Light-driven method puts notoriously reactive hydrogen atoms to work for chemical synthesis

Researchers have developed a light-driven method to generate and utilize highly reactive single hydrogen atoms for chemical synthesis. This breakthrough allows chemists to perform reactions under mild conditions without the need for metals.
Why it matters
This discovery could significantly improve the efficiency and sustainability of chemical manufacturing processes.
edited by Sadie Harley , reviewed by Robert Egan
This article has been reviewed according to Science X's editorial process and policies . Editors have highlighted the following attributes while ensuring the content's credibility:
Add to Preferred Sources The photoreactor in action. Credit: Lea Neubauer/MPIKG Hydrogen is the simplest element in the periodic table, consisting of just one proton and one electron. In chemistry, however, the smallest of atoms is anything but simple. First produced by Nobel laureate Irving Langmuir over a century ago, single hydrogen atoms (H•) are so reactive that they are almost impossible to prepare and use.
In an international collaborative effort, researchers at the Max Planck Institute of Colloids and Interfaces, University College London and Imperial College London have found a solution to this problem. Using light, they generate hydrogen atoms under mild conditions and use them to reduce organic molecules without metals.
Get smarter about the news
Sign up free for a feed built around what you actually care about, Dive Deeper research on any story, and the full text of every article.
Create free accountAlready have an account? Sign in