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5765-54-8

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5765-54-8 Usage

Chemical compound

1,1-dicyclohexyl-3-phenylurea is a chemical compound that is used as an additive in the production of plastics.

Additive

It is typically used in the processing and molding of polyurethane materials.

Stabilizer

1,1-dicyclohexyl-3-phenylurea acts as a stabilizer, preventing discoloration and degradation of the polymer during high-temperature processing.

Corrosion inhibitor

It is also used as a corrosion inhibitor.

Intermediate

1,1-dicyclohexyl-3-phenylurea is used as an intermediate in the synthesis of other organic compounds.

Pharmaceutical potential

It has been studied for its potential use in pharmaceuticals and as a potential treatment for certain medical conditions.

Further research needed

Further research is needed to fully understand its potential applications in the medical field.

Versatile chemical

1,1-dicyclohexyl-3-phenylurea is a versatile chemical with a range of industrial and potential medical uses.

Check Digit Verification of cas no

The CAS Registry Mumber 5765-54-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,7,6 and 5 respectively; the second part has 2 digits, 5 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 5765-54:
(6*5)+(5*7)+(4*6)+(3*5)+(2*5)+(1*4)=118
118 % 10 = 8
So 5765-54-8 is a valid CAS Registry Number.

5765-54-8Relevant articles and documents

Visible-light-promoted oxidative desulphurisation: A strategy for the preparation of unsymmetrical ureas from isothiocyanates and amines using molecular oxygen

Deng, Weiseng,Gan, Ziyu,Jiang, Yuan-Ye,Li, Guoqing,Yan, Qiuli,Yang, Daoshan

supporting information, p. 2956 - 2962 (2020/06/17)

A green and efficient visible-light promoted oxidative desulphurisation protocol has been proposed for the construction of unsymmetrical ureas under mild conditions with broad substrate scope and good functional group tolerance. Most appealingly, the reaction can proceed smoothly without adding any strong oxidants. Control experiments and computational studies support a mechanism involving water-assisted in situ generation of thioureas and photocatalytic oxidative desulphurisation. The present method provides a promising synthesis strategy for the formation of diverse and useful unsymmetrical urea derivatives in the fields of pharmaceutical and synthetic chemistry.

Homologation of isocyanates with lithium carbenoids: A straightforward access to α-halomethyl- and α,α-dihalomethylamides

Pace, Vittorio,Castoldi, Laura,Mamuye, Ashenafi Damtew,Holzer, Wolfgang

, p. 2897 - 2909 (2015/01/16)

Treatment of widely available isocyanates with monohalolithium and dihalolithium carbenoids provides a valuable protocol for the one-pot preparation of α-halo- and α,α-dihaloacetamide derivatives. While monohalolithium carbenoids can be prepared by a smoo

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