Introduction of CAS:16695-14-0 | MONOMETHYL MALONATE
Hydrogen methylmalonate, also known as monomethyl malonate, is an organic solvent.
3-Methoxy-3-oxopropanoic acid, also known as MOP, is a naturally occurring organic acid found in plants and animals. It has a wide range of applications in the scientific research field, from biochemical and physiological studies to laboratory experiments. MOP is a versatile molecule with a wide range of biological activities, including anti-inflammatory, anti-oxidative, and anti-cancer effects.
Specification of CAS:16695-14-0 | MONOMETHYL MALONATE
|
ITEMS |
SPECIFICATION |
|
Boiling point |
232℃ |
|
Density |
1.128 |
|
Refractive index |
1.428 |
|
Color |
104℃ |
|
Storage condition |
Sealed in dry,Room Temperature |
Research Application of CAS:16695-14-0 | MONOMETHYL MALONATE
Synthesis Applications
3-Methoxy-3-oxopropanoic acid and its derivatives are used in the synthesis of various compounds. For instance, Iijima et al. (1979) described its role in synthesizing β-carbonyl system compounds, leading to the creation of complex structures like dioxolans and xanthenes (Iijima, Taga, Miyazaki, Tanaka, & Uzawa, 1979).
Hassanin & Ibrahim (2012) explored its use in creating novel quinolin-2(1H)-ones and pyrano[3,2-c]quinolin-2(1H)-ones, highlighting its versatility in developing antimicrobial agents (Hassanin & Ibrahim, 2012).
Chemical Analysis and Detection
Pisano, Crout, & Abraham (1962) demonstrated a method for determining 3-methoxy-4-hydroxymandelic acid, a related compound, in urine, indicating its importance in clinical chemistry and diagnostic applications (Pisano, Crout, & Abraham, 1962).
Aschmann, Arey, & Atkinson (2011) investigated the reaction kinetics of 3-methoxy-3-methyl-1-butanol with OH radicals, shedding light on environmental and industrial applications (Aschmann, Arey, & Atkinson, 2011).
Biological and Medical Research
Research by Yin et al. (2001) on 2-(8-Hydroxy-6-methoxy-1-oxo-1H-2-benzopyran-3-yl) propionic acid, a compound structurally related to 3-Methoxy-3-oxopropanoic acid, showed its potential in inducing lethality in human carcinoma cells, indicating its significance in cancer research (Yin, Ohno, Weichselbaum, Kharbanda, & Kufe, 2001).
Material Science
A scientific opinion by Andon et al. (2011) on the safety of 3H-perfluoro-3-[(3-methoxypropoxy)propanoic acid], a related compound, in food contact materials highlights its importance in the field of material science, especially in the context of consumer safety (Andon et al., 2011).


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