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484678-97-9

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484678-97-9 Usage

Description

Thieno[3,4-b][1,4]benzodioxin (9CI) is a heterocyclic compound characterized by a fused benzene and dioxin ring system. It possesses the molecular formula C10H6OS and a molecular weight of 174.22 g/mol. This versatile chemical serves as a valuable building block in organic synthesis, particularly within the pharmaceutical and agrochemical industries.

Uses

Used in Pharmaceutical Industry:
Thieno[3,4-b][1,4]benzodioxin (9CI) is utilized as a key intermediate in the synthesis of various pharmaceutical compounds. Its unique structure allows for the development of potential drugs with novel pharmacological properties, such as enzyme inhibition or as a scaffold for drug design.
Used in Agrochemical Industry:
In the agrochemical sector, Thieno[3,4-b][1,4]benzodioxin (9CI) is employed as a precursor for the creation of new agrochemicals. Its incorporation into these products can lead to the development of innovative solutions for pest control and crop protection, enhancing agricultural productivity and sustainability.
Research and Development:
Thieno[3,4-b][1,4]benzodioxin (9CI) is also used as a subject of ongoing research in the field of organic and medicinal chemistry. Scientists are actively exploring its potential applications and properties, with the aim of discovering new uses and expanding its role in various industries.

Check Digit Verification of cas no

The CAS Registry Mumber 484678-97-9 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 4,8,4,6,7 and 8 respectively; the second part has 2 digits, 9 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 484678-97:
(8*4)+(7*8)+(6*4)+(5*6)+(4*7)+(3*8)+(2*9)+(1*7)=219
219 % 10 = 9
So 484678-97-9 is a valid CAS Registry Number.

484678-97-9SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 20, 2017

Revision Date: Aug 20, 2017

1.Identification

1.1 GHS Product identifier

Product name thieno[3,4-b][1,4]benzodioxine

1.2 Other means of identification

Product number -
Other names -

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:484678-97-9 SDS

484678-97-9Downstream Products

484678-97-9Relevant articles and documents

3,4-Phenylenedioxythiophenes (PheDOTs) functionalized with electron-withdrawing groups and their analogs for organic electronics

Krompiec, Michal P.,Baxter, Sean N.,Klimareva, Elena L.,Yufit, Dmitry S.,Congrave, Daniel G.,Britten, Thomas K.,Perepichka, Igor F.

supporting information, p. 3743 - 3756 (2018/04/12)

A novel, facile and efficient one-pot, microwave-assisted method of synthesis allowing an access to a new series of 3,4-phenylenedioxythiophene derivatives with electron-withdrawing groups at the benzene ring (EWG-PheDOT) and their analogs (with an expanded side π-system or with heteroaromatic rings, ArDOT) by the reaction of 2,5-dialkoxycarbonyl-3,4-dihydroxythiophenes with electrophilic aromatic/heteroaromatic compounds in dipolar aprotic solvents has been described. Its applicability over a wide range of novel functionalized ArDOTs as promising building blocks for organic electronic materials has been demonstrated. The structures of selected ArDOTs have been determined by single-crystal X-ray diffraction. The electronic structure of conjugated polymers p[ArDOTs] based on synthesized novel thiophene monomers has been studied theoretically by the DFT PBC/B3LYP/6-31G(d) method. The performed calculations reveal that while the side functional groups are formally not in conjugation with the polymer main chain, they have an unprecedentedly strong effect on the HOMO/LUMO energy levels of conjugated polymers, allowing their efficient tuning by over the range of 1.6 eV. In contrast to that, the energy gaps of the polymers are almost unaffected by such functionalizations and vary within a range of only ≤0.05 eV. Computational predictions have been successfully confirmed in experiments: cyclic voltammetry shows a strong anodic shift of p-doping for the electron-withdrawing CF3 group functionalized polymer p[4CF3-PheDOT] relative to the unsubstituted p[PheDOT] polymer (by 0.55 V; DFT predicted the decrease of the HOMO by 0.58 eV), while very similar Vis-NIR absorption spectra for both polymers in the undoped state indicate that their optical energy gaps nearly coincide (ΔEg 0.04 eV).

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