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Merck

Z742680

Sigma-Aldrich

SynLED Parallel Photoreactor

Sinónimos:

parallel photoreactor

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About This Item

UNSPSC Code:
12352300

AC/DC input

, universal plug set (included)
100 - 240 V AC, 50/60 Hz

feature

capacity 16  vial(s)

reaction suitability

reagent type: catalyst
reaction type: Photocatalysis

parameter

465-470 nm spectral range

General description

This newly designed photoreactor enables simple small-scale photocatalysis reaction screening ensuring high levels of consistency across reactions and between runs.

Features and Benefits

  • Bottom-lit LEDs (465-470 nm) across a 4x4 reaction block array provides consistent light intensity (130-140 lm) and angle (45°)
  • Built-in cooling fan provides consistent temperature to each parallel reaction
  • Uses 1-2 dram scintillation vials or microwave vials (O.D. of 1.7 cm or less)
  • Power supply is wall plug power supply 700mA 12 W
  • Compatible with IKA magnetic stirrer with round plate (Z645052)
  • Compatible with liquid scintillation vials (8 mL Wheaton, Z188719)

related product

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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

This review provides a summary of recent approaches in developing green methods for visible-light-mediated reactions that operate under mild conditions and avoid the need for toxic transition-metal catalysts or harsh reaction conditions.

This review provides a summary of recent approaches in developing green methods for visible-light-mediated reactions that operate under mild conditions and avoid the need for toxic transition-metal catalysts or harsh reaction conditions.

This review provides a summary of recent approaches in developing green methods for visible-light-mediated reactions that operate under mild conditions and avoid the need for toxic transition-metal catalysts or harsh reaction conditions.

This review provides a summary of recent approaches in developing green methods for visible-light-mediated reactions that operate under mild conditions and avoid the need for toxic transition-metal catalysts or harsh reaction conditions.

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