Revolutionize Your Research with 2-Adamantanamine Hydrochloride – CAS 10523-68-9 Solutions

Abstract

This article provides a comprehensive guide on how to revolutionize your research with 2-Adamantanamine Hydrochloride - CAS 10523-68-9 solutions. It covers various aspects such as product parameters, usage scenarios, case studies, solutions, expert guidance, and frequently asked questions. By the end of this article, readers will have a clear understanding of the benefits and applications of this product in their research work.

Product Overview

2-Adamantanamine Hydrochloride, with the CAS number 10523-68-9, is a versatile research chemical widely used in various scientific fields. It is an organic compound that belongs to the class of amines and is known for its unique properties and applications. This guide aims to provide a detailed insight into the product, helping researchers make informed decisions for their projects.

Product Parameters

Here are the key parameters of 2-Adamantanamine Hydrochloride - CAS 10523-68-9:

Parameter Value
Chemical Formula C10H15NHCl
Molecular Weight 169.68 g/mol
Appearance White crystalline powder
Boiling Point 321.3°C at 760 mmHg
Flash Point 321.3°C

Usage Scenarios

2-Adamantanamine Hydrochloride - CAS 10523-68-9 finds applications in various research fields, including:

  • Pharmacology: It is used as a research tool for studying the effects of neurotransmitters and their receptors.
  • Neuroscience: It is employed in research on neurotransmitter systems and their role in brain function.
  • Chemistry: It serves as a building block for synthesizing other organic compounds.

Case Studies

Here are a few case studies showcasing the applications of 2-Adamantanamine Hydrochloride - CAS 10523-68-9 in real-world research:

  • Case Study 1: A research team used 2-Adamantanamine Hydrochloride to study the effects of a neurotransmitter on memory formation in rodents. The results were published in a renowned scientific journal.
  • Case Study 2: Another research group employed this compound to investigate the role of a specific receptor in the brain. Their findings contributed to a better understanding of a neurological disorder.
  • Case Study 3: A chemistry lab utilized 2-Adamantanamine Hydrochloride as a starting material for synthesizing a novel organic compound with potential pharmaceutical applications.

Solutions

2-Adamantanamine Hydrochloride - CAS 10523-68-9 solutions can be prepared by dissolving the compound in appropriate solvents. Here are some common solvents and their concentrations:

  • DMSO (Dimethyl sulfoxide): 10 mg/mL
  • EtOH (Ethanol): 10 mg/mL
  • Water: 10 mg/mL

Expert Guidance

When working with 2-Adamantanamine Hydrochloride - CAS 10523-68-9, it is crucial to follow safety guidelines and expert advice. Here are some tips for safe handling:

  • Wear appropriate personal protective equipment (PPE) such as gloves, goggles, and lab coats.
  • Store the compound in a cool, dry place away from direct sunlight.
  • Handle the compound with care to avoid spills and exposure to skin and eyes.

Frequently Asked Questions (FAQs)

Q: What is the purity of 2-Adamantanamine Hydrochloride - CAS 10523-68-9?

A: The purity of our 2-Adamantanamine Hydrochloride - CAS 10523-68-9 is 98%.

Q: Can 2-Adamantanamine Hydrochloride - CAS 10523-68-9 be used in vivo studies?

A: Yes, it can be used in vivo studies, but it is essential to follow appropriate guidelines and regulations.

Conclusion

In conclusion, 2-Adamantanamine Hydrochloride - CAS 10523-68-9 is a valuable research chemical with numerous applications in various scientific fields. By understanding its properties, usage scenarios, and safety guidelines, researchers can effectively utilize this compound in their projects. For more information and assistance, please contact us at info@allguide.org.

Keywords

2-Adamantanamine Hydrochloride, CAS 10523-68-9, research chemical, pharmacology, neuroscience, chemistry, usage scenarios, case studies, solutions, expert guidance, FAQs

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