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高锰取代比例的 CsPbMnCl 钙钛矿量子点。

CsPbMnCl Perovskite Quantum Dots with High Mn Substitution Ratio.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University , Changchun 130012, People's Republic of China.

The China-US Joint Laboratory, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Science , Changchun, 130033, People's Republic of China.

出版信息

ACS Nano. 2017 Feb 28;11(2):2239-2247. doi: 10.1021/acsnano.6b08747. Epub 2017 Feb 1.

Abstract

CsPbX (X = Cl, Br, I) perovskite quantum dots (QDs) are potential emitting materials for illumination and display applications, but toxic Pb is not environment- and user-friendly. In this work, we demonstrate the partial replacement of Pb with Mn through phosphine-free hot-injection preparation of CsPbMnCl QDs in colloidal solution. The Mn substitution ratio is up to 46%, and the as-prepared QDs maintain the tetragonal crystalline structure of the CsPbCl host. Meaningfully, Mn substitution greatly enhances the photoluminescence quantum yields of CsPbCl from 5 to 54%. The enhanced emission is attributed to the energy transfer of photoinduced excitons from the CsPbCl host to the doped Mn, which facilitates exciton recombination via a radiative pathway. The intensity and position of this Mn-related emission are also tunable by altering the experimental parameters, such as reaction temperature and the Pb-to-Mn feed ratio. A light-emitting diode (LED) prototype is further fabricated by employing the as-prepared CsPbMnCl QDs as color conversion materials on a commercially available 365 nm GaN LED chip.

摘要

CsPbX(X=Cl、Br、I)钙钛矿量子点(QDs)是照明和显示应用的潜在发光材料,但有毒的 Pb 并不环保和对用户友好。在这项工作中,我们通过无膦的热注入法在胶体溶液中制备 CsPbMnCl QDs,实现了 Pb 的部分替代。Mn 的取代率高达 46%,所制备的 QDs 保持了 CsPbCl 主体的四方晶结构。有意义的是,Mn 取代大大提高了 CsPbCl 的光致发光量子产率,从 5%提高到 54%。增强的发射归因于光生激子从 CsPbCl 主体到掺杂 Mn 的能量转移,这通过辐射途径促进激子复合。通过改变实验参数,如反应温度和 Pb 与 Mn 的进料比,可以调节这种与 Mn 相关的发射的强度和位置。进一步通过将所制备的 CsPbMnCl QDs 用作商用 365nmGaN LED 芯片上的颜色转换材料,制备了一个发光二极管(LED)原型。

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