Purchase CAS:13140-34-6,view related peer-reviewed papers,technical documents,similar products,MSDS & more. Methyl 2,3,3,3-tetrafluoro-2-(perfluoropropoxy)propanoate (MTF-PP) is a novel fluorinated compound that has recently been gaining attention in the scientific community. It is a fluorinated organic compound that is used for a variety of applications, including scientific research, lab experiments, and industrial process...
Methyl 2,3,3,3-tetrafluoro-2-(perfluoropropoxy)propanoate (MTF-PP) is a novel fluorinated compound that has recently been gaining attention in the scientific community. It is a fluorinated organic compound that is used for a variety of applications, including scientific research, lab experiments, and industrial processes. MTF-PP has several unique properties that make it a valuable tool for scientists and engineers.
Scientific Research Applications
Environmental Degradation and Toxicology
Microbial Degradation of Polyfluoroalkyl Chemicals: A review on the environmental biodegradability of polyfluoroalkyl chemicals, including potential perfluoroalkyl acid (PFAA) precursors, highlights the environmental fate, degradation pathways, and the transformation of these chemicals into perfluoroalkyl carboxylic (PFCAs) and sulfonic acids (PFSAs) such as perfluorooctanoic acid (PFOA) and perfluorooctane sulfonic acid (PFOS). This research suggests that understanding the degradation mechanisms of polyfluoroalkyl substances is crucial for assessing their environmental impact and for developing strategies to mitigate their persistence in the environment (Liu & Avendaño, 2013).
Chemical Kinetic Modeling for Environmental Applications
Biodiesel Combustion and Chemical Kinetic Modeling: Research into the chemical kinetic mechanisms for biodiesel combustion, including the development of models for biodiesel surrogates, sheds light on the combustion characteristics of biofuels and their environmental implications. This work is important for understanding the combustion processes of various fuels and their potential environmental impacts, offering insights that could be indirectly relevant to the study of polyfluoroalkyl chemicals' behavior in the environment (Lai, Lin, & Violi, 2011).
Sustainable Solvent Applications
2-Methyloxolane as a Sustainable Solvent: Exploring bio-based solvents like 2-methyloxolane (2-MeOx) for the extraction of natural products and food ingredients presents an environmentally friendly alternative to conventional solvents. This research aligns with the broader goal of identifying sustainable and less harmful chemical processes and materials, which is also a critical aspect of studying and managing the environmental impact of polyfluoroalkyl substances (Rapinel et al., 2020).