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Tricyclic Derivatives
Tricyclic Derivatives

Tricyclic Derivatives

MOQ : 50 Kilograms, ,

Tricyclic Derivatives Specification

  • Shelf Life
  • 24 months
  • Size
  • Custom packaging
  • Flash Point
  • Not determined
  • Physical State
  • Solid
  • Boiling point
  • Not available
  • Density
  • Gram per cubic centimeter(g/cm3)
  • Molecular Formula
  • C17H15N3O2
  • Molecular Weight
  • 285.34 g/mol
  • Usage
  • Synthesis and research applications
  • Packaging Type
  • HDPE Drum/Fiber Drum
  • Purity
  • > 98%
  • Storage Instructions
  • Store in a cool, dry place, tightly closed container
  • Grade
  • Pharmaceutical Grade
  • Type
  • Tricyclic Derivatives
  • Application
  • Pharmaceutical intermediates
  • Purity(%)
  • > 98%
 

Tricyclic Derivatives Trade Information

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

About Tricyclic Derivatives

Tricyclic Derivatives

IUPAC NAME

CODE

11-Chloro dibenzo(b,f)oxazepine

TO-1

11-(Glycyl-N-yl) dibenzo(b,f)oxazepine

TO-2

11-(Piperazine-N-yl) dibenzo(b,f)oxazepine

TO-3

11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)oxazepine

TO-4

8,11-dichloro dibenzo(b,f)oxazepine

TO-5

2,11-dichloro dibenzo(b,f)oxazepine

TO-6

2-methoxy,11-Chloro dibenzo(b,f)oxazepine

TO-7

2,8-dichloro-11-(Glycyl-N-yl) dibenzo(b,f)oxazepine

TO-8

2,8-dichloro-11(-piperazine-N-yl) dibenzo(b,f)oxazepine

TO-9

2,8-dichloro-11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)oxazepine

TO-10

11-Chloro dibenzo(b,f)thiazepine

TS-1

11-(Glycyl-N-yl) dibenzo(b,f)thiazepine

TS-2

11-(Piperazine-N-yl) dibenzo(b,f)thiazepine

TS-3

11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)thizepine

TS-4

8,11-dichloro dibenzo(b,f)thiazepine

TS-5

2,11-dichloro dibenzo(b,f)thiazepine

TS-6

2-methoxy,11-Chloro dibenzo(b,f)thiazepine

TS-7

2,8-dichloro-11-(Glycyl-N-yl) dibenzo(b,f)thiazepine

TS-8

2,8-dichloro-11(-piperazine-N-yl) dibenzo(b,f)thiazepine

TS-9

2,8-dichloro-11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)thiazepine

TS-10

11-Chloro dibenzo(b,f)diazepine

TN-1

11-(Glycyl-N-yl) dibenzo(b,f)diazepine

TN-2

11-(Piperazine-N-yl) dibenzo(b,f)diazepine

TN-3

11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)diazepine

TN-4

8,11-dichloro dibenzo(b,f)diazepine

TN-5

2,11-dichloro dibenzo(b,f)diazepine

TN-6

2-methoxy,11-Chloro dibenzo(b,f)diazepine

TN-7

2,8-dichloro-11-(Glycyl-N-yl) dibenzo(b,f)diazepine

TN-8

2,8-dichloro-11(-piperazine-N-yl) dibenzo(b,f)diazepine

TN-9

2,8-dichloro-11-(1,2-Diaminoethane-N-yl) dibenzo(b,f)diazepine

TN-10



Pharmaceutical-Grade Quality

Our tricyclic derivatives maintain an exceptional purity level exceeding 98%, ensuring reliable results in pharmaceutical synthesis and research. Each batch undergoes rigorous quality control, making them suitable for use in critical pharmaceutical processes and laboratory applications. These compounds are trusted by professionals seeking high-grade intermediates for consistent outcomes.


Flexible Packaging and Safe Storage

To cater to various operational needs, we offer custom packaging in HDPE and fiber drums. Maintaining product integrity is paramountstore the derivatives in a cool, dry environment within a tightly sealed container. This safeguards the compounds stability and enables a full 24-month shelf life.


Versatile Applications in Synthesis

Owing to their high purity and dependable characteristics, these tricyclic derivatives are widely utilized as intermediates for synthesizing a range of pharmaceutical compounds. Researchers and manufacturers rely on their stability and effectiveness for experimental and commercial production alike, promoting innovation and efficiency in drug development.

FAQs of Tricyclic Derivatives:


Q: How should tricyclic derivatives be stored to preserve their quality?

A: For optimal stability, store the tricyclic derivatives in a tightly closed container in a cool, dry place. This helps ensure the compound retains its efficacy and purity for the full 24-month shelf life.

Q: What is the main application of these tricyclic derivatives?

A: These derivatives are primarily used as pharmaceutical intermediates, serving as crucial components during the synthesis and research phases of drug development.

Q: When is it advisable to use tricyclic derivatives with purity above 98%?

A: High-purity tricyclic derivatives (purity >98%) should be used when precise and reliable results are essential, especially in pharmaceutical synthesis and research where impurities can affect outcomes.

Q: Where are these pharmaceutical-grade tricyclic derivatives available?

A: We distribute, export, import, manufacture, retail, supply, trade, and wholesale these derivatives throughout India, making them accessible for a variety of pharmaceutical and research needs.

Q: What is the recommended process for handling and packaging?

A: Handle the product in accordance with standard laboratory safety procedures. Packaging is provided in HDPE or fiber drums, with customization to meet client specifications, ensuring safe and convenient transport and storage.

Q: How can using these tricyclic derivatives benefit pharmaceutical research and production?

A: Their high purity and consistent quality guarantee reliable performance, supporting precise synthesis and innovative discovery in pharmaceutical science.

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