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Tributylzinn-sec-butylat, also known as tributyltin sec-butylate, is an organotin compound with the chemical formula C16H36OSn. It is a colorless liquid that is soluble in organic solvents and has a molecular weight of 367.15 g/mol. Tributylzinn-sek.-butylat is primarily used as a heat stabilizer for polyvinyl chloride (PVC) and as a catalyst in the production of certain polymers. It is known for its effectiveness in preventing the degradation of PVC at high temperatures, thus maintaining the material's structural integrity. However, due to concerns over its environmental impact and potential toxicity, especially in aquatic ecosystems, the use of tributyltin compounds has been restricted or banned in many countries.

2291-84-1

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2291-84-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2291-84-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,2,9 and 1 respectively; the second part has 2 digits, 8 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 2291-84:
(6*2)+(5*2)+(4*9)+(3*1)+(2*8)+(1*4)=81
81 % 10 = 1
So 2291-84-1 is a valid CAS Registry Number.

2291-84-1Relevant academic research and scientific papers

Interaction between trialkyltin alkoxide and phenyl isocyanate in the formation of tin carbamate: A computational and experimental study

Devendra, Ransi,Edmonds, Neil R.,S?hnel, Tilo

, p. 72 - 86 (2014)

Organotin catalysts are used to catalyze the reaction of isocyanates and alcohols in the manufacture of urethanes. Therefore it is important to understand the mechanism of the catalysis to get a greater control of the reaction to obtain specific properties of the final product. Until now the proposed mechanism related to organotin catalysis of urethane formation is based on the mechanism suggested by Bloodworth and Davies (1965) on the reaction between trialkyltin alkoxide and phenyl isocyanate. In the present work computational and experimental methods were used to investigate the interaction between trialkyltin alkoxide and phenyl isocyanate. The computational results agree with the experimental results reported by Bloodworth and Davies. The computational investigation also provided further insight into the interaction mechanism. The investigations indicate that initially the isocyanate oxygen is attracted towards the tin atom of the organotin alkoxide, which subsequently undergoes an insertion reaction to form an organotin O-carbamate (methyl tributylstannyl phenylcarbonimidate), which rearranges to form an organotin N-carbamate (methyl phenyl(tributylstannyl)carbamate). Model compound studies of the urethane formation in the presence of trialkyltin catalyst using 13C NMR and FT-IR data show that the reaction goes through a termolecular mechanism. This is also confirmed by comparing reaction rates between trialkyl and dialkyl tin as catalyst at similar tin content for the reaction between aromatic isocyanate and alcohol and comparing with computationally calculated intrinsic reaction coordinate profile of different transition states for similar interactions.

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