材料科学
发光
极地的
卤化物
方向(向量空间)
圆极化
金属
手性(物理)
光电子学
光学
凝聚态物理
物理
无机化学
几何学
量子力学
手征对称性
化学
数学
Nambu–Jona Lasinio模型
冶金
夸克
微带线
作者
Kostiantyn Tieriekhov,Maria Maniadi,Olivier Ségut,Sylvie Dabos‐Seignon,Arnaud Brosseau,Valérie Dupray,Nicolas Mercier,Alexandre Abhervé
标识
DOI:10.1002/adom.202403205
摘要
Abstract Finely modulating the structure of the organic cation in metal‐halide semiconductors is a powerful strategy to influence the symmetry and polarity of the hybrid compound as well as its optoelectronic properties. In this study, chiral organic S/R ‐hydroxybutylammonium ( S/R ‐HBA) cations are used to prepare a series of 1D metal‐halide networks. The resulting chiral and polar ( S/R ‐HBA) 2 Pb 3 X 8 (X = Br or I) compounds show both second harmonic generation (SHG), circular dichroism (CD), and circularly polarized luminescence (CPL). Contrary to the 1D networks previously prepared from S/R ‐2‐hydroxypropyl‐1‐ammonium ( S/R ‐HP1A) cations, the new compounds show no alteration of their CD signal upon sample flipping, highlighting the suitable orientation of the unique polar axis in both bulk crystal and thin film states. Since no macroscopic effect can interfere with the true chiroptical response when the optical axis of the compound is normal to the incident light beam, ( S/R ‐HBA) 2 Pb 3 Br 8 presents a true CPL without sign modulation after flipping or rotating the sample, despite the inherent optical anisotropy in this family of crystalline materials.
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