerated under the optimum conditions. Partial hydrodebromination was observed during the demethylation of 4-bromoguaiacol, and was resolved using excess DMSO as an acid scavenger. This convenient and efficient procedure would be a practical tool for the preparation of catechols.

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