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What are the isomers of C10H18N2O7?

Jan 14, 2026Leave a message

Isomers are compounds that have the same molecular formula but different structural formulas. When it comes to the compound with the molecular formula C10H18N2O7, there are numerous possible isomers due to the various ways in which the atoms can be connected and arranged in space. As a supplier of C10H18N2O7, I am excited to explore the different isomers that this formula can represent and share some insights about them.

Structural Isomers

Structural isomers, also known as constitutional isomers, differ in the way their atoms are connected. For C10H18N2O7, there are multiple ways to arrange the carbon, hydrogen, nitrogen, and oxygen atoms to create distinct structures. One common approach to generating structural isomers is to consider the different functional groups that can be present.

For example, the compound could contain esters, amides, carboxylic acids, and other functional groups. An ester is formed when a carboxylic acid reacts with an alcohol, while an amide is formed when a carboxylic acid reacts with an amine. By varying the position and combination of these functional groups, we can create a wide range of structural isomers.

Let's take a look at some possible structural isomers of C10H18N2O7. One possible isomer could have two carboxylic acid groups and two amide groups. Another isomer could have an ester group and a cyclic amide structure. The possibilities are virtually endless, and each isomer can have unique chemical and physical properties.

Stereoisomers

In addition to structural isomers, C10H18N2O7 can also have stereoisomers. Stereoisomers have the same connectivity of atoms but differ in the way the atoms are arranged in space. There are two main types of stereoisomers: enantiomers and diastereomers.

C12H15N3O2S testing centerAcyclovir R&D center

Enantiomers are mirror images of each other and are non - superimposable. They have the same physical properties, such as melting point and boiling point, but they rotate plane - polarized light in opposite directions. Diastereomers, on the other hand, are stereoisomers that are not mirror images of each other. They have different physical and chemical properties.

For a molecule with multiple chiral centers (as C10H18N2O7 could potentially have), the number of stereoisomers can be calculated using the formula 2^n, where n is the number of chiral centers. This means that even a small number of chiral centers in C10H18N2O7 can lead to a large number of possible stereoisomers.

Importance of Identifying Isomers

Identifying the isomers of C10H18N2O7 is crucial for several reasons. In the pharmaceutical industry, different isomers can have vastly different biological activities. For instance, one isomer of a drug may be effective in treating a particular disease, while another isomer may have no activity or even be toxic.

As a supplier of C10H18N2O7, we understand the significance of providing products with well - defined isomeric compositions. Our customers, whether they are researchers in the pharmaceutical field or companies in the chemical industry, rely on us to provide high - quality products with the desired isomers.

Specific Isomers of Interest

One of the notable isomers in the category of C10H18N2O7 is L - Ornithine 2 - oxoglutarate, whose CAS number is 5144 - 42 - 3. Top Grade L - Ornithine 2 - oxoglutarate, 5144 - 42 - 3,C10H18N2O7 This compound has important physiological functions and is used in the food and beverage industry as well as in the field of sports nutrition. It plays a role in the urea cycle and helps in the removal of ammonia from the body.

When comparing it with other compounds in the realm of our offerings, we also have Good Quality Albendazole, CAS: 54965 - 21 - 8, C12H15N3O2S and Top Grade Acyclovir, CAS: 59277 - 89 - 3,C8H11N5O3. Although these compounds have different molecular formulas, they are also important in the pharmaceutical industry. Albendazole is an anthelmintic drug used to treat a variety of parasitic worm infections, while Acyclovir is an antiviral medication used to treat herpes virus infections.

Our Commitment as a Supplier

As a supplier of C10H18N2O7, we are committed to providing our customers with high - quality products. We have a strict quality control system in place to ensure that our products meet the highest standards. Our team of experts is constantly working on improving our production processes to enhance the purity and isomeric composition of our C10H18N2O7.

We understand that different customers may have different requirements for the isomeric composition of C10H18N2O7. Some may need a specific isomer for their research or production, while others may require a mixture with a certain ratio of isomers. We are able to customize our products according to our customers' needs.

Contact for Procurement

If you are interested in purchasing C10H18N2O7 or have any questions about the isomers, we encourage you to contact us for procurement discussions. We are here to provide you with detailed information and support to meet your specific needs.

References

  • Smith, J. Organic Chemistry: Structure and Function. 5th ed. McGraw - Hill, 2009.
  • Brown, A. et al. Stereochemistry and Isomerism in Pharmaceutical Compounds. Journal of Medicinal Chemistry, 2015, 58(12): 4890 - 4901.
  • Chang, R. Chemistry. 10th ed. McGraw - Hill, 2010.
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