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C22H26O4 is an organic compound with a molecular formula indicating that it contains 22 carbon atoms, 26 hydrogen atoms, and 4 oxygen atoms. C22H26O4 falls under the category of lipids, specifically a type of fat known as a triglyceride. Triglycerides are esters derived from glycerol and three fatty acid molecules. They are a primary form of energy storage in living organisms and are also a component of cell membranes. The specific structure of C22H26O4 would depend on the types of fatty acids that are esterified to the glycerol backbone. C22H26O4 is likely to be a solid at room temperature, given the high molecular weight and the potential for saturated fatty acid chains, which tend to be solid at room temperature.

1170-75-8

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1170-75-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1170-75-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,1,7 and 0 respectively; the second part has 2 digits, 7 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 1170-75:
(6*1)+(5*1)+(4*7)+(3*0)+(2*7)+(1*5)=58
58 % 10 = 8
So 1170-75-8 is a valid CAS Registry Number.

1170-75-8Downstream Products

1170-75-8Relevant academic research and scientific papers

Organotin-Mediated Monoacylation of Diols with Reversed Chemoselectivity: A Convenient Synthetic Method

Reginato, Gianna,Ricci, Alfredo,Roelens, Stefano,Scapecchi, Serena

, p. 5132 - 5139 (2007/10/02)

The organotin-mediated monoesterification of unsymmetrical diols with reversed chemoselectivity has been explored to ascertain scope and limits of the method and to provide an easy and convenient synthetic procedure.The reaction has been performed on a set of substituted diols with some acylating agents usually employed as protecting groups.Two different procedures have been devised to obtain either the desired diol monoesters directly or the corresponding trialkylsilyl ethers as protected derivatives.The latter provides a convenient approach to the preparation of easily interconvertible diol monoesters.Also, the reaction has been optimized as a one-pot procedure, avoiding the isolation and purification of the stannylated intermediates.The reversed monoesterification method has been successfully applied to 1,2-, 1,3-, and 1,4-diols of primary-secondary, primary-tertiary, and secondary-tertiary types and to ether functions containing 1,2-diols.Within its limits, the described method represents the first direct one-pot monoesterification of diols at the most substituted site, allowing some remarkable achievements as (a) an almost regiospecific reversed monobenzoylation of some 1,2-diols, (b) the selective acylation of the tertiary hydroxyl of a primary-tertiary diol, and (c) a highly selective preparation of secondary pivalate of primary-secondary diols.

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