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Purchase CAS:1211577-99-9 | 6-(difluoroMethoxy)nicotinaldehyde,view related peer-reviewed papers,technical documents,similar products,MSDS & more.6-(Difluoromethoxy)nicotinaldehyde is a chemical compound with the CAS Number: 1211577-99-9 and a molecular weight of 173.12 . It has a linear formula of C7H5F2NO2 ....
6-(Difluoromethoxy)nicotinaldehyde is a chemical compound with the CAS Number: 1211577-99-9 and a molecular weight of 173.12. It has a linear formula of C7H5F2NO2.
The molecular structure of 6-(Difluoromethoxy)nicotinaldehyde is represented by the formula C7H5F2NO2. The average mass of the molecule is 173.117 Da, and the monoisotopic mass is 173.028839 Da.
6-(Difluoromethoxy)nicotinaldehyde is a solid at room temperature. It has a molecular weight of 173.12and a density of 1.335±0.06 g/cm3.
Fluorinated compounds, including those related to 6-(Difluoromethoxy)nicotinaldehyde, are of significant interest in environmental monitoring due to their persistence and potential bioaccumulative properties. Studies have focused on understanding the environmental fate, bioaccumulation, and toxicological effects of per- and polyfluoroalkyl substances (PFASs), which share some structural similarities with 6-(Difluoromethoxy)nicotinaldehyde. These investigations aim to inform safer environmental practices and regulatory standards to protect human health and ecosystems (Houde et al., 2006; Domingo & Nadal, 2019).
The structural properties of coordination polymers based on heavy metal centers, such as lead(II) and bismuth(III), connected via heteroaromatic carboxylate linkers, have been extensively reviewed. These materials, owing to their unique structural characteristics and the effects of their stereoactive lone electron pairs, have potential applications in luminescence, gas adsorption, and catalysis. Such research underscores the interest in exploring heteroaromatic compounds like 6-(Difluoromethoxy)nicotinaldehyde for developing new materials with tailored properties for advanced technological applications (Barszcz et al., 2021).
The development and refinement of analytical methods to determine the antioxidant activity of compounds highlight the importance of understanding chemical interactions and reactions. This includes exploring the capabilities of different compounds in various assays, which is essential for the pharmaceutical, food engineering, and environmental sectors. Such research emphasizes the role of compounds with specific functional groups, potentially including 6-(Difluoromethoxy)nicotinaldehyde, in developing and validating new analytical techniques for measuring antioxidant capacity (Munteanu & Apetrei, 2021).
The safety data sheet for 6-(Difluoromethoxy)nicotinaldehyde indicates that it should be handled with care. Contact with skin and eyes should be avoided, and it should not be inhaled. In case of contact, the affected area should be washed with plenty of water. It is advised to use personal protective equipment and ensure adequate ventilation when handling this compound.
As of now, 6-(Difluoromethoxy)nicotinaldehyde is primarily used for research purposes. Its future applications will largely depend on the outcomes of ongoing and future research studies. Given its structural similarity to nicotinaldehyde, it may have potential applications in the study of the NAD+ salvage pathway.
Product Name: | 6-(difluoroMethoxy)nicotinaldehyde |
Synonyms: | 6-(difluoroMethoxy)nicotinaldehyde;3-Pyridinecarboxaldehyde, 6-(difluoromethoxy)-;6-(Difluoromethoxy)-3-pyridinecarboxaldehyde |
CAS: | 1211577-99-9 |
MF: | C7H5F2NO2 |
MW: | 173.12 |
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Product Categories: | |
Mol File: | 1211577-99-9.mol |
6-(difluoroMethoxy)nicotinaldehyde Chemical Properties |
Boiling point | 238.2±35.0 °C(Predicted) |
density | 1.335±0.06 g/cm3(Predicted) |
storage temp. | under inert gas (nitrogen or Argon) at 2-8°C |
pka | -0.56±0.29(Predicted) |