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Dibenzo[b,d]furan-2,3,7,8-tetrol is a complex organic compound with the molecular formula C12H8O4. It is a derivative of dibenzofuran, a heterocyclic compound consisting of two benzene rings fused to a furan ring. The tetrol functional group indicates the presence of four hydroxyl (-OH) groups attached to the molecule. Dibenzo[b,d]furan-2,3,7,8-tetrol is known for its potential applications in various fields, such as pharmaceuticals and materials science, due to its unique chemical structure and properties. However, it is essential to note that the compound's toxicity, environmental impact, and long-term effects on human health are not well understood, and further research is needed to fully comprehend its potential risks and benefits.

7461-62-3

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7461-62-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7461-62-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,4,6 and 1 respectively; the second part has 2 digits, 6 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 7461-62:
(6*7)+(5*4)+(4*6)+(3*1)+(2*6)+(1*2)=103
103 % 10 = 3
So 7461-62-3 is a valid CAS Registry Number.

7461-62-3Downstream Products

7461-62-3Relevant academic research and scientific papers

Biobased Chemicals: 1,2,4-Benzenetriol, Selective Deuteration and Dimerization to Bifunctional Aromatic Compounds

Randolph, Caelan,Lahive, Ciaran W.,Sami, Selim,Havenith, Remco W. A.,Heeres, Hero J.,Deuss, Peter J.

, p. 1663 - 1671 (2018)

1,2,4-Benzenetriol (BTO), sourced from the carbohydrate-derived platform chemical 5-hydroxylmethylfurfural (HMF), is an interesting starting point for the synthesis of various biobased aromatic products. However, BTO readily undergoes dimerization and other reactions under mild conditions, making analysis and isolation challenging. To both control and utilize the reactivity of BTO to produce biobased building blocks, its reactivity needs to be better understood. Here it was found that specific BTO aromatic C-H bonds are reactive toward deuterium exchange with D2O, which appears pronounced under acidic conditions at room temperature and can lead to the selective formation of BTO with an aromatic ring that contains one or two deuterium atoms, the first at the five and the second at the three position. By exposure to air, it was shown that BTO forms a 5,5′-linked BTO dimer [1,1′-biphenyl]-2,2′,4,4′,5,5′-hexaol (1) and subsequently a hydroxyquinone containing dimeric structure 2′,4,4′,5′-tetrahydroxy-[1,1′-biphenyl]-2,5-dione (2). Additionally, condensed dimer dibenzo[b,d]furan-2,3,7,8-tetraol (3) can be relatively easily accessed. The controlled formation of these symmetric and asymmetric multifunctional dimers illustrates diverse possibilities for BTO to be converted to valuable biobased aromatic compounds. Deuterium exchange was attributed to electrophilic aromatic substitution because this reactivity was found to be independent of oxygen and acid mediated. On the contrary, the dimerization was dependent on the presence of oxygen and thus likely involves radical intermediates. Thus this report overall displays different accessible reaction pathways for BTO that can be exploited for the production of BTO-derived compounds.

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