{"id":121827,"date":"2021-07-28T10:15:46","date_gmt":"2021-07-28T14:15:46","guid":{"rendered":"https:/news/wp-json/wp/v2/posts/121827///news/wp-json/wp/v2/posts/121827//www.ucf.edu/news/wp-json/wp/v2/posts/121827//news/news/wp-json/wp/v2/posts/121827//?p=121827"},"modified":"2025-06-18T09:37:11","modified_gmt":"2025-06-18T13:37:11","slug":"ucf-researchers-develop-new-nanomaterial-to-derive-fuel-from-the-sea","status":"publish","type":"post","link":"https:/news/wp-json/wp/v2/posts/121827///news/wp-json/wp/v2/posts/121827//www.ucf.edu/news/wp-json/wp/v2/posts/121827//news/news/wp-json/wp/v2/posts/121827//ucf-researchers-develop-new-nanomaterial-to-derive-fuel-from-the-sea/news/wp-json/wp/v2/posts/121827//","title":{"rendered":"UCF Researchers Develop New Nanomaterial to Derive Clean Fuel from the Sea"},"content":{"rendered":"

Hydrogen fuel derived from the sea could be an abundant and sustainable alternative to fossil fuels, but the potential power source has been limited by technical challenges, including how to practically harvest it./news/wp-json/wp/v2/posts/121827/n

Researchers at the 糖心logo入口 have designed for the first time a nanoscale material that can efficiently split seawater into oxygen and a clean energy fuel /news/wp-json/wp/v2/posts/121827/u2014 hydrogen. The process of splitting water into hydrogen and oxygen is known as electrolysis and effectively doing it has been a challenge until now./news/wp-json/wp/v2/posts/121827/n

The stable, and long-lasting nanoscale material to catalyze the reaction, which the UCF team developed, is explained this month in the journal Advanced Materials./news/wp-json/wp/v2/posts/121827/n