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61550-02-5

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61550-02-5 Usage

Description

2-(TRIMETHYLSILYLOXY)FURAN, also known as 2-(Trimethylsilyloxy)furan, is an organic compound that serves as a versatile reagent in the field of organic synthesis. It is characterized by its ability to undergo various chemical reactions, such as alkylation, aldolization, conjugate addition, and Diels-Alder reactions, making it a valuable compound for the synthesis of complex organic molecules.

Uses

Used in Synthetic Applications:
2-(TRIMETHYLSILYLOXY)FURAN is used as a synthetic reagent for the preparation of natural and synthetic furanones with anticancer activity. It is particularly useful in the formation of carbon-heteroatom bonds, alkylation, aldol-type reactions, conjugate addition, and Diels-Alder reactions, which are essential for the synthesis of complex organic molecules.
Used in Pharmaceutical Industry:
In the pharmaceutical industry, 2-(TRIMETHYLSILYLOXY)FURAN is used as a key intermediate in the synthesis of various drugs and drug candidates. Its ability to undergo multiple chemical reactions allows for the creation of diverse molecular structures with potential therapeutic applications.
Used in Chemical Research:
2-(TRIMETHYLSILYLOXY)FURAN is also utilized in chemical research as a model compound for studying various reaction mechanisms and exploring new synthetic pathways. Its unique reactivity and versatility make it an attractive candidate for investigating novel chemical transformations and developing innovative synthetic strategies.
Physical Properties:
2-(TRIMETHYLSILYLOXY)FURAN has a boiling point of 44-46 °C at a pressure of 17 mmHg and a density of 0.93 g/mL. These properties make it suitable for various synthetic applications and facilitate its handling and purification in laboratory settings.

Preparation

Accessible by silylation of 2(5H)-furanone, which is obtained at very low cost by oxidation of furfural.

Purification Methods

Fractionally distil it using a short path column. 1H NMR in CCl4 has : 4.90 (dd, J 1.3Hz, 3H), 6.00 (t, J 3Hz, 4H) and 6.60 (m, 5H). [Yoshii et al. Heterocycles 4 1663 1976.] 4-Trimethylsilyloxy-3-penten-2-one (cis) (acetylacetone enol trimethylsilyl ether) [13257-81-3] M 172.3, b 66-68o/4mm, 61-63o/5mm, d 4 0.917, n D 1.452. Fractionally distil it and store it in glass ampoules which are sealed under N2. It hydrolyses readily in contact with moisture giving, as likely impurities, hexamethyldisiloxane and 2,4-pentanedione. [West J Am Chem Soc 80 3246 1958, Beilstein 4 IV 4003.]

Check Digit Verification of cas no

The CAS Registry Mumber 61550-02-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,1,5,5 and 0 respectively; the second part has 2 digits, 0 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 61550-02:
(7*6)+(6*1)+(5*5)+(4*5)+(3*0)+(2*0)+(1*2)=95
95 % 10 = 5
So 61550-02-5 is a valid CAS Registry Number.
InChI:InChI=1/C7H12O2Si/c1-10(2,3)9-7-5-4-6-8-7/h4-6H,1-3H3

61550-02-5 Well-known Company Product Price

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  • TCI America

  • (T1536)  2-(Trimethylsilyloxy)furan  >96.0%(GC)

  • 61550-02-5

  • 5g

  • 1,990.00CNY

  • Detail
  • TCI America

  • (T1536)  2-(Trimethylsilyloxy)furan  >96.0%(GC)

  • 61550-02-5

  • 25g

  • 5,800.00CNY

  • Detail
  • Aldrich

  • (308064)  2-(Trimethylsiloxy)furan  97%

  • 61550-02-5

  • 308064-1G

  • 672.75CNY

  • Detail
  • Aldrich

  • (308064)  2-(Trimethylsiloxy)furan  97%

  • 61550-02-5

  • 308064-5G

  • 2,664.09CNY

  • Detail

61550-02-5SDS

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 (2-Furanyloxy)Trimethylsilane

1.2 Other means of identification

Product number -
Other names furan-2-yloxy(trimethyl)silane

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:61550-02-5 SDS

61550-02-5Relevant articles and documents

Re-visiting the diastereoselectivity of organocatalytic conjugate addition of 2-trimethylsiloxyfuran to trans-crotonaldehyde

Li, Liubo,El Khoury, Anton,Clement, Brennan O.,Harran, Patrick G.

supporting information, (2021/04/22)

We describe the re-assignment of configuration previously ascribed to product diastereomers resultant from imidazolidinone-catalyzed conjugate addition of 2-trimethylsiloxyfuran to trans-crotonaldehyde. A modified procedure that uses a diphenylprolinol catalyst was subsequently developed to selectively provide the ‘syn’ diastereomeric product in high enantiomeric excess on decagram scales.

Stereoselective triplet-sensitised radical reactions of furanone derivatives

Jahjah, Rabih,Gassama, Abdoulaye,Bulach, Veronique,Suzuki, Chikako,Abe, Manabu,Hoffmann, Norbert,Martinez, Agathe,Nuzillard, Jean-Marc

supporting information; experimental part, p. 3341 - 3354 (2010/06/19)

The stereo- and regioselectivity of triplet-sensitised radical reactions of furanone derivatives have been investigated. Furanones 7a,b were excited to the 3ππ* state by triplet energy transfer from acetone. Intramolecular hydrogen abstraction then occurred such that hydrogen was transferred from the tetrahydropyran to the β position of the furanone moiety. Radical combination of the tetrahydropyranyl and the oxoallyl radicals led to the final products 8a,b. In the intramolecular reaction, overall, a pyranyl group adds to the a position of the furanone. The effect of conformation was first investigated with compounds 9a,b carrying an additional substituent on the tether between the furanone and pyranyl moiety. Further information on the effect of conformation and the relative configuration at the pyranyl anomeric centre and the furanone moiety was obtained from the transformations of the glucose derivatives 12, 14, 17 and 18. Radical abstraction occurred at the anomeric centre and at the S′-position of the glucosyl moiety. Computational studies of the hydrogen-abstraction step were carried out with model structures. The activation barriers of this step for different stereoisomers and the abstraction at the anomeric centre and at the 6' -position of the tetrahydropyranyl moiety were calculated. The results of this investigation are in accordance with experimental observations. Furthermore, they reveal that the reactivity and regioselectivity are mainly determined in the hydrogen-abstraction step. Intramolecular hydrogen abstraction (almost simultaneous electron and proton transfer) in 3ππ * excited furanones only takes place under restricted structural conditions in a limited number of conformations that are defined by the relative configuration of the substrates. It is observed that in the biradical intermediate, back-hydrogen transfer occurs leading to the starting compound. In the case of glucose derivatives, this reaction led to epimerisation at the anomeric centre.

Total synthesis of (+)-azaspiracid-1. An exhibition of the intricacies of complex molecule synthesis

Evans, David A.,Kvaerno, Lisbet,Dunn, Travis B.,Beauchemin, Andre,Raymer, Brian,Mulder, Jason A.,Olhava, Edward J.,Juhl, Martin,Kagechika, Katsuji,Favor, David A.

supporting information; experimental part, p. 16295 - 16309 (2009/05/08)

The synthesis of the marine neurotoxin azaspiracid-1 has been accomplished. The individual fragments were synthesized by catalytic enantioselective processes: A hetero-Diels-Alder reaction to afford the E- and HI-ring fragments, a carbonyl-ene reaction to furnish the CD-ring fragment, and a Mukaiyama aldol reaction to deliver the FG-ring fragment. The subsequent fragment couplings were accomplished by aldol and sulfone anion methodologies. All ketalization events to form the nonacyclic target were accomplished under equilibrating conditions utilizing the imbedded configurations of the molecule to adopt one favored conformation. A final fragment coupling of the anomeric EFGHI-sulfone anion to the ABCD-aldehyde completed the convergent synthesis of (+)-azaspiracid-1.

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