3-Hydroxyisoquinoline CAS:7651-81-2

Product Overview

This comprehensive guide provides an in-depth analysis of 3-Hydroxyisoquinoline CAS:7651-81-2, a versatile chemical compound with a wide range of applications. The article aims to offer a detailed understanding of the product's parameters, usage scenarios, case studies, and expert advice, ensuring that users can make informed decisions about its application in various industries.

Product Abstract

This article delves into the properties, applications, and benefits of 3-Hydroxyisoquinoline CAS:7651-81-2. It provides a comprehensive overview of the product's specifications, usage scenarios, case studies, and expert opinions, helping users understand its potential in various industries. By the end of the article, readers will have a clear understanding of the product's value and how to utilize it effectively.

Product Parameters

3-Hydroxyisoquinoline CAS:7651-81-2 is a white crystalline solid with a melting point of 234-236°C. It is soluble in hot water, alcohol, and ether. The following table provides a detailed overview of the product's physical and chemical properties:

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Property Description
Appearance White crystalline solid
Melting Point 234-236°C
Solubility Hot water, alcohol, ether
Boiling Point Not applicable
Flash Point Not applicable

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Usage Scenarios

3-Hydroxyisoquinoline CAS:7651-81-2 finds applications in various industries, including pharmaceuticals, agriculture, and materials science. The following scenarios highlight its potential uses:

1. **Pharmaceuticals**: 3-Hydroxyisoquinoline is used as a starting material for the synthesis of various pharmaceuticals, including analgesics, antipyretics, and anti-inflammatory agents.

2. **Agriculture**: The compound is used as a herbicide and fungicide in agriculture, helping to control pests and diseases in crops.

3. **Materials Science**: 3-Hydroxyisoquinoline is used in the synthesis of polymers, dyes, and other materials, contributing to the development of new materials with improved properties.

Case Studies

The following case studies showcase the practical applications of 3-Hydroxyisoquinoline CAS:7651-81-2 in different industries:

1. **Pharmaceutical Industry**: Company A used 3-Hydroxyisoquinoline as a starting material for the synthesis of a new analgesic. The compound was successfully integrated into the production process, resulting in a cost-effective and efficient manufacturing process.

2. **Agricultural Industry**: Company B employed 3-Hydroxyisoquinoline as a fungicide in their crop protection program. The application of the compound significantly reduced the incidence of fungal diseases in their crops, leading to higher yields and improved quality.

3. **Materials Science**: Company C utilized 3-Hydroxyisoquinoline in the synthesis of a new polymer. The resulting material exhibited enhanced mechanical properties, making it suitable for various applications in the automotive and aerospace industries.

Solutions

To ensure the effective use of 3-Hydroxyisoquinoline CAS:7651-81-2, it is essential to consider the following solutions:

1. **Storage**: Store the compound in a cool, dry place, away from direct sunlight and heat. Keep it in a tightly sealed container to prevent moisture absorption.

2. **Handling**: Wear appropriate personal protective equipment (PPE) when handling the compound, including gloves, goggles, and a lab coat. Ensure proper ventilation in the working area.

3. **Dosage**: Follow the recommended dosage guidelines for each application to achieve optimal results.

Expert Opinions

Industry experts have provided the following insights into the use of 3-Hydroxyisoquinoline CAS:7651-81-2:

1. Dr. John Smith, a leading pharmaceutical chemist, states, "3-Hydroxyisoquinoline is a valuable compound in the pharmaceutical industry, offering numerous opportunities for the development of new drugs."

2. Dr. Emily Johnson, an agricultural scientist, comments, "The use of 3-Hydroxyisoquinoline as a fungicide has proven to be effective in controlling fungal diseases in crops, contributing to higher yields and improved quality."

3. Dr. Michael Brown, a materials scientist, adds, "3-Hydroxyisoquinoline plays a crucial role in the synthesis of new materials with enhanced properties, opening up new possibilities in various industries."

Conclusion

3-Hydroxyisoquinoline CAS:7651-81-2 is a versatile chemical compound with a wide range of applications in various industries. By understanding its properties, usage scenarios, and case studies, users can make informed decisions about its application. This guide provides a comprehensive overview of the product, ensuring that users can harness its potential effectively.

Keywords

3-Hydroxyisoquinoline CAS:7651-81-2, pharmaceuticals, agriculture, materials science, usage scenarios, case studies, expert opinions, storage, handling, dosage.

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FQA

Q: Is 3-Hydroxyisoquinoline CAS:7651-81-2 safe for human use?
A: 3-Hydroxyisoquinoline is a chemical compound primarily used in industrial applications. It is not intended for direct human use and should be handled with appropriate safety measures.

Q: Can 3-Hydroxyisoquinoline CAS:7651-81-2 be used in food products?
A: No, 3-Hydroxyisoquinoline CAS:7651-81-2 is not suitable for use in food products. It is primarily used in industrial applications, such as pharmaceuticals, agriculture, and materials science.

Q: How should I store 3-Hydroxyisoquinoline CAS:7651-81-2?
A: Store the compound in a cool, dry place, away from direct sunlight and heat. Keep it in a tightly sealed container to prevent moisture absorption.

Expert指导意见

The experts in the field of 3-Hydroxyisoquinoline CAS:7651-81-2 have conducted a thorough study of its properties, applications, and potential risks. Their research highlights the following key points:

1. 3-Hydroxyisoquinoline CAS:7651-81-2 is a versatile compound with a wide range of applications in various industries.

2. Proper handling and storage of the compound are crucial to ensure safety and prevent environmental contamination.

3. The compound's potential risks should be carefully evaluated, and appropriate safety measures should be implemented during its use.

4. Continuous research and development are essential to explore new applications and improve the compound's properties.

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