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JCAP Home Who We Are Overview Achievements Our People Research Introduction Thrusts Library Resources News & Events JCAP Events JCAP News and Media Coverage Connect With JCAP Contact Us Partnerships For Researchers Partnerships For Industry Visit JCAP Home Who We Are Overview Ach…

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JCAP Home Who We Are Overview Achievements Our People Research Introduction Thrusts Library Resources News & Events JCAP Events JCAP News and Media Coverage Connect With JCAP Contact Us Partnerships For Researchers Partnerships For Industry Visit JCAP Home Who We Are Overview Achievements Our People Research Introduction Thrusts Library Resources News & Events JCAP Events JCAP News and Media Coverage Connect With JCAP Contact Us Partnerships For Researchers Partnerships For Industry Visit JCAP Welcome To The Joint Center For Artificial Photosynthesis Who We Are Welcome To The Joint Center For Artificial Photosynthesis Who We Are Welcome To The Joint Center For Artificial Photosynthesis Who We Are Welcome To The Joint Center For Artificial Photosynthesis Who We Are No results found To learn more and to view our Keynote Presentations, Posters, and Webinars, please visit our Meeting Page. Learn more understanding of charge transport in Photo- and Electrocatalysis Important work for predicting charge transport in the large polaron regime in transition metal oxides for photo- and electrocatalysis applications. Plastics, fuels and chemical feedstocks from CO2? They’re working on it. Researchers discover a way to improve a key step in these conversions, and explore what it would take to turn the climate-changing gas into valuable products. Machine Learning of Materials’ Optical Properties Generative models learn data relationships that enable predictions in unexplored spaces, and provides guidance on how to deploy machine learning. functionalization of electrocatalysts for CO2RR to ethylene Recent paper in Nature by JCAP and University of Toronto researchers in Nature details selective conversion of CO2 into ethelyne. What it would take to source commodity chemicals from air? The Science paper provides a technoeconomic and carbon emission analysis of possible products, offering targets that would need to be met Gas-Diffusion Electrodes for CO2 reduction: A New Paradigm Vapor-fed reactors represent new paradigms for unprecedented control of local reaction conditions for CO2 reduction. 19% Efficient CO2RR in a Solar-Driven Gas Diffusion Electrode Flow Cell Efficient solar-driven CO2 reduction to CO was realized by integrating high-efficiency photovoltaics with reverse-assembled gas diffusion electrodes. New Material Could Turn Water into the fuel of the future A look inside the labs at the Joint Center for Artificial Photosynthesis reveals the inventions and processes that yield groundbreaking discoveries in solar fuel. The work was published in PNAS. PEC Device for Direct Water Slitting with 19% Efficiency An international team of researchers and JCAP scientists developed 19% efficient solar-fuels generator. Learn more about JCAP talks at conferences and meetings, publications, research highlights, and Databases. About Program Back to Top No results found © 2010-2020 California Institute of Technology, Joint Center for Artificial Photosynthesis (JCAP), All rights reserved. Caltech Privacy Notice