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Shanghai Bojian Biotechnology Co., Ltd

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    2nd Floor, South Elevator, Building 5, No. 239 Guanjing Road, Songjiang District, Shanghai

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Parallel light reactor

NegotiableUpdate on 05/06
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Overview

Suitable for various types of visible light catalysis research: visible light catalytic oxidation reaction, visible light catalytic reduction reaction, visible light catalytic neutral reaction

Product Details

Suitable for various types of visible light catalysis research:
·Visible light catalytic oxidation reaction
·Visible light catalytic reduction reaction
·Visible light catalyzed neutral reaction.
Reaction conditions: Catalysts (ruthenium, iridium complexes, organic dyes, etc.) and raw materials are mixed uniformly under the action of a magnetic suspension stirring device, and then reacted under the illumination of an LED light source.
Sampling method: The liquid sampling needle draws 200 μ l of liquid sample from the PTFE pad on the reaction bottle cap, uses a microporous membrane, transfers the clear liquid to a pipette, and takes 1 μ l for gas chromatography measurement. Or use TLC spot plate testing.

Widely applicable
Due to the personalized configuration and replacement of both the lamp panel and reactor, synLED-16 A Discover can be applied to photocatalytic research work in different directions and can become a pre testing method for many professional research and testing data. For example:
·Replacing traditional photochemical reactors for pollutant degradation
·Testing of photocatalytic energy and synthesis direction (parallel comparative experiments with multiple samples have been conducted by universities such as North Carolina, Peking University, and Nanjing University in the United States, and feedback has been positive)
·Drug modification: Traditional Western medicine generally has certain drug resistance, and how to develop new structural drug molecules is a major challenge in new drug development. The use of this device can quickly establish a batch of drug molecules and intermediates with unique structures, greatly improving the efficiency of new drug development.
·Small scale drug synthesis trials (parallel comparative experiments with multiple samples have been conducted at universities such as North Carolina, Peking University, and Nanjing University in the United States, with good feedback)
·Fine chemical production and research and development

scalability
·Multiple wavelength LEDs are available for selection, and Blue New Technology will provide more and more options;
·Can customize reactors related to personalized experiments;

economy
The use of LEDs can significantly reduce research time and process consumption costs, enabling laboratories with limited personnel, unstable funding, and insufficient resources to continue conducting visible light catalytic research.

bio-