光催化
串联
光化学
超快激光光谱学
苯甲醛
环番
材料科学
苯甲酸
氧化还原
量子产额
光致发光
吸收(声学)
光谱学
组合化学
苯并咪唑
化学
吸收光谱法
甲苯
时间分辨光谱学
产量(工程)
激发态
光催化
催化作用
纳秒
偶联反应
二苯并噻吩
联轴节(管道)
作者
Yawen Li,Qi Sun,Zengrong Wang,Yi Cui,Tianle Cao,Zhijie Zhou,Naiyao Li,Wenxin Wei,Wei Zhang,Haonan Peng,Yu Fang,Gang He
摘要
ABSTRACT Prolonging the triplet excited‐state lifetime is essential for developing efficient photocatalytic systems. Herein, a series of viologen‐based cyclophane derivatives ( 2 , 6 , and 8 ) featuring TSC were designed and synthesized, with TSC‐boxes 6 and 8 incorporating a unique combination of cyclophane structures and TSC units. Compared with 2 and 6 , which possess only a single TSC unit, TSC‐box 8 with a tandem TSC structure exhibits enhanced spin‐orbit coupling and a narrower singlet‐triplet energy gap. These attributes endow TSC‐box 8 with favorable photoelectric properties, including photoluminescence and an apparent one‐step four‐electron redox behavior. Nanosecond transient absorption spectroscopy revealed efficient formation of the triplet excited state, prolonging the triplet excited‐state lifetime, thereby enabling effective generation of O 2 •− and •OH. As a photocatalyst, TSC‐box 8 efficiently mediates metal‐free photoredox catalysis, affording benzimidazole derivatives in up to 99% yield and enabling the selective oxidation of toluene to benzaldehyde within 1 h (yield: 90%, conversion: 96%) and to benzoic acid within 5 h (yield: 97%, conversion: 98%). This work provides a strategic approach to designing long‐lived triplet excited‐state systems for metal‐free photocatalysis.
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