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N-propyl-N-phenylthiourea, also known as N-phenyl-N-propylthiourea or PPTh, is an organic compound with the chemical formula C9H12N2S. It is a white crystalline solid that is soluble in water and various organic solvents. N-propyl-N-phenylthiourea is primarily used as a chemical intermediate in the synthesis of dyes, pharmaceuticals, and agrochemicals. It is also known for its potential application as a corrosion inhibitor in metal protection. The structure of N-propyl-N-phenylthiourea consists of a thiourea group (-NH-CS-NH-) with a phenyl group attached to one nitrogen atom and a propyl group attached to the other nitrogen atom.

4292-70-0

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4292-70-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 4292-70-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,2,9 and 2 respectively; the second part has 2 digits, 7 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 4292-70:
(6*4)+(5*2)+(4*9)+(3*2)+(2*7)+(1*0)=90
90 % 10 = 0
So 4292-70-0 is a valid CAS Registry Number.

4292-70-0Downstream Products

4292-70-0Relevant academic research and scientific papers

A convenient and efficient method for the synthesis of mono- and N,N-disubstituted thioureas

Kodomari, Mitsuo,Suzuki, Masato,Tanigawa, Keiko,Aoyama, Tadashi

, p. 5841 - 5843 (2007/10/03)

A convenient method for the synthesis of mono- and N,N-disubstituted thioureas by the debenzoylation of N-substituted- and N,N-disubstituted- N′-benzoylthioureas with hydrazine hydrate under solvent-free conditions has been developed. N-Substituted-N′-benzoylthioureas and hydrazine hydrate were mixed, and stirred at room temperature without a solvent to give the corresponding N-substituted thioureas in high yields.

Experimental and theoretical studies on the thermal decomposition of heterocyclic nitrosimines

Bartsch,Yeh Moon Chae,Ham,Birney

, p. 7479 - 7486 (2007/10/03)

A series of substituted 2-nitrosiminobenzothiazolines (2) were synthesized by the nitrosation of the corresponding 2-iminobenzothiazolines (6). Thermal decomposition of 2a-f and of the seleno analogue 7 in methanol and of 3-methyl-2-nitrosobenzothiazoline (2a) in acetonitrile, 1,4-dioxane, and cyclohexane followed first-order kinetics. The activation parameters for thermal deazetization of 2a were measured in cyclohexane (ΔH? = 25.3 ± 0.5 kcal/mol, ΔS? = 1.3 ± 1.5 eu) and in methanol (ΔH? = 22.5 ± 0.7 kcal/mol, ΔS? = -12.9 ± 2.1 eu). These results indicate a unimolecular decomposition and are consistent with a proposed stepwise mechanism involving cyclization of the nitrosimine followed by loss of N2. The ground-state conformations of the parent nitrosiminothiazoline (9a) and transition states for rotation around the exocyclic C=N bond, electrocyclic ring closure, and loss of N2 were calculated using ab initio molecular orbital theory at the MP2/6-31G* level. The calculated gas-phase barrier height for the loss of N2 from 9a (25.2 kcal/mol, MP4(SDQ, FC)/6-31G*//MP2/6-31G* + ZPE) compares favorably with the experimental barrier for 2a of 25.3 kcal/mol in cyclohexane. The potential energy surface is unusual; the rotational transition state 9a-rot-ts connects directly to the orthogonal transition state for ring-closure 9aTS. The decoupling of rotational and pseudopericyclic bond-forming transition states is contrasted with the single pericyclic transition state (15TS) for the electrocyclic ring-opening of oxetene (15) to acrolein (16). For comparison, the calculated homolytic strength of the N-NO bond is 40.0 kcal/mol (MP4(SDQ, FC)/6-31G* + ZPE).

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