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Anthranilamide Derivatives
Anthranilamide Derivatives

Anthranilamide Derivatives

MOQ : 50 Kilograms, ,

Anthranilamide Derivatives Specification

  • CAS No
  • Not Available
  • Density
  • Gram per cubic centimeter(g/cm3)
  • Purity
  • 98% Min.
  • Physical State
  • Solid
  • Shelf Life
  • 2 Years if properly stored
  • Size
  • Customized packaging
  • Boiling point
  • Not Available
  • Molecular Formula
  • Varies by Derivative (typically C8H8N2O or similar)
  • Usage
  • For R&D, Pharmaceutical Synthesis, Industrial Chemical Synthesis
  • Packaging Type
  • Fibre Drum, HDPE Drum or as required
  • Ph Level
  • Not Available
  • Flash Point
  • Not Available
  • Storage Instructions
  • Store in a cool, dry place, tightly closed container
  • Grade
  • Technical Grade
  • Type
  • Anthranilamide Derivatives
  • Application
  • Pharmaceutical Intermediates, Agrochemicals
  • Purity(%)
  • 98% Min.
 

Anthranilamide Derivatives Trade Information

  • Minimum Order Quantity
  • 50 Kilograms, ,
  • Supply Ability
  • 1 Kilograms Per Week
  • Delivery Time
  • 1 Week
 

About Anthranilamide Derivatives

Anthranilamide Derivatives

Name

CODE

2-amino,N,N-dimethyl benzamide

IA-1

2-amino,N,N-diethyl benzamide

IA-2

2-amino,N,N-dibenzyl benzamide

IA-3

2-amino,N-methyl benzamide

IA-4

2-amino,N-ethyl benzamide

IA-5

2-amino N-methyl,N-benzyl benzamide

IA-6

2-amino N-phenethyl benzamide

IA-7

2-amino N-tertiarybutyl benzamide

IA-8

2-amino N-(4-trifluoromethyl phenyl)benzamide

IA-9

2-amino N-(3-trifluoromethyl phenyl) benzamide

IA-10

2-amino N-(2-fluoro phenyl)benzamide

IA-11

2-amino N-(4-fluoro phenyl)benzamide

IA-12

2-amino N-(benzyl)benzamide

IA-13

2-amino N-( isopropyl)benzamide

IA-15

2-amino ,N,N-diisopropyl benzamide

IA-16

2-amino N-(2-chlorobenzyl )benzamide

IA-17

2-amino N-(Cyclohexyl )benzamide

IA-24

2-amino N-( 2-methyl benzyl)benzamide

IA-26

2-amino N-( 3-methyl benzyl)benzamide

IA-28

2-amino N-( 4-chloro benzyl)benzamide

IA-29

2-amino-N-[(2-methyl-5-chloro)pyridine-2-yl]benzamide

IA-30

2-amino N-( 4-bromo benzyl)benzamide

IA-31

2-amino N-( 4-methoxy benzyl)benzamide

IA-32

2-amino N-( 3-chloro phenethyl)benzamide

IA-33

2-amino N-( 4-chloro phenethyl)benzamide

IA-34

2-amino, N-(furfurylamine )benzamide

IA-37

2-amino, N-(2-tertiarybutyl phenyl)benzamide

IA-38

2-amino, N-(3-pyridyl )benzamide

IA-39

2-amino, N-(4-pyridyl)benzamide

IA-40

2-amino, N-(4-benzyloxy phenyl )benzamide

IA-41

2-amino, N-(2-aminothiazole )benzamide

IA-45

2-amino, N-(3-chloro,4-fluoro phenyl )benzamide

IA-48

2-amino, N-(di-n-butyl)benzamide

IA-49

2-amino, N-(dicyclohexyl )benzamide

IA-50

2-amino, N-(di-n-propyl )benzamide

IA-51

2-amino, (N-ethyl,N-p-tolyl )benzamide

IA-52

2-amino, (N-ethyl,N-o-tolyl )benzamide

IA-53

2-amino, (N-ethyl,N-m-tolyl )benzamide

IA-54

2-amino, N-(-methybenzyl )benzamide

IA-55

2-amino, N-(phenyl )benzamide

IA-56

2-amino, N-(o-tolyl )benzamide

IA-57

2-amino, N-(m-tolyl )benzamide

IA-58

2-amino, N-(2-chloro phenyl )benzamide

IA-59

2-amino, N-(3-chloro phenyl )benzamide

IA-60

2-amino, N-(4-chloro phenyl )benzamide

IA-61

2-amino, N-(2-ethyl phenyl )benzamide

IA-65

2-amino, N-(2-methoxy )benzamide

IA-67

2-amino, N-(4-methoxy )benzamide

IA-68

2-amino, N-(benzyl )benzamide

IA-70

2-amino, N-(p-tolyl )benzamide

IA-71

2-amino, N-(p-methyl benzyl )benzamide

IA-72

2-amino, N-(3,4-dichloro phenyl )benzamide

IA-74

2-amino, N-(naphthyl )benzamide

IA-76

2-amino, N-(2,5-dichloro phenyl )benzamide

IA-77

2-amino, N-[3,4-(methylenedioxy)phenyl]benzamide

IA-78

2-amino, N-(2,3-dichloro phenyl )benzamide

IA-80

2-amino, N-(4-isopropyl phenyl )benzamide

IA-81

2-amino, N-(2-isopropyl phenyl )benzamide

IA-82

2-amino, N-(2,4-difluoro phenyl)benzamide

IA-83

2-amino, N-(3-acetophenyl )benzamide

IA-84

2-amino, N-(4-methyl benzyl )benzamide

IA-88

2-amino, N-(2-trifluoromethyl phenyl )benzamide

IA-89

2-amino, N-(4-bromo )benzamide

IA-90

2-amino, N-(2,4-dichloro phenyl )benzamide

IA-91

2-amino, N-(2-n-propyl phenyl )benzamide

IA-92

2-amino, N-(4-n-propyl phenyl)benzamide

IA-93

2-amino, N-(3-n-propyl phenyl )benzamide

IA-94

2-amino, N-(3-ethyl phenyl )benzamide

IA-96

2-amino, N-(4-ethyl phenyl )benzamide

IA-98

2-amino, N-[(2-(2-ethyl phenyl)pyridine)]benzamide

IA99

2-amino, N-[(4-(2-ethyl phenyl)pyridine)]benzamide

IA100

2-amino, N-(2-chloro,4-methoxy phenyl )benzamide

IA101

2-amino, N-(2-pyrrolophenyl )benzamide

IA102

2-amino, N-( 2-chloro-5-methyl phenyl)benzamide

IA103

2-amino, N-(3,5-dimethyl phenyl )benzamide

IA105

2-amino, N-(2-bromo phenyl )benzamide

IA106

2-amino, N-( 3-bromo phenyl)benzamide

IA-107



Versatile Applications in Industry and Research

Anthranilamide Derivatives serve a critical role in diverse sectors. Their principal utility lies in pharmaceutical intermediate formulation, agrochemical synthesis, and as building blocks in R&D labs. These solid-state compounds are vital for industrial chemical synthesis, ensuring both precision and purity. With a minimum 98% purity, they meet strict technical-grade standards suitable for high-stakes chemical processes.


Safe Handling and Optimal Storage Recommendations

To maintain their quality and effectiveness, Anthranilamide Derivatives must be kept in tightly sealed containers, stored in cool, dry places. Adhering to these guidelines helps preserve their solid state and extends the shelf life to up to two years. Proper storage also supports compliance with safety and handling protocols essential in chemical research and manufacturing environments.

FAQs of Anthranilamide Derivatives:


Q: How are Anthranilamide Derivatives typically used in the pharmaceutical and agrochemical industries?

A: Anthranilamide Derivatives are primarily utilized as intermediates in the synthesis of pharmaceuticals and agrochemicals. They serve as essential building blocks, facilitating the creation of more complex chemical entities required in drug formulation and crop protection agent development.

Q: What is the best way to store Anthranilamide Derivatives to maintain their purity and shelf life?

A: For optimal stability, Anthranilamide Derivatives should be stored in a tightly closed container made of fibre or HDPE drum, placed in a cool and dry environment. Proper storage conditions help preserve their quality for up to two years.

Q: When should I consider using Anthranilamide Derivatives in my research or manufacturing process?

A: Consider utilizing these derivatives when your process requires high-purity intermediates for R&D projects, pharmaceutical synthesis, or agrochemical production. Their technical-grade quality ensures consistency and excellent performance in such applications.

Q: Where can I source Anthranilamide Derivatives in India?

A: These compounds are available from a range of suppliers, including distributors, exporters, manufacturers, and wholesalers throughout India. Customized packaging options and prompt delivery further facilitate your procurement requirements.

Q: What are the advantages of using 98% minimum purity Anthranilamide Derivatives?

A: A minimum 98% purity ensures the compounds are highly effective and reliable for sensitive industrial, R&D, and pharmaceutical applications, minimizing impurities that may interfere with reactions or final product quality.

Q: What is the typical physical form of Anthranilamide Derivatives, and how are they packaged?

A: Anthranilamide Derivatives commonly arrive in solid form and are packaged according to customer specifications, including fibre drums, HDPE drums, or other suitable containers for safe, secure transport and storage.

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