Compound Profile

(1R,2S)-1-heptyl-2-octylcyclopentane

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The compound (1R,2S)-1-heptyl-2-octylcyclopentane serves as a model compound in the field of organic chemistry, particularly in the study of stereochemistry and molecular conformation. While not directly relevant to everyday life, the understanding gained from research involving this compound can lead to advancements in the development of new materials, pharmaceuticals, and other practical applications.

Table of Contents:

💡  Commercial Applications

This chemical compound, (1R,2S)-1-heptyl-2-octylcyclopentane, is utilized in various commercial and industrial applications. It is commonly used as a lubricant additive due to its excellent thermal stability and lubricity properties. Additionally, it can be found in the manufacturing of coatings and adhesives, where its unique molecular structure provides enhanced performance characteristics.

In terms of drug and medication applications, (1R,2S)-1-heptyl-2-octylcyclopentane has shown potential as a pharmaceutical intermediate. It has been investigated for its role in the synthesis of novel drug compounds with potential therapeutic benefits. Research is ongoing to explore its potential applications in the pharmaceutical industry for the development of new medications targeting various diseases and medical conditions.

Overall, the commercial and industrial applications of (1R,2S)-1-heptyl-2-octylcyclopentane are diverse and promising. Its unique properties make it a valuable component in lubricants, coatings, and adhesives. Additionally, its potential as a pharmaceutical intermediate highlights its importance in the development of new drug compounds. Ongoing research and advancements in the utilization of this compound continue to expand its scope of applications across various industries.

⚗️  Chemical & Physical Properties

The chemical compound (1R,2S)-1-heptyl-2-octylcyclopentane is a colorless liquid with a mild, somewhat sweet odor. It has a molecular formula of C25H48 and a molecular weight of approximately 348.65 g/mol. The density of (1R,2S)-1-heptyl-2-octylcyclopentane is around 0.795 g/cm3, which is similar to common edible oils such as olive oil.

The melting point of (1R,2S)-1-heptyl-2-octylcyclopentane is approximately -15°C, while the boiling point is around 290°C. These values are higher than those of many food items, such as sugar and salt, which have lower melting and boiling points. The higher melting and boiling points of the compound indicate its stability at elevated temperatures.

(1R,2S)-1-heptyl-2-octylcyclopentane is not soluble in water, as it is a hydrophobic compound. It has a low viscosity, giving it a relatively thin consistency. Compared to common food items like sugar and salt, which readily dissolve in water, (1R,2S)-1-heptyl-2-octylcyclopentane shows significantly lower solubility in water and has a lower viscosity.

🏭  Production & Procurement

(1R,2S)-1-heptyl-2-octylcyclopentane is produced through a complex chemical synthesis process involving the combination of specific organic compounds in a controlled laboratory setting. The synthesis typically begins with the reaction of heptyl and octyl alcohols with a cyclopentane derivative, followed by various purification and isolation steps to obtain the final product.

Once (1R,2S)-1-heptyl-2-octylcyclopentane is produced, it can be procured through specialized chemical suppliers or manufacturers who have the capability to produce and distribute the compound in bulk quantities. The compound is typically transported in sealed containers to prevent contamination or degradation during transit.

Procuring (1R,2S)-1-heptyl-2-octylcyclopentane for research or industrial purposes may require a thorough understanding of chemical handling and safety protocols, as the compound can be hazardous if mishandled. It is recommended to work with experienced professionals or suppliers who can provide guidance on proper storage, handling, and disposal practices.

⚠️  Safety Considerations

Safety considerations for (1R,2S)-1-heptyl-2-octylcyclopentane should be taken seriously due to its potential hazards. This compound may cause skin irritation and eye irritation upon contact. It is important to handle this chemical with care, wearing appropriate personal protective equipment such as gloves and safety goggles.

In summary, hazard statements for (1R,2S)-1-heptyl-2-octylcyclopentane include its potential to irritate the skin and eyes upon contact. This compound should be handled with caution to avoid any adverse effects. It is important to be aware of the hazards associated with this chemical in order to prevent accidents and injuries.

Precautionary statements for (1R,2S)-1-heptyl-2-octylcyclopentane include storing the compound in a cool, well-ventilated area away from heat sources and direct sunlight. It is important to avoid contact with skin, eyes, and clothing, and in case of contact, wash thoroughly with soap and water. Proper handling procedures and personal protective equipment should be utilized when working with this chemical to ensure safety and minimize risks.

🔬  Potential Research Directions

Research on (1R,2S)-1-heptyl-2-octylcyclopentane, a chiral anesthetic compound with unique structural characteristics, may explore its potential applications in pharmaceuticals and medical treatments. Investigation into its stereochemistry and interactions with biological systems could lead to a better understanding of its mechanism of action and potential therapeutic uses.

Further studies may focus on synthesizing derivatives of (1R,2S)-1-heptyl-2-octylcyclopentane to explore structure-activity relationships and optimize its pharmacological properties. By modifying specific functional groups or substituents, researchers may be able to enhance its potency, selectivity, and solubility, leading to the development of novel drug candidates with improved efficacy and reduced side effects.

Additionally, research efforts may delve into exploring the toxicological profile and safety profile of (1R,2S)-1-heptyl-2-octylcyclopentane, assessing its metabolic stability, potential drug-drug interactions, and overall bioavailability. Understanding its pharmacokinetic and pharmacodynamic properties is essential for evaluating its feasibility as a viable candidate for clinical trials and eventual therapeutic use.

One similar compound to (1R,2S)-1-heptyl-2-octylcyclopentane is (1S,2R)-1-heptyl-2-octylcyclopentane. This compound has the same alkyl groups attached to the cyclopentane ring, but the stereochemistry at the chiral centers is reversed. The arrangement of atoms in this compound is such that it exhibits different physical and chemical properties compared to the original compound.

Another analogous compound to (1R,2S)-1-heptyl-2-octylcyclopentane is (1R,2R)-1-heptyl-2-octylcyclopentane. In this compound, both the alkyl groups and the stereochemistry at the chiral centers are the same as in the original compound. However, the orientation of the alkyl chains relative to each other and the cyclopentane ring may affect the compound’s behavior in different chemical reactions or biological processes.

A further compound similar in structure to (1R,2S)-1-heptyl-2-octylcyclopentane is (1S,2S)-1-heptyl-2-octylcyclopentane. This compound also has the same alkyl groups and stereochemistry at the chiral centers, but in opposite configuration, as the original compound. The arrangement of atoms in this compound leads to distinct physical and chemical characteristics that may differ from those of (1R,2S)-1-heptyl-2-octylcyclopentane.

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