Research [ASAP] Remote Heavy Atom Effect-Induced Efficient Ultralong Room-Temperature Phosphorescence of Biphenyl Imide LikeLiked Date: January 7, 2026 Less than 1 MinRead Views: 36 ACS Applied Optical Materials DOI: 10.1021/acsaom.5c00562 Source: http://dx.doi.org/10.1021/acsaom.5c00562 Tags:Materials Industry FacebookTwitterLinkedinWhatsAppTelegramEmail ALT-Lab-Ad-1ALT-Lab-Ad-2ALT-Lab-Ad-3ALT-Lab-Ad-4ALT-Lab-Ad-5ALT-Lab-Ad-6ALT-Lab-Ad-7ALT-Lab-Ad-8ALT-Lab-Ad-9ALT-Lab-Ad-10ALT-Lab-Ad-11ALT-Lab-Ad-12ALT-Lab-Ad-13 Recent Articles Elon Musk Fails In His Attempt To Subvert First Amendment Considerations For Social Media Clean Tech August 28, 2026 Self Storage Manager Introduces SAMARA, Its New AI Agent for Enterprise Self-Storage Operations Materials & Chemicals August 28, 2026 New Data From 28.2 Million AI Interactions Reveals How People Use AI Materials & Chemicals August 28, 2026 Europe’s solar resource surplus continues before late-August cloud shift Solar Power August 28, 2026 Farm safety training gaps leave employers exposed to penalties Food & Agriculture August 28, 2026 Manure isn’t just fertilizer — it’s a soil structure tool Food & Agriculture August 28, 2026 On track but too slow? The dynamics of EU decarbonization Research August 28, 2026 Global PV additions forecast to reach 638 GW in 2026 Solar Power August 28, 2026 Nio Onvo L60 deliveries reach 110,000 as August sales rebound Electric Vehicles August 28, 2026 Energy Security Is Increasing The Value Of Cross-Border Electricity Clean Tech August 28, 2026 Load more