Titanium(IV) Isopropoxide Mediated Solution Phase Reductive Amination on an Automated Platform: Application in the Generation of Urea and Amide Libraries

Authors: Bhattacharyya S.; Fan L.; Vo L.; Labadie J.

Source: Combinatorial Chemistry & High Throughput Screening, Volume 3, Number 2, April 2000 , pp. 117-124(8)

Publisher: Bentham Science Publishers

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content

Abstract:

Amine libraries and their derivatives are important targets for high throughput synthesis because of their versatility as medicinal agents and agrochemicals. As a part of our efforts towards automated chemical library synthesis, a titanium(IV) isopropoxide mediated solution phase reductive amination protocol was successfully translated to automation on the Trident ? library synthesizer of Argonaut Technologies. An array of 24 secondary amines was prepared in high yield and purity from 4 primary amines and 6 carbonyl compounds. These secondary amines were further utilized in a split synthesis to generate libraries of ureas, amides and sulfonamides in solution phase on the Trident. The automated runs included 192 reactions to synthesize 96 ureas in duplicate and 96 reactions to synthesize 48 amides and 48 sulfonamides. A number of polymer-assisted solution phase protocols were employed for parallel work-up and purification of the products in each step.

Keywords: Titanium(IV) Isopropoxide; Mediated Solution Phase Reductive Amination; Automated Platform; Urea; 96 Ureas; Sulfonamides

Language: English

Document Type: Regular paper

DOI: 10.2174/1386207003331760

The full text electronic article is available for purchase. You will be able to download the full text electronic article after payment.

$55.10 plus tax      Refund Policy

 

OR

Back to top

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content
Share this item with others: These icons link to social bookmarking sites where readers can share and discover new web pages.
Page Help Click here for Page Help
Shopping cart
Tools
Sign in






Need to register?
Sign up here
Text size: A | A | A | A