Talk:Artificial photosynthesis
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External links modified
editHello fellow Wikipedians,
I have just modified 5 external links on Artificial photosynthesis. Please take a moment to review my edit. If you have any questions, or need the bot to ignore the links, or the page altogether, please visit this simple FaQ for additional information. I made the following changes:
- Added archive https://web.archive.org/web/20120120125502/http://www.fotomol.uu.se/Forskning/Biomimetics/consortium/index.shtm to http://www.fotomol.uu.se/Forskning/Biomimetics/consortium/index.shtm
- Added archive https://web.archive.org/web/20120218083703/http://www.wpafb.af.mil/news/story.asp?id=123118409 to http://www.wpafb.af.mil/news/story.asp?id=123118409
- Added archive https://web.archive.org/web/20110809044623/http://media.caltech.edu/press_releases/13365 to http://media.caltech.edu/press_releases/13365
- Added archive https://web.archive.org/web/20160328015942/https://law.anu.edu.au/conferences/artificial-photosynthesis to https://law.anu.edu.au/conferences/artificial-photosynthesis
- Corrected formatting/usage for http://www.rsbs.anu.edu.au/ResearchGroups/PBE/index.php
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New claim and paper
editPress release: https://www.iciq.org/a-european-consortium-achieves-record-efficiency-in-direct-conversion-of-co2-and-h2o-into-sustainable-fuels-using-earth-abundant-materials/ Dated March 10, 2023. Includes a cite to the published, peer-reviewed research. Excerpt: "The final outcome of this artificial photosynthesis research project, one of the biggest funded by the European Commission, consists of an autonomous device able to convert CO2 and H2O to fuels using sunlight. This innovative cell provides a solar-to-fuel efficiency of over 10% reaching world-record current densities without the use of any critical raw materials. This demonstrates that sustainability, and high productivity can also be achieved with low-cost and scalable materials.
Moreover, the team introduces the novel concept of producing hydrogen (H2) and an H2-storage element (formate) simultaneously, with the latter used to produce H2 in the absence of sunlight. This solution allows continuous (24/7) hydrogen production using an artificial-leaf device for the first time. “A-Leaf was a truly enjoyable and challenging project and ending up with a highly efficient prototype was the icing on the cake”, affirms Prof. Javier Pérez-Ramírez from the ETH in Zurich." Pete Tillman (talk) 21:46, 23 March 2023 (UTC)