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Z744031

365nm Light Source

Synonym(s):

Penn PhD Photoreactor M2 light

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1 ea

Available to ship TODAYfromMILWAUKEE

$1,900.00

About This Item

NACRES:
NA.22
UNSPSC Code:
12161600

$1,900.00


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product line

PennPhD

reaction suitability

reaction type: Photocatalysis, reagent type: catalyst

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Z744032Z744033Z744078
reaction suitability

reaction type: Photocatalysis, reagent type: catalyst

reaction suitability

reaction type: Photocatalysis, reagent type: catalyst

reaction suitability

reaction type: Photocatalysis, reagent type: catalyst

reaction suitability

-

product line

PennPhD

product line

PennPhD

product line

PennPhD

product line

PennPhD

General description

The 365nm LED Light Module is used with the Penn PhD Photoreactor M2 for chemists and researchers to accelerate chemical reactions using photoredox catalysis.

Features and Benefits of Penn PhD Photoreactor M2
  • Modular design allows for use with a variety of wavelengths 365nm – 450nm
  • 360 degree reflective environment maximizes surface area photon capture
  • Light shield interlock prevents user exposure to harmful light rays
  • Interactive touch screen controls reaction parameters
  • Intertek ETL, CE, and CB approved
  • User defined parameters including temperature, light intensity, fan speed and stirring
  • Auto stop, pause and reset options
  • Supports vial sizes gc, 4, 8, 20, 40 ml
  • Temp feedback using a k-type thermocouple


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Articles

Learn about the applications of chiral oxazaborolidinium ions (COBIs) as Lewis acid catalysts in different asymmetric reactions such as cyclopropanation, epoxidation, and radical reactions along with details of their catalytic action.

This article details the latest progress in synthesizing alkylsulfonyl fluorides through different approaches that utilize photoredox catalysis, electrocatalysis, transition-metal catalysis, and organocatalysis. The alkylsulfonyl fluorides thus prepared could be utilized further in sulfur(VI) fluoride exchange (SuFEx) click reactions.

Explore Nicewicz Photoredox catalysts—photoexcitable acridinium salts for efficient, metal-free anti-Markovnikov hydrofunctionalizations.

Effective Csp2- and Csp-hybridized coupling reactions established for catalysis, expanding to multi-step Csp3-coupling.

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