Optically Controlled Recovery and Recycling of Homogeneous Organocatalysts Enabled by Photoswitches

Author:

Qiu Qianfeng1,Sun Zhenhuan1,Joubran Danielle1,Li Xiang1,Wan Joshua1,Schmidt‐Rohr Klaus1,Han Grace G. D.1ORCID

Affiliation:

1. Department of Chemistry Brandeis University 415 South Street Waltham MA 02453 USA

Abstract

AbstractWe address a critical challenge of recovering and recycling homogeneous organocatalysts by designing photoswitchable catalyst structures that display a reversible solubility change in response to light. Initially insoluble catalysts are UV‐switched to a soluble isomeric state, which catalyzes the reaction, then back‐isomerizes to the insoluble state upon completion of the reaction to be filtered and recycled. The molecular design principles that allow for the drastic solubility change over 10 times between the isomeric states, 87 % recovery by the light‐induced precipitation, and multiple rounds of catalyst recycling are revealed. This proof of concept will open up opportunities to develop highly recyclable homogeneous catalysts that are important for the synthesis of critical compounds in various industries, which is anticipated to significantly reduce environmental impact and costs.

Funder

Division of Materials Research

Alfred P. Sloan Foundation

Air Force Office of Scientific Research

Directorate for Mathematical and Physical Sciences

Publisher

Wiley

Subject

General Chemistry,Catalysis

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