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Press

Why are PFAS so hard to replace?

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why are PFAS so hard to replace?

Highlight by the American Peptide Society

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aps

OxIME highlighted in Periodic, Issue 13

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periodic

The great return of mechanochemistry

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epsiloon

 

Recovery of fluoride from 'forever chemicals' could lead to circular economy for fluorine 

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nature journal logo svg

 

Breaking forever bonds

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filtration and separation magazine

 

Scientists discover a method to destroy PFAS, the "eternal" chemicals

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publico article

 

PFAS: the hope of managing and even recycling "perpetual pollutants"

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liberation article

 

Behind the Paper

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behind the paper pfas

 

Simple method converts fluorspar into fluorochemicals 

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cen nature

 

Fluorspar to fluorine chemicals without going via hazardous hydrogen fluoride

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chemistry world

 

New route to fluorochemicals: fluorspar activated in water under mild conditions

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eurek alert

 

New route to fluorochemicals: fluorspar activated in water under mild conditions

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science daily

 

Fluorochemicals Made Easy: Fluorspar in Water Route 

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mirage news

 

 

Fluorspar activated in water under mild conditions provides new route to fluorochemicals

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physorg

 

Cyclotron installation highlighted in Periodic, Issue 11

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periodic

 

Behind the Paper

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behind the paper nature

 

Photocatalytic Radiolabeling with 18F in Flow

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hepatochem

 

Oxford team leads biomimetic fluorocarbon breakthrough 

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the engineer

 

Nature inspires breakthrough achievement: Hazard-free production of fluorochemicals

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nature inspires breakt

 

Widely-used chemicals can now be made without releasing toxic gas 

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sei

 

Nature inspires breakthrough achievement: hazard-free production of fluorochemicals 

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eurek alert

 

Behind the Paper

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behind the paper science
University of Oxford

Professor Véronique Gouverneur          

University of Oxford
Chemistry Research Laboratory
12 Mansfield Road
Oxford OX1 3TA, UK

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+44 (0) 1865 275644
+44 (0) 1865 285002

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