15267-16-0 Usage
Uses
Used in Polymer Industry:
Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) is used as a crosslinking agent for polymers, enhancing their mechanical properties and durability. Its ability to form covalent bonds between polymer chains contributes to the improved performance of the final product.
Used in Rubber Industry:
In the rubber industry, Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) serves as a vulcanizing agent, which is essential for the production of rubber products. It facilitates the formation of a three-dimensional network within the rubber matrix, resulting in improved elasticity, strength, and resistance to wear.
Used in Metalworking Fluids:
Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) is used as a corrosion inhibitor in metalworking fluids, protecting metal surfaces from corrosion and wear during manufacturing processes. Its presence in these fluids helps to extend the life of machinery and reduce maintenance costs.
Used in Pharmaceutical Industry:
Although not explicitly mentioned in the provided materials, Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) may have potential applications in the pharmaceutical industry due to its unique chemical structure. Further research and development would be required to explore its potential uses in drug formulations or as an active pharmaceutical ingredient.
Used in Agricultural Industry:
Similarly, Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) may also have potential applications in the agricultural industry, possibly as a component in fertilizers or as a protective agent for crops. Further investigation would be necessary to determine its suitability and effectiveness in this field.
It is important to handle Urea,1,1'-(dithiodiethylene)bis[3-phenyl-2-thio(8CI) with care due to its potential irritant and toxic properties. Proper safety measures should be taken during its production, storage, and use to minimize any risks to human health and the environment.
Check Digit Verification of cas no
The CAS Registry Mumber 15267-16-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,5,2,6 and 7 respectively; the second part has 2 digits, 1 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 15267-16:
(7*1)+(6*5)+(5*2)+(4*6)+(3*7)+(2*1)+(1*6)=100
100 % 10 = 0
So 15267-16-0 is a valid CAS Registry Number.
15267-16-0Relevant academic research and scientific papers
Introduction of a disulfide bond as a key element of acyclic bis-thiourea-type anion receptors
Tomita, Kentaro,Ishioka, Toshio,Harata, Akira
, p. 425 - 434 (2014/04/17)
Two chiral porous organic polymers (CPOPs) were synthesized by linking a TADDOL-embedded building block with arylethynylenes units. The CPOPs are highly stable to thermal treatment, moisture, acidity, and basicity. The dihydroxy groups of TADDOL inside the pores promise the CPOPs as good asymmetric catalysts after postsynthesis modification with a secondary metal center. After being treated with Ti(OiPr)4, the CPOPs could be used as highly effective and reusable heterogeneous catalyst for asymmetric diethylzinc addition to aldehydes with up to 99% conversion and 95% ee. This work promises the potential of generating chiral solid catalysts with unique and practically useful enantioselective functions via a modular approach.
Enhanced sensitivity and selectivity of chemosensor for malonate by anchoring on gold nanoparticles
Liu, Yanyun,Liu, Yun,Liang, Zhongshi,Li, Xiangyang,Liu, Shunying,Yu, Jiahui
experimental part, p. 531 - 538 (2012/02/02)
A novel organic-inorganic nanohybrided receptor 4 functionalized with bis-thiourea arms and then assembled on gold nanoparticles was synthesized. The preorganized system possesses phenylthiourea units for the spectrophotometric sensing of dicarboxylates, especially malonate, based on changes in the surface plasmon absorption of the gold nanoparticles (GNPs). The intensity of the absorbance band increases gradually with the concentration of dicarboxylates increasing. But such an ion-selective change in the plasmon band was not observed in control tests carried out by mono-thiourea-modified GNPs, receptor 3 and the free receptor 2. As it is shown from the association constants, derived from quantitative titrations, receptor 4 can selectively recognize dicarboxylate anions of shorter carbon chain, and has the highest affinity to malonate. The interaction properties for anions of receptor 4 were evaluated by 1H NMR and UV-vis spectroscopic methods.