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Featured researches published by Darren S. Lee.


Green Chemistry | 2017

A laboratory-scale annular continuous flow reactor for UV photochemistry using excimer lamps for discrete wavelength excitation and its use in a wavelength study of a photodecarboxlyative cyclisation

Erica N. DeLaney; Darren S. Lee; Luke D. Elliott; Jing Jin; Kevin I. Booker-Milburn; Martyn Poliakoff; Michael W. George

This paper describes a new annular reactor for continuous UV photochemistry, which uses easily interchangeable excimer lamps of different wavelengths. The reactor has narrow clearance to form thin films of material for efficient irradiation of molecules. Its use is demonstrated by investigating the effect of discrete wavelength lamps (222, 282 and 308 nm) on the reaction of potassium N-phthalimidobutanoate 1. The ability of the reactor to be integrated into multistep processes is illustrated by combining it with an Amberlyst scavenger and a solid acid catalyst, NbOPO4, to access a second product 3 that is obtained in a single telescoped process. The tricyclic scaffold in 3 is a motif found in several biologically active compounds and has possibilities as a synthon for new pharmaceutical products.


Organic Process Research & Development | 2017

Continuous Photo-Oxidation in a Vortex Reactor: Efficient Operations Using Air Drawn from the Laboratory

Darren S. Lee; Zacharias Amara; Charlotte A. Clark; Z. Xu; B. Kakimpa; Herve Morvan; S.J. Pickering; Martyn Poliakoff; Michael W. George

We report the construction and use of a vortex reactor which uses a rapidly rotating cylinder to generate Taylor vortices for continuous flow thermal and photochemical reactions. The reactor is designed to operate under conditions required for vortex generation. The flow pattern of the vortices has been represented using computational fluid dynamics, and the presence of the vortices can be easily visualized by observing streams of bubbles within the reactor. This approach presents certain advantages for reactions with added gases. For reactions with oxygen, the reactor offers an alternative to traditional setups as it efficiently draws in air from the lab without the need specifically to pressurize with oxygen. The rapid mixing generated by the vortices enables rapid mass transfer between the gas and the liquid phases allowing for a high efficiency dissolution of gases. The reactor has been applied to several photochemical reactions involving singlet oxygen (1O2) including the photo-oxidations of α-terpinene and furfuryl alcohol and the photodeborylation of phenyl boronic acid. The rotation speed of the cylinder proved to be key for reaction efficiency, and in the operation we found that the uptake of air was highest at 4000 rpm. The reactor has also been successfully applied to the synthesis of artemisinin, a potent antimalarial compound; and this three-step synthesis involving a Schenk-ene reaction with 1O2, Hock cleavage with H+, and an oxidative cyclization cascade with triplet oxygen (3O2), from dihydroartemisinic acid was carried out as a single process in the vortex reactor.


Beilstein Journal of Organic Chemistry | 2017

Continuous N-alkylation reactions of amino alcohols using γ-Al2O3 and supercritical CO2: unexpected formation of cyclic ureas and urethanes by reaction with CO2

Emilia S. Streng; Darren S. Lee; Michael W. George; Martyn Poliakoff

The use of γ-Al2O3 as a heterogeneous catalyst in scCO2 has been successfully applied to the amination of alcohols for the synthesis of N-alkylated heterocycles. The optimal reaction conditions (temperature and substrate flow rate) were determined using an automated self-optimising reactor, resulting in moderate to high yields of the target products. Carrying out the reaction in scCO2 was shown to be beneficial, as higher yields were obtained in the presence of CO2 than in its absence. A surprising discovery is that, in addition to cyclic amines, cyclic ureas and urethanes could be synthesised by incorporation of CO2 from the supercritical solvent into the product.


Organic Process Research & Development | 2016

A Simple and Versatile Reactor for Photochemistry

Charlotte A. Clark; Darren S. Lee; S.J. Pickering; Martyn Poliakoff; Michael W. George


Organic Process Research & Development | 2015

Investigating Scale-Up and Further Applications of DABAL-Me3 Promoted Amide Synthesis

Darren S. Lee; Zacharias Amara; Martyn Poliakoff; Thomas Harman; Gary Reid; Barrie Rhodes; Steve Brough; Thomas McInally; Simon Woodward


European Journal of Organic Chemistry | 2015

1,4‐Addition of TMSCCl3 to (E)‐Fumaric Esters and Thermal Rearrangement of the Adducts to 3,4‐Dichloropent‐2‐enedioates

Benoit Wahl; Darren S. Lee; Simon Woodward


Organic Process Research & Development | 2018

UV PhotoVap: Demonstrating How a Simple and Versatile Reactor Based on a Conventional Rotary Evaporator Can Be Used for UV Photochemistry

Charlotte A. Clark; Darren S. Lee; S.J. Pickering; Martyn Poliakoff; Michael W. George


ChemPhotoChem | 2018

Front Cover: Photooxidation of Fulvenes in a Continuous Flow Photoreactor using Carbon Dioxide as a Solvent (ChemPhotoChem 7/2018)

Lingqiao Wu; Darren S. Lee; Hamza Boufroura; Martyn Poliakoff; Michael W. George


ChemPhotoChem | 2018

Photooxidation of Fulvenes in a Continuous Flow Photoreactor using Carbon Dioxide as a Solvent

Lingqiao Wu; Darren S. Lee; Hamza Boufroura; Martyn Poliakoff; Michael W. George


Tetrahedron | 2017

Combining engineering and chemistry for the selective continuous production of four different oxygenated compounds by photo-oxidation of cyclopentadiene using liquid and supercritical CO2 as solvents

Lingqiao Wu; Zahra Abada; Darren S. Lee; Martyn Poliakoff; Michael W. George

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Michael W. George

The University of Nottingham Ningbo China

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Lingqiao Wu

University of Nottingham

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S.J. Pickering

University of Nottingham

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Simon Woodward

University of Nottingham

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B. Kakimpa

University of Nottingham

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