Magne Chloe, Veremeienko Vasyl, Bercy Roxanne, Ha-Thi Minh-Huong, Arteni Ana A, Pascal Andrew A, Vengris Mikas, Pino Thomas, Robert Bruno, Llansola-Portoles Manuel J
CEA, CNRS, Institute for Integrative Biology of the Cell (I2BC), Université Paris-Saclay, 91190, Gif-sur-Yvette, France.
CNRS, Institut Des Sciences Moléculaires d'Orsay, Université Paris-Saclay, 91405, Orsay, France.
Sci Rep. 2025 Feb 15;15(1):5593. doi: 10.1038/s41598-025-88220-z.
We have prepared lycopene aggregates with low scattering in an acetone-water suspension. The aggregates exhibit highly distorted absorption, extending from the UV up to 568 nm, as a result of strong excitonic interactions. We have investigated the structural organization of these aggregates by resonance Raman and TEM, revealing that the lycopene aggregates are not homogeneous, containing at least four different aggregate species. Transient absorption measurements upon excitation at 355, 515, and 570 nm, to sub-select these different species, reveal significant differences in dynamics between each of the aggregate types. The strong excitonic interactions produce extremely distorted transient electronic signatures, which do not allow an unequivocal identification of the excited states at times shorter than 60 ps. However, these experiments demonstrate that all the lycopene aggregated species form long-living triplets via singlet fission.
我们在丙酮 - 水悬浮液中制备了具有低散射的番茄红素聚集体。由于强烈的激子相互作用,这些聚集体呈现出高度扭曲的吸收,吸收范围从紫外延伸至568纳米。我们通过共振拉曼光谱和透射电子显微镜研究了这些聚集体的结构组织,发现番茄红素聚集体并非均匀的,至少包含四种不同的聚集体种类。在355、515和570纳米处激发进行瞬态吸收测量,以亚选择这些不同种类,结果显示每种聚集体类型之间的动力学存在显著差异。强烈的激子相互作用产生了极其扭曲的瞬态电子特征,这使得在短于60皮秒的时间内无法明确识别激发态。然而,这些实验表明,所有的番茄红素聚集种类都通过单线态裂变形成长寿命的三线态。