Potassium Cyanate for Synthesis 97.0% | 195425 | CDH

Home - Potassium Cyanate for Synthesis 97.0% | 195425 | CDH

Sale!

Potassium Cyanate for Synthesis 97.0% | 195425 | CDH

High-purity Potassium Cyanate with 97.0% grade for chemical synthesis. Essential for lab applications requiring precise reactivity.

Category Brand:

Original price was: ₹1,998.00.Current price is: ₹1,798.00.

Description

Specifications Table

Product Name – Potassium Cyanate for Synthesis 97.0%
Quantity/Pack Size – 500 gm
Form – Powder
Grade – 97.0%
Application – Chemical synthesis, laboratory use

Product Overview

Potassium Cyanate for Synthesis 97.0% is a high-purity chemical compound widely used in laboratory settings for various synthesis reactions. This grade ensures reliable performance in chemical processes, making it an essential reagent for researchers and educators. The compound is carefully processed to maintain its purity and reactivity, ensuring consistent results in experimental setups. Its precise formulation supports accurate measurements and controlled reactions, making it ideal for applications requiring high-grade chemical inputs. The powder form allows for easy handling and integration into synthesis protocols. Trusted by professionals, this Potassium Cyanate is a dependable choice for lab-grade applications.

FAQs

1. What is the primary use of Potassium Cyanate in labs?

Potassium Cyanate is primarily used in chemical synthesis reactions, particularly in organic and inorganic chemistry labs.

2. Is this product suitable for academic research?

Yes, this Potassium Cyanate is ideal for academic research due to its high purity and reliable performance.

3. Can this be used in industrial applications?

While primarily lab-grade, its high purity may also suit small-scale industrial synthesis.

4. How should Potassium Cyanate be stored?

Store in a cool, dry place away from moisture and incompatible substances.

5. What alternatives exist for Potassium Cyanate?

Alternatives include Sodium Cyanate or other cyanate salts, depending on the specific reaction requirements.