单重态裂变
四烯
材料科学
裂变
单重态
光电子学
化学
光化学
激发态
物理
核物理学
蒽
中子
作者
Alexander Baldacchino,Matthew W. Brett,Ben P. Carwithen,Shona McNab,J.J. Tong,Victor Zhang,Nathan L. Chang,Alison Ciesla,Damon M. de Clercq,Simona S. Capomolla,Miles I. Collins,Yajie Jiang,Munavvar Fairoos Mele Kavungathodi,Alvin Mo,Phoebe Pearce,Bram Hoex,Dane R. McCamey,Michael P. Nielsen,Jonathon E. Beves,Nicholas J. Ekins‐Daukes
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2025-08-28
卷期号:10 (9): 4596-4602
被引量:3
标识
DOI:10.1021/acsenergylett.5c01930
摘要
Singlet fission photovoltaics enable the extraction of two electron–hole pairs from each higher-energy photon while leveraging a mature technology such as crystalline silicon (c-Si) as the underlying cell. Significant steps have been made in the development of singlet fission silicon photovoltaics, but all examples reported to date use tetracene as the singlet fission material. Tetracene is photochemically unstable and therefore unsuitable for commercial applications. Here we demonstrate singlet fission-derived triplet exciton transfer to c-Si from photochemically stable dipyrrolonaphthyridinedione (DPND) derivatives, with a thin layer of tin oxide as the passivation layer. An overlayer of poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT:PSS) was found to improve interface passivation further. These observations demonstrate that singlet fission photovoltaic devices can be made using stable and commercially viable materials.
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