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Poly(oxy-1,2-ethanediyl), R-hydro-ö-hydroxy-, ether with 1,2,3-propanetriol mono-(9Z)-9-octadecenoate (2:1) is a complex chemical compound that can be simplified to understand its composition and function. Poly(oxy-1,2-ethanediyl),R-hydro-ö-hydroxy-,ether with 1,2,3-propanetriol mono-(9Z)-9-octadecenoate (2:1) is essentially a blend of two parts: a polyethylene glycol (PEG) chain and a glycerol monooleate (GMO) molecule. The PEG chain, known for its water-soluble and non-toxic properties, is a polymer of ethylene oxide, which is represented by the "Poly(oxy-1,2-ethanediyl)" part. The "R-hydro-ö-hydroxy-" refers to the presence of hydroxyl groups, which are essential for the compound's reactivity. The "1,2,3-propanetriol mono-(9Z)-9-octadecenoate" part indicates the presence of a glycerol molecule with a single oleic acid chain, where oleic acid is a monounsaturated fatty acid. The "2:1" ratio suggests that there are two PEG units for every one GMO unit in the compound. This specific chemical is often used in pharmaceutical and cosmetic formulations due to its emulsifying, solubilizing, and moisturizing properties.

512-20-9

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512-20-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 512-20-9 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 5,1 and 2 respectively; the second part has 2 digits, 2 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 512-20:
(5*5)+(4*1)+(3*2)+(2*2)+(1*0)=39
39 % 10 = 9
So 512-20-9 is a valid CAS Registry Number.

512-20-9Relevant academic research and scientific papers

Convergent in situ Generation of Both Transketolase Substrates via Transaminase and Aldolase Reactions for Sequential One-Pot, Three-Step Cascade Synthesis of Ketoses

Lorillière, Marion,Guérard-Hélaine, Christine,Gefflaut, Thierry,Fessner, Wolf-Dieter,Clapés, Pere,Charmantray, Franck,Hecquet, Laurence

, p. 812 - 817 (2020)

We describe an efficient three-enzyme, sequential one-pot cascade reaction where both transketolase substrates are generated in situ in a convergent fashion. The nucleophilic donor substrate hydroxypyruvate was obtained from l-serine and pyruvate by a transaminase-catalyzed reaction. In parallel, three different (2S)-α-hydroxylated aldehydes, l-glyceraldehyde, d-threose, and l-erythrose, were generated as electrophilic acceptors from simple achiral compounds glycolaldehyde and formaldehyde by d-fructose-6-phosphate aldolase catalysis. The compatibility of the three enzymes was studied in terms of temperature, enzyme ratio and substrate concentration. The efficiency of the process relied on the irreversibility of the transketolase reaction, driving a shift of the reversible transamination reaction and securing the complete conversion of all substrates. Three valuable (3S,4S)-ketoses, l-ribulose, d-tagatose, and l-psicose were obtained in good yields with high diastereoselectivity.

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