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Merck
CN

938750

Sigma-Aldrich

GPhos ChemBeads

new

别名:

(3-(tert-Butoxy)-2′,6′-diisopropyl-6-methoxy-[1,1′-biphenyl]-2-yl)dicyclohexylphosphane ChemBeads

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About This Item

经验公式(希尔记法):
C35H53O2P
分子量:
536.77
MDL编号:
UNSPSC代码:
12352100

形式

solid

质量水平

组成

loading of catalyst, 4-6 wt. %

反应适用性

reaction type: Cross Couplings
reagent type: catalyst
reagent type: ligand

mp

230-233 °C

官能团

phosphine

SMILES字符串

CC(C(C=CC=C1C(C)C)=C1C2=C(OC)C=CC(OC(C)(C)C)=C2P(C3CCCCC3)C4CCCCC4)C

InChI

1S/C35H53O2P/c1-24(2)28-20-15-21-29(25(3)4)32(28)33-30(36-8)22-23-31(37-35(5,6)7)34(33)38(26-16-11-9-12-17-26)27-18-13-10-14-19-27/h15,20-27H,9-14,16-19H2,1-8H3

一般描述

GPhos is a Buchwald-type ligand used in various cross-coupling reactions.

应用

GPhos is a dialkylbiaryl monophosphine ligand developed by the Buchwald group for aryl amination reactions. The GPhos Pd oxidative addition complex (OAC) enables room temperature C-N couplings with complex substrates at higher efficiency than previously developed ligands.

Learn more about Buchwald Phosphine Ligands

For general uses, product is also available in powdered form (918008)

特点和优势

ChemBeads are chemical coated glass beads. ChemBeads offer improved flowability and chemical uniformity perfect for automated solid dispensing and high-throughput experimentation. The method of creating ChemBeads uses no other chemicals or surfactants allowing the user to accurately dispense sub-milligram amounts of chemical.

相关产品

产品编号
说明
价格

储存分类代码

13 - Non Combustible Solids

WGK

WGK 3

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

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分析证书(COA)

Lot/Batch Number

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访问文档库

Noah P Tu et al.
Angewandte Chemie (International ed. in English), 58(24), 7987-7991 (2019-03-21)
Technologies that enable rapid screening of diverse reaction conditions are of critical importance to methodology development and reaction optimization, especially when molecules of high complexity and scarcity are involved. The lack of a general solid dispensing method for chemical reagents
Ana L Aguirre et al.
Chemistry (Weinheim an der Bergstrasse, Germany), 27(51), 12981-12986 (2021-07-08)
High-throughput experimentation (HTE) methods are central to modern medicinal chemistry. While many HTE approaches to C-N and Csp2 -Csp2 bonds are available, options for Csp2 -Csp3 bonds are limited. We report here how the adaptation of nickel-catalyzed cross-electrophile coupling of

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