Interesting facts
Exploring 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea
3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea is a fascinating chemical compound that plays a key role in various scientific domains. Here are some intriguing aspects of this compound:
- Research Applications: This compound is often utilized in pharmacological studies due to its potential as a lead compound for the synthesis of novel therapeutic agents. Its unique structure provides opportunities to explore various biological activities.
- Pesticide Development: The chlorinated phenyl group finds applications in agriculture, specifically in the development of pesticides. Products containing similar structures can have herbicidal or fungicidal properties, essential for enhancing crop yield.
- Synthesis: The synthesis of 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea involves intricate organic reactions, often attracting chemistry students and researchers interested in medicinal chemistry. Understanding its synthesis offers insights into reaction mechanisms and functional group transformations.
- Structure-Activity Relationship (SAR): This compound serves as an excellent model for studying the structure-activity relationship. By modifying different parts of its structure, researchers can assess how these changes affect bioactivity, aiding in drug design efforts.
To quote Richard Smalley, "We have to be careful not to confuse the simplicity of our understanding of molecules with the complexity of the reality." This perfectly encapsulates the intricacies of compounds like 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea, where every atom plays a crucial role in its overall properties.
In conclusion, the study of 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea highlights the intersection of organic chemistry, pharmacology, and agriculture, making it a compound of interest for many scientists.
Synonyms
Chlorotoluron
15545-48-9
CHLORTOLURON
3-(3-Chloro-4-methylphenyl)-1,1-dimethylurea
Dicuran
Tolurex
Clortokem
Dikurin
3-(3-Chloro-p-tolyl)-1,1-dimethylurea
Urea, N'-(3-chloro-4-methylphenyl)-N,N-dimethyl-
N'-(3-Chloro-4-methylphenyl)-N,N-dimethylurea
N-(3-Chloro-4-methylphenyl)-N',N'-dimethylurea
CGA 15646
N,N-Dimethyl-N'-(3-chloro-4-methylphenyl)urea
SUW8L8G38A
Urea, 3-(3-chloro-p-tolyl)-1,1-dimethyl-
C 2242
CHEBI:81981
3-(3-Chloro-4-methylphenyl)-1,1-dimethyl-urea
DTXSID8052853
DTXCID5031264
239-592-2
1-(3-chloro-4-methylphenyl)-3,3-dimethylurea
3-(3-Chlor-4-methylphenyl)-1,1-dimethylharnstoff
Highuron
Chlorotoluron 10 microg/mL in Acetonitrile
Chlorotoluron 100 microg/mL in Acetonitrile
Chlortoluron [BSI]
Caswell No. 216D
Chlorotoluron [BSI:ISO]
Dicuran 500FL
Chlorotoluron [ISO]
HSDB 2760
EINECS 239-592-2
UNII-SUW8L8G38A
EPA Pesticide Chemical Code 216500
BRN 2647688
CCRIS 8727
Chlorotoluron D6
Chlortoluron solution
MFCD00018275
3-(3-Chlor-4-methylphenyl)-1,1-dimethylharnstoff [German]
Maybridge1_005487
CHLOROTOLURON [MI]
CHLOROTOLURON [HSDB]
SCHEMBL64782
4-12-00-01986 (Beilstein Handbook Reference)
DivK1c_001775
orb1306826
CHEMBL1900581
SCHEMBL29467785
HMS557B09
HY-B2023
CCG-56521
AKOS001223569
FC20400
KS-5366
CDS1_000735
NCGC00166132-01
DB-043270
CS-0014122
NS00000251
ST50410469
C18817
E78636
Chlortoluron, PESTANAL(R), analytical standard
EN300-7359283
N'-(3-Chloro-4-methylphenyl)-N,N-dimethylurea #
Q411273
SR-01000645471-1
Z56324724
[(3-chloro-4-methylphenyl)amino]-N,N-dimethylcarboxamide
Chlorotoluron; 1,1-Dimethyl-3-(3-chloro-4-methylbenzene)urea; Lentipur(R)
Solubility of 3-(3-Chloro-4-methyl-phenyl)-1,1-dimethyl-urea
The solubility of 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea can be assessed through various factors such as its molecular structure, polarity, and the nature of solvents used. Here are some key points to consider:
It's essential to note that some compounds can exhibit variable solubility depending on the conditions. As a general rule:
Overall, understanding the solubility of 3-(3-chloro-4-methyl-phenyl)-1,1-dimethyl-urea can aid in various applications in the field of chemistry, impacting how it interacts with other substances and its usability in different chemical processes.