深铬移
材料科学
发光
猝灭(荧光)
光电子学
光致发光
热发射
联轴节(管道)
热的
激子
航程(航空)
发射强度
荧光
光发射
配体(生物化学)
纳米技术
强度(物理)
等离子体子
受激发射
电致发光
大气温度范围
作者
Maxim Yu. Petyuk,Taisiya S. Sukhikh,Dmitri V. Stass,Gia M. Carignan,Mariana I. Rakhmanova,Evgeniya P. Doronina,Maxim N. Sokolov⧫,Evgeny A. Mostovich,Irina Yu. Bagryanskaya,Jing Li,Alexander V. Artem'ev
标识
DOI:10.1002/adom.202502836
摘要
Abstract A perchlorination strategy is introduced as a novel approach for designing Cu(I)‐based deep‐red TADF materials exhibiting large negative thermal quenching (NTQ). Replacing the 1,10‐phenanthroline (phen) ligand in conventional [Cu(phen)(P^P)]⁺ complexes with octachloro‐1,10‐phenanthroline (phenCl 8 ) unexpectedly induces a strong NTQ effect while simultaneously triggering a giant bathochromic shift in absorption, excitation, and emission. Whereas the parent complex [Cu(phen)(DPEPhos)]PF 6 emits at λ max = 576 nm with nearly temperature‐independent emission intensity in the 77–300K range ( I 300 K / I 77 K = 1.1), its perchlorinated analog [Cu(phenCl 8 )(DPEPhos)]PF 6 exhibits deep‐red emission (λ max = 680 nm) and a remarkable NTQ effect with the impressively high ratio I 300 K / I 77 K of 12.3. Detailed investigations reveal that the NTQ behavior stems from perchlorination‐induced spin‐orbit coupling enhancement, which facilitates non‐radiative T 1 → S 0 decays at low temperatures. Additionally, perchlorination boosts X‐ray luminescence intensity, further highlighting its potential for optoelectronic applications.
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