{"ok":true,"trend":{"id":786907,"platform":"news","region":"global","key":"changes to platinum surface chemistry boost solar hydrogen production in organic photocatalysts","title":"Changes to platinum surface chemistry boost solar hydrogen production in organic photocatalysts","url":"https://news.google.com/rss/articles/CBMifkFVX3lxTE5NZEhKQTREYjdZcW13c183R1JjSXl3OTVMeHZhZUpaMDF1UVJzR1JxTU9XLWNuRXlnOVZqZEpqUVREcTFvTUZQankxT3RMYWNnNEU4WmY2Rm02NjYyVTh3LUExLVRDU25CRFVPdV9TSXlwMjJYVlVySHJjMkQ0dw?oc=5","first_seen":"2026-10-02T22:42:34.119315Z","last_seen":"2026-10-03T08:18:32.408202Z","last_rank":9,"peak_rank":4,"last_volume":null,"peak_volume":0,"seen_count":8,"score":58.85,"category_hint":"energy","section":"environment","category":"energy","summary":"Researchers report that modifying the surface chemistry of platinum significantly improves hydrogen production when used with organic photocatalysts that harvest energy from sunlight. The finding suggests better catalyst design could make solar-driven hydrogen a more efficient and potentially cheaper route to clean fuel, drawing attention from the energy research community.","why":"Advances in solar hydrogen production are highly relevant to the search for clean energy alternatives.","tone":"positive","entities":["platinum","organic photocatalysts","solar hydrogen"],"summarized_at":"2026-10-03T04:45:36.873665Z","meta":{"via":"scan","lang":"en","term":"solar","source":"Phys.org","published":"Fri, 02 Oct 2026 22:20:01 GMT"},"nw":null,"promo":null,"kind":null,"importance":null,"hidden":false,"hide_reason":null,"judged_at":null,"title_en":"Platinum surface tweaks boost solar hydrogen production","section_name":"Environment","category_name":"Energy","timeline":[{"captured_at":"2026-10-02T22:42:34.119315Z","rank":4,"volume":null},{"captured_at":"2026-10-03T00:05:13.537176Z","rank":5,"volume":null},{"captured_at":"2026-10-03T01:28:11.659041Z","rank":11,"volume":null},{"captured_at":"2026-10-03T02:50:11.836397Z","rank":14,"volume":null},{"captured_at":"2026-10-03T04:12:31.009652Z","rank":14,"volume":null},{"captured_at":"2026-10-03T05:34:31.534895Z","rank":7,"volume":null},{"captured_at":"2026-10-03T06:56:31.812188Z","rank":7,"volume":null},{"captured_at":"2026-10-03T08:18:32.408202Z","rank":9,"volume":null}],"posts":[{"platform":"news","url":"https://news.google.com/rss/articles/CBMifkFVX3lxTE5NZEhKQTREYjdZcW13c183R1JjSXl3OTVMeHZhZUpaMDF1UVJzR1JxTU9XLWNuRXlnOVZqZEpqUVREcTFvTUZQankxT3RMYWNnNEU4WmY2Rm02NjYyVTh3LUExLVRDU25CRFVPdV9TSXlwMjJYVlVySHJjMkQ0dw?oc=5","author":"Phys.org","title":"Changes to platinum surface chemistry boost solar hydrogen production in organic photocatalysts","snippet":null,"posted_at":"2026-10-02T22:20:01Z","likes":null}],"elsewhere":[],"window":"7d"}}