Interesting facts
Interesting Facts about Dimethoxy-sulfanyl-thioxo-lambda5-phosphane
Dimethoxy-sulfanyl-thioxo-lambda5-phosphane is a fascinating compound that showcases the intricacies of sulfur and phosphorus chemistry. Here are some intriguing insights into this unique molecule:
- Structural Diversity: This compound features a complex structure that includes both sulfur and phosphorus, highlighting the versatility of these elements in forming various compounds.
- Reactivity Profile: The presence of the thioxo group endows this compound with distinct reactivity patterns, making it useful in a variety of chemical reactions, especially in the realm of synthesis.
- Biological Interest: Phosphorus-containing compounds, including thioxo-phosphanes, are known for their potential biological activities. They might serve as intermediates in the synthesis of biologically active molecules.
- Environmental Applications: Compounds like dimethoxy-sulfanyl-thioxo-lambda5-phosphane are of interest in environmental chemistry, where they may help in the development of new methods for pollution control and remediation.
- Academic Research: This compound may serve as a subject of ongoing research, as scientists explore its properties, potential applications, and behavior under various conditions.
In summary, dimethoxy-sulfanyl-thioxo-lambda5-phosphane stands as an example of the rich diversity found in the world of chemical compounds. Its unique properties not only intrigue researchers but also hold promise for various applications in chemistry and beyond.
Synonyms
756-80-9
O,O-DIMETHYL DITHIOPHOSPHATE
O,O-Dimethyldithiophosphate
Dimethyldithiophosphoric acid
Dimethyl phosphodithionate
Dimethyl phosphorodithioate
O,O-Dimethyl hydrogen dithiophosphate
O,O-Dimethylphosphorodithioate
Methyl phosphorodithioate
O,O-Dimethyl dithiophosphoric acid
O,O-Dimethyl phosphorodithioic acid
Phosphorodithioic acid, O,O-dimethyl ester
HSDB 5750
EINECS 212-053-9
Kwas dwumetylo-dwutiofosforowy
O,O'-Dimethyl hydrogen dithiophosphate
Kwas dwumetylo-dwutiofosforowy [Polish]
BRN 0635993
4K09JRW4Z6
Kyselina O,O-dimethyldithiofosforcna [Czech]
Kyselina O,O-dimethyldithiofosforcna
DTXSID5027306
EC 212-053-9
DIMETHYL PHOSPHORODITHIOATE, O,O-
O,O-DIMETHYL DITHIOPHOSPHATE [HSDB]
DMDTP
KYSELINA O,O-DIMETHYLDITHIOFOSFORCNA (CZECH)
Methyl phosphorodithioate (6CI,7CI)
O,ODimethyldithiophosphate
Kwas dwumetylodwutiofosforowy
O,ODimethylphosphorodithioate
O,ODimethyl phosphorodithioate
DTXCID707306
O,ODimethyl dithiophosphoric acid
O,ODimethyl phosphorodithioic acid
Kyselina O,Odimethyldithiofosforcna
O,O'Dimethyl hydrogen dithiophosphate
Phosphorodithioic acid, O,Odimethyl ester
212-053-9
o,o-dimethyl phosphorodithioate
Dimethylphosphorodithioate
Dimethyldithiophosphate
O,O'-Dimethyl Dithiophosphate
dimethoxy-sulfanyl-sulfanylidene-lambda5-phosphane
O,O-Dimethyl hydrogen phosphorodithioate
dimethyl dithiophosphoric acid
O,O-Dimethyl Dithiophosphate (~90%)
UNII-4K09JRW4Z6
Methyl Phosphorodithioate; O,O-Dimethyl Dithiophosphoric Acid; O,O-Dimethyl Phosphorodithioate; O,O-Dimethyl Phosphorodithioic Acid; O,O'-Dimethyl Hydrogen Dithiophosphate; O,O-Dimethyl S-Hydrogen Phosphorodithioate
MFCD00127999
Phosphorodithioic acid,O,O-dimethyl ester
dimethoxy-sulfanyl-thioxo-$l^{5}-phosphane
dimethyl phosphorodithioic acid
SCHEMBL398727
CHEBI:166461
CZGGKXNYNPJFAX-UHFFFAOYSA-N
BCP22577
O,O-dimethyl sulfanylphosphonothioate
AKOS006346194
FD152851
O,O-dimethyl S-hydrogen phosphorodithioate
CS-0435955
D5602
NS00001716
EN300-92396
dimethoxy-sulanyl-sulanylidene-lambda5-phosphane
T72912
Q17190515
O,O-Dimethyl hydrogen dithiophosphate;Phosphorodithioic acid O,O-dimethylester
Solubility of Dimethoxy-sulfanyl-thioxo-lambda5-phosphane
Dimethoxy-sulfanyl-thioxo-lambda5-phosphane, a unique chemical compound, presents interesting solubility characteristics that can vary based on several factors. Here are some key points to consider regarding its solubility:
In summary, while the solubility of dimethoxy-sulfanyl-thioxo-lambda5-phosphane may pose some challenges, careful selection of solvent and consideration of environmental factors can optimize its dissolution. Understanding these aspects is essential for effective practical applications.