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通过手性配体交换从红色发射的CsPbI量子点自组装而成的具有强圆偏振发光的螺旋钙钛矿纳米线。

Helical Perovskite Nanowires with Strong Circularly Polarized Luminescence Self-Assembled from Red-Emitting CsPbI Quantum Dots Following Chiral Ligand Exchange.

作者信息

Liu Haochen, Portniagin Arsenii S, Tang Bing, Vighnesh Kunnathodi, Li Yun, Wu Ye, Rusanov Daniil A, Ke Lingyi, Wang Yunfan, Zhu Ding, Chen Desui, Law Kwok-Chung, Babak Maria V, Ushakova Elena, Rogach Andrey L

机构信息

Department of Materials Science and Engineering, and Centre for Functional Photonics (CFP), City University of Hong Kong, 83 Tat Chee Avenue, Hong Kong S.A.R. 999077, P. R. China.

Department of Chemistry, City University of Hong Kong, 83 Tat Chee Avenue, Hong Kong S.A.R. 999077, P. R. China.

出版信息

ACS Nano. 2025 May 13;19(18):17774-17784. doi: 10.1021/acsnano.5c03149. Epub 2025 May 1.

Abstract

Circularly polarized luminescence (CPL) of chiral perovskite nanocrystals is crucial for applications such as spin-polarized light-emitting diodes and chiral photodetectors. However, the reported luminescence dissymmetry factors are often too low for practical applications; it is also important for CPL wavelengths to cover the red emission range for display applications. Herein, we realized helical perovskite nanowires self-assembled from red-emitting CsPbI quantum dots (QDs) with a strong CPL signal around 640 nm, which was enabled by chiral ligand R-/S-binaphthyl phosphoric acid. The formation of CsPbI nanowires from perovskite QDs occurred by oriented attachment; QDs remaining in solution attached at the surface of the nanowires, forming helical structures. The films produced from these chiral nanowires demonstrate high dissymmetry factors of 1.1 × 10 and 2.3 × 10 for absorption and luminescence, respectively, surpassing many previously reported chiral nanomaterials. We employed multilayer nanowire films as chiral filters, generating left- and right-handed CPL.

摘要

手性钙钛矿纳米晶体的圆偏振发光(CPL)对于自旋极化发光二极管和手性光电探测器等应用至关重要。然而,报道的发光不对称因子对于实际应用来说往往过低;CPL波长覆盖显示应用的红色发射范围也很重要。在此,我们实现了由红色发射的CsPbI量子点(QD)自组装而成的螺旋状钙钛矿纳米线,其在640nm左右具有很强的CPL信号,这是由手性配体R-/S-联萘磷酸实现的。钙钛矿量子点形成CsPbI纳米线是通过定向附着发生的;留在溶液中的量子点附着在纳米线表面,形成螺旋结构。由这些手性纳米线制成的薄膜在吸收和发光方面分别表现出1.1×10和2.3×10的高不对称因子,超过了许多先前报道的手性纳米材料。我们使用多层纳米线薄膜作为手性滤波器,产生左旋和右旋CPL。

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