KITALYSIS-CN
KitAlysis™ High-Throughput Buchwald-Hartwig Amination Reaction Screening Kit-Pack of 4
Sinónimos:
Amination Screening Kit, Buchwald-Hartwig Amination
About This Item
Productos recomendados
reaction suitability
reaction type: Buchwald-Hartwig Amination
reaction type: Buchwald-Hartwig Cross Coupling Reaction
reaction type: Cross Couplings
reagent type: catalyst
core: palladium
storage temp.
room temp
General description
Application
Two Solvents, Weak Base (Cs2CO3)
Download the experimental excel file here
Two Solvents, Strong Base (NaOt-Bu)
Download the experimental excel file here
One Solvent (Dioxane), Two Bases
Download the experimental excel file here
One Solvent (DMAc), Two Bases
Download the experimental excel file here
Each kit contains 4 screening sets that contain the following:
Each customizable screening kit contains
- 12 X 2 pre-weighed catalysts (1 μmol) in individual microvials with magnetic stir bars
- 2 bases (NaOt-Bu and Cs2CO3)
- 2 degassed anhydrous solvents (dioxane and DMAc) in ampules
- 2 substrate reaction vials with stir bars
- 1 internal standard
- 4 reaction block replacement films
Best when used with KitAlysis Benchtop Inertion Box and 24-well Reaction Block (sold separately).
Features and Benefits
- Designed and tested by synthetic chemists
- Easily run 24-microscale reaction in parallel
- 10 μmol reactions with 1 μmol catalyst, 3 equiv. base, 0.1 M concentration
- Customizable Excel Template for quick calculations and easy incorporation into electronic laboratory notebooks
Legal Information
Solo componentes del kit
- SnapIT Ampule Opener, Regular, for 1-2ml, 5-10ml, 10-15ml ampoules 1 EA
Los componentes del kit también están disponibles por separado
- 900634N,N-Dimethylacetamide, anhydrous, ZerO2®, 99.8% 8 mLSDS
- 9006401,4-Dioxane, anhydrous, ZerO2®, 99.8% 8 mLSDS
- 702706Sodium tert-butoxide solution, 2 M in THF, ZerO2® 4 mLSDS
- 747130Josiphos SL-J009-1 Pd G3 5 µmolSDS
- 753009SPhos Pd G2 5 µmolSDS
- 753246RuPhos Pd G2 5 µmolSDS
- 756482P(t-Bu)3 Pd G2 5 µmolSDS
Optional
related product
signalword
Danger
Hazard Classifications
Acute Tox. 4 Dermal - Acute Tox. 4 Inhalation - Aquatic Acute 1 - Aquatic Chronic 1 - Carc. 1B - Eye Dam. 1 - Repr. 1B - Self-heat. 1 - Skin Corr. 1B - STOT RE 2 Oral - STOT SE 3
target_organs
Central nervous system, Kidney,Adrenal gland,Testes, Respiratory system
supp_hazards
Storage Class
4.2 - Pyrophoric and self-heating hazardous materials
flash_point_f
-4.0 °F - closed cup
flash_point_c
-20 °C - closed cup
Certificados de análisis (COA)
Busque Certificados de análisis (COA) introduciendo el número de lote del producto. Los números de lote se encuentran en la etiqueta del producto después de las palabras «Lot» o «Batch»
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Artículos
KitAlysis High-Throughput Screening Kits provide solution to efficiently identify or optimize suitable catalytic reaction conditions. Chemist can rapidly run 24 unique micro scale reactions in parallel with tailored conditions.
Materials Included in your KITALYSIS-24PD-2PK High-Throughput Screening Kit
Preformed catalysts in the kit are stable but become air-sensitive when activated; Schlenk technique aids scale-up.
Protocolos
Protocol for the KitAlysis™ Buchwald-Hartwig Amination Reaction Screening Kit
Solutions & slurries to make: Go to the online user set-up page to enter molecular weights into the downloadable excel file.
Catalyst screening kits, KitAlysis™, and TLC-MS analysis enable high-throughput synthesis and analysis for efficient reactions.
KitAlysis™ Cu C-N (Buchwald-Hartwig) cross-coupling high-throughput screening kit. Detailed Set-Up User Guide and a downloadable excel file for calculations.
Contenido relacionado
Solutions & slurries to make: Go to the online user set-up page to enter molecular weights into the downloadable excel file.
El diseño y la optimización de reacciones químicas en la síntesis orgánica tiene como objetivo alterar con precisión parámetros de la reacción para conseguir resultados óptimos en la búsqueda de vías hacia moléculas específicas.
Chemical reaction design and optimization in organic synthesis aims to precisely alter reaction parameters to achieve optimum results in finding pathways to target molecules.
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