Interesting facts
Interesting Facts about 3-Dimethoxyphosphoryl-N-(hydroxymethyl)propanamide
3-Dimethoxyphosphoryl-N-(hydroxymethyl)propanamide is a fascinating compound with unique properties and applications in the field of chemistry. Here are some notable aspects of this intriguing compound:
- Phosphoryl Group: The presence of a dimethoxyphosphoryl group makes this compound a potential candidate for use in biochemical applications, such as enzyme inhibitors and .
- Hydroxymethyl Functionality: The hydroxymethyl substitution enhances the compound's reactivity and provides opportunities for further functionalization, which can be pivotal in the development of new synthetic routes.
- Versatility: Due to its structural versatility, this compound can serve as a valuable intermediate in the synthesis of various pharmaceuticals and agrochemicals.
- Research Applications: Ongoing research may uncover new biological activities, making it a compound of interest in drug discovery and development. Scientists are continuously exploring similar compounds for their potential therapeutic effects.
This compound embodies the intersection of organic synthesis and pharmaceutical chemistry, showcasing how modifications to a molecular structure can lead to enhanced functional properties. **As scientists delve deeper into the functional capabilities of such compounds, new exciting applications continue to emerge!**
In summary, 3-dimethoxyphosphoryl-N-(hydroxymethyl)propanamide is not just a molecule but a gateway into the vast world of chemical innovation and research!
Synonyms
3-(Dimethylphosphono)-N-methylolpropionamide
Dimethyl (3-((hydroxymethyl)amino)-3-oxopropyl)phosphonate
ODS75TAJ4V
DTXSID9040215
Phosphonic acid, (3-((hydroxymethyl)amino)-3-oxopropyl)-, dimethyl ester
Dimethyl phosphonomethylolpropionamide
Dimethyl N-hydroxymethylcarbamoylethylphosphonate
DTXCID7020215
Phosphonic acid, [3-[(hydroxymethyl)amino]-3-oxopropyl]-, dimethyl ester
Phosphonic acid, P-(3-((hydroxymethyl)amino)-3-oxopropyl)-, dimethyl ester
Dimethyl N-methylolphosphonopropionamide
3-(DIMETHYLPHOSPHONO)PROPIONIC METHYLOLAMIDE
N-METHYLOL-3-(DIMETHOXYPHOSPHONO)PROPIONAMIDE
N-METHYLOL-3-(DIMETHYLPHOSPHONO)PROPIONAMIDE
HYDROXYMETHYL DIMETHYL PHOSPHONOPROPIONAMIDE, N-
3-(DIMETHYLPHOSPHONO)PROPIONIC ACID METHYLOLAMIDE
dimethyl {2-[(hydroxymethyl)carbamoyl]ethyl}phosphonate
3-(DIMETHYLPHOSPHONO)-N-(HYDROXYMETHYL)PROPIONAMIDE
3-(O,O'-DIMETHYLPHOSPHONO)-N-METHYLOLPROPIONAMIDE
Dimethyl [3-[(hydroxymethyl)amino]-3-oxopropyl]phosphonate
DIMETHYL (2-((HYDROXYMETHYL)CARBAMOYL)ETHYL)PHOSPHONATE
Phosphonic acid, P-[3-[(hydroxymethyl)amino]-3-oxopropyl]-, dimethyl ester
Phosphonic acid, 3-(hydroxymethyl)amino-3-oxopropyl-, dimethyl ester
RefChem:588291
20120-33-6
3-dimethoxyphosphoryl-N-(hydroxymethyl)propanamide
C6H14NO5P
Pyrovatex CP
Phosphonic acid, [3-[(hydroxymethyl)amino]-3-oxopropyl]-, dimethylester
Pyrovatex 3805
Phosphonic acid, (2-((hydroxymethyl)carbamoyl)ethyl)-, dimethyl ester
Spolapret OS
EINECS 243-528-9
UNII-ODS75TAJ4V
3-(Dimethylphosphono)-N-methylolpropionamide (~70%)
EC 243-528-9
SCHEMBL105576
Tox21_303831
MFCD00468093
AKOS015852432
DS-0845
NCGC00356980-01
FD140297
CAS-20120-33-6
DB-066062
CS-0333684
NS00009518
O10884
A814258
Q27285592
[3-[(hydroxymethyl) amino]-3-oxopropyl]-phosphonic acid dimethyl ester
[3-[(Hydroxymethyl)amino]-3-oxopropyl]-phosphonic acid dimethyl ester; Dimethyl
Solubility of 3-dimethoxyphosphoryl-N-(hydroxymethyl)propanamide
The solubility of 3-dimethoxyphosphoryl-N-(hydroxymethyl)propanamide in various solvents can be quite intriguing. This compound, with its unique structure, may exhibit different solubility properties depending on the nature of the solvent. Here are some key points to consider:
As a result, assessing the solubility of this compound requires consideration of multiple factors. It can be summarized in the quote: "Solubility is not a single value, but a response to a complex interaction of chemical structure and environmental conditions."
Overall, understanding the solubility of 3-dimethoxyphosphoryl-N-(hydroxymethyl)propanamide involves exploring its behavior in different media, which ultimately impacts its applications in various chemical contexts.