PAHs tagged posts

Series of reactions reveals how complex carbon chemistry can begin in frigid space

Chemists uncover how unthinkable reactions occur in unimaginable conditions
Credit: The Journal of Physical Chemistry A (2026). DOI: 10.1021/acs.jpca.6c03215

Before there was Earth, there was chemistry. In the unimaginable cold, dark clouds where stars and planets are born, carbon molecules assemble into more complex forms—starting a chemical journey that could eventually deliver some of life’s basic ingredients to young planets. There’s only one problem: These molecules need heat to form. At least that’s what scientists have long believed. But new research from FIU chemist Alexander Mebel reveals such chemistry can actually happen at temperatures nearing absolute zero, which is -460°F (-273°C).

On Earth, these complex carbon molecules are usually associated with extremely hot temperatures, such as those associated with combustion...

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Discovery reveals rapid pathways to complex aromatic molecules in space

Discovery reveals rapid pathways to complex aromatic molecules in space
Molecular beams machine with integrated chemical microreactor. Credit: University of Hawaii at Manoa

A team of researchers led by the University of Hawaiʻi at Mānoa Department of Chemistry has uncovered a faster way large carbon-based molecules may form in space, helping solve a long-standing mystery about how some of the building blocks of the universe grow.

The study, published in Nature Communications in August 2026 and first-authored by chemistry graduate student Shane Goettl, identifies a new chemical process that could explain the rapid formation of polycyclic aromatic hydrocarbons (PAHs)—large molecules made of carbon and hydrogen that are found throughout the universe, from dying stars to clouds of gas between stars.

Scientists have known these molecules are abundant ...

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Traffic-related air pollution linked to DNA damage in children

This study adds to previous evidence that air pollution causes oxidative stress, which can damage lipids, proteins, and DNA. Credit: © Pink Badger / Fotolia

This study adds to previous evidence that air pollution causes oxidative stress, which can damage lipids, proteins, and DNA. Credit: © Pink Badger / Fotolia

Children and teens exposed to high levels of traffic-related air pollution have evidence of telomere shortening, reports a study in the May Journal of Occupational and Environmental Medicine. Young people with asthma also have evidence of telomere shortening, according to the preliminary research by John R. Balmes, MD, of University of California, Berkeley, and colleagues. “Our results suggest that telomere length may have potential for use as a biomarker of DNA damage due to environmental exposures and/or chronic inflammation.”

The study included 14 children and adolescents living in Fresno, Calif...

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