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646-31-1

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646-31-1 Usage

General Description

n-Tetracosane, also known as tetracosane, is a straight-chain alkane hydrocarbon with a molecular formula of C24H50. It is a waxy, colorless solid that is insoluble in water but soluble in organic solvents. n-Tetracosane is commonly found in various natural sources such as plant cuticles, leaf wax, and petroleum. It is used in a variety of industrial applications, including as a raw material for the production of various waxes, lubricants, and cosmetics. Additionally, n-Tetracosane has potential applications in the scientific research field, particularly in the study of surface tension and as a reference standard for chromatography.

Check Digit Verification of cas no

The CAS Registry Mumber 646-31-1 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 6,4 and 6 respectively; the second part has 2 digits, 3 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 646-31:
(5*6)+(4*4)+(3*6)+(2*3)+(1*1)=71
71 % 10 = 1
So 646-31-1 is a valid CAS Registry Number.
InChI:InChI=1/C24H50/c1-3-5-7-9-11-13-15-17-19-21-23-24-22-20-18-16-14-12-10-8-6-4-2/h3-24H2,1-2H3

646-31-1 Well-known Company Product Price

  • Brand
  • (Code)Product description
  • CAS number
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  • Price
  • Detail
  • Alfa Aesar

  • (42462)  n-Tetracosane, 99%   

  • 646-31-1

  • 5g

  • 168.0CNY

  • Detail
  • Alfa Aesar

  • (42462)  n-Tetracosane, 99%   

  • 646-31-1

  • 25g

  • 338.0CNY

  • Detail
  • Alfa Aesar

  • (42462)  n-Tetracosane, 99%   

  • 646-31-1

  • 100g

  • 1115.0CNY

  • Detail
  • Sigma-Aldrich

  • (87089)  Tetracosane  analytical standard

  • 646-31-1

  • 87089-1G

  • 420.03CNY

  • Detail
  • Sigma-Aldrich

  • (87089)  Tetracosane  analytical standard

  • 646-31-1

  • 87089-5G

  • 1,738.62CNY

  • Detail
  • Supelco

  • (442707)  Tetracosane  analytical standard

  • 646-31-1

  • 000000000000442707

  • 362.70CNY

  • Detail
  • Aldrich

  • (T8752)  Tetracosane  99%

  • 646-31-1

  • T8752-25G

  • 497.25CNY

  • Detail

646-31-1SDS

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 tetracosane

1.2 Other means of identification

Product number -
Other names tetracosan acid

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:646-31-1 SDS

646-31-1Relevant articles and documents

Ni/Co-catalyzed homo-coupling of alkyl tosylates

Komeyama, Kimihiro,Tsunemitsu, Ryusuke,Michiyuki, Takuya,Yoshida, Hiroto,Osaka, Itaru

, (2019/05/02)

A direct reductive homo-coupling of alkyl tosylates has been developed by employing a combination of nickel and nucleophilic cobalt catalysts. A single-electron-transfer-type oxidative addition is a pivotal process in the well-established nickel-catalyzed coupling of alkyl halides. However, the method cannot be applied to the homo-coupling of ubiquitous alkyl tosylates due to the high-lying σ*(C–O) orbital of the tosylates. This paper describes a Ni/Co-catalyzed protocol for the activation of alkyl tosylates on the construction of alkyl dimers under mild conditions.

NMR-based molecular ruler for determining the depth of intercalants within the lipid bilayer. Part III: Studies on keto esters and acids

Afri, Michal,Alexenberg, Carmit,Aped, Pinchas,Bodner, Efrat,Cohen, Sarit,Ejgenburg, Michal,Eliyahu, Shlomi,Gilinsky-Sharon, Pessia,Harel, Yifat,Naqqash, Miriam E.,Porat, Hani,Ranz, Ayala,Frimer, Aryeh A.

, p. 105 - 118 (2015/02/19)

The development of "molecular rulers" would allow one to quantitatively locate the penetration depth of intercalants within lipid bilayers. To this end, an attempt was made to correlate the 13C NMR chemical shift of polarizable "reporter" carbons (e.g., carbonyls) of intercalants within DMPC liposomal bilayers - with the polarity it experiences, and with its Angstrom distance from the interface. This requires families of molecules with two "reporter carbons" separated by a known distance, residing at various depths/polarities within the bilayer. For this purpose, two homologous series of dicarbonyl compounds, methyl n-oxooctadecanoates and the corresponding n-oxooctadecanoic acids (n = 4-16), were synthesized. To assist in assignment and detection several homologs in each system were prepared 13C-enriched in both carbonyls. Within each family, the number of carbons and functional groups remains the same, with the only difference being the location of the second ketone carbonyl along the fatty acid chain. Surprisingly, the head groups within each family are not anchored near the lipid-water interface, nor are they even all located at the same depth. Nevertheless, using an iterative best fit analysis of the data points enables one to obtain an exponential curve. The latter gives substantial insight into the correlation between polarity (measured in terms of the Reichardt polarity parameter, ET(30)) and penetration depth into the liposomal bilayer. Still missing from this curve are data points in the moderate polarity range.

Novel reducing properties of a series of lanthanoid metals in the presence of SmI2

Tomisaka, Yuri,Yoshimura, Aya,Nomoto, Akihiro,Sonoda, Motohiro,Ogawa, Akiya

, p. 43 - 48 (2013/03/13)

The reduction of dodecyl iodide, as model compound, with a series of lanthanoid (Ln) metals in the presence of catalytic amounts of samarium diiodide (SmI2) has been investigated in detail. The reducing activity of SmI2/Ln and the kinds of reduced products were found to be dependent on the individual Ln, but not on SmI2.

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