Welcome to LookChem.com Sign In|Join Free

CAS

  • or

18137-88-7

Post Buying Request

18137-88-7 Suppliers

Recommended suppliersmore

  • Product
  • FOB Price
  • Min.Order
  • Supply Ability
  • Supplier
  • Contact Supplier

18137-88-7 Usage

Description

Furan, tetrahydro-2-methylene-, also known as 2-Methylenetetrahydrofuran, is an organic compound with a furan ring structure. It is characterized by the presence of a methylene group (CH2) attached to the second carbon of the furan ring. Furan, tetrahydro-2-methyleneis a dihydrofuranyl derivative, which means it has a saturated furan ring with an additional hydrogen atom.

Uses

1. Used in Chemical Synthesis:
Furan, tetrahydro-2-methyleneis used as a reagent in the activation of 1,2-diazines. Its unique structure allows it to participate in various chemical reactions, making it a valuable component in the synthesis of different organic compounds.
2. Used in Pharmaceutical Industry:
As a dihydrofuranyl derivative, Furan, tetrahydro-2-methylenecan be utilized in the development of pharmaceutical compounds. Its ability to form stable bonds with other molecules makes it a promising candidate for the creation of new drugs with potential therapeutic applications.
3. Used in Research and Development:
Due to its unique chemical properties, Furan, tetrahydro-2-methyleneis also used in research and development for studying various chemical reactions and mechanisms. It can serve as a model compound to understand the behavior of similar structures in different chemical environments.

Check Digit Verification of cas no

The CAS Registry Mumber 18137-88-7 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,8,1,3 and 7 respectively; the second part has 2 digits, 8 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 18137-88:
(7*1)+(6*8)+(5*1)+(4*3)+(3*7)+(2*8)+(1*8)=117
117 % 10 = 7
So 18137-88-7 is a valid CAS Registry Number.

18137-88-7Relevant articles and documents

S-Block cooperative catalysis: Alkali metal magnesiate-catalysed cyclisation of alkynols

Fairley, Michael,Davin, Laia,Hernán-Gómez, Alberto,García-álvarez, Joaquín,O'Hara, Charles T.,Hevia, Eva

, p. 5821 - 5831 (2019/06/18)

Mixed s-block metal organometallic reagents have been successfully utilised in the catalytic intramolecular hydroalkoxylation of alkynols. This success has been attributed to the unique manner in which these reagents can overcome the challenges of the reaction: namely OH activation and coordination to and then addition across a CC bond. In order to optimise the reaction conditions and to garner vital catalytic system requirements, a series of alkali metal magnesiates were enlisted for the catalytic intramolecular hydroalkoxylation of 4-pentynol. In a prelude to the main investigation, the homometallic magnesium dialkyl reagent MgR2 (where R = CH2SiMe3) was utilised. This reagent was unsuccessful in cyclising the alcohol into 2-methylenetetrahydrofuran 2a or 5-methyl-2,3-dihydrofuran 2b, even in the presence of multidentate Lewis donor molecules such as N,N,N′,N′′,N′′-pentamethyldiethylenetriamine (PMDETA). Alkali metal magnesiates MIMgR3 (when MI = Li, Na or K) performed the cyclisation unsatisfactorily both in the absence/presence of N,N,N′,N′-tetramethylethylenediamine (TMEDA) or PMDETA. When higher-order magnesiates (i.e., MI2MgR4) were employed, in general a marked increase in yield was observed for MI = Na or K; however, the reactions were still sluggish with long reaction times (22-36 h). A major improvement in the catalytic activity of the magnesiates was observed when the crown ether molecule 15-crown-5 was combined with sodium magnesiate Na2MgR4(TMEDA)2 furnishing yields of 87% with 2a:2b ratios of 95:5 after 5 h. Similar high yields of 88% with 2a:2b ratios of 90:10 after 3 h were obtained combining 18-crown-6 with potassium magnesiate K2MgR4(PMDETA)2. Having optimised these systems, substrate scope was examined to probe the range and robustness of 18-crown-6/K2MgR4(PMDETA)2 as a catalyst. A wide series of alkynols, including terminal and internal alkynes which contain a variety of potentially reactive functional groups, were cyclised. In comparison to previously reported monometallic systems, bimetallic 18-crown-6/K2MgR4(PMDETA)2 displays enhanced reactivity towards internal alkynol-cyclisation. Kinetic studies revealed an inhibition effect of substrate on the catalysts via adduct formation and requiring dissociation prior to the rate limiting cyclisation step.

Effective, selective hydroalkoxylation/cyclization of alkynyl and allenyl alcohols mediated by lanthanide catalysts

Yu, Xianghua,Seo, SungYong,Marks, Tobin J.

, p. 7244 - 7245 (2008/02/06)

Catalytic hydroalkoxylation/cyclization reactions of alkynyl and allenyl alcohols are efficiently mediated by homoleptic lanthanide amides Ln[N(SiMe3)2]3 (Ln = La, Nd, Sm, Y, and Lu). Conversions are found to be highly selective with products distinctly different from those produced by conventional transition metal catalysts. Turnover frequencies as high as 18.0 h-1 at 60 °C are observed. Kinetic studies indicate that these transformations are zero-order in [substrate] and first-order in [catalyst]. Catalytic cycles are proposed in which insertion of C-C unsaturation into a Ln-O bond is turnover-limiting. Copyright

Post a RFQ

Enter 15 to 2000 letters.Word count: 0 letters

Attach files(File Format: Jpeg, Jpg, Gif, Png, PDF, PPT, Zip, Rar,Word or Excel Maximum File Size: 3MB)

1

What can I do for you?
Get Best Price

Get Best Price for 18137-88-7