Dhanabalan Balaji, Biffi Giulia, Moliterni Anna, Olieric Vincent, Giannini Cinzia, Saleh Gabriele, Ponet Louis, Prato Mirko, Imran Muhammad, Manna Liberato, Krahne Roman, Artyukhin Sergey, Arciniegas Milena P
Istituto Italiano di Tecnologia, Via Morego 30, Genova, 16163, Italy.
Dipartimento di Chimica e Chimica Industriale, Università degli Studi di Genova, Via Dodecaneso, 31, Genova, 16146, Italy.
Adv Mater. 2021 Apr;33(13):e2008004. doi: 10.1002/adma.202008004. Epub 2021 Mar 1.
The unique combination of organic and inorganic layers in 2D layered perovskites offers promise for the design of a variety of materials for mechatronics, flexoelectrics, energy conversion, and lighting. However, the potential tailoring of their properties through the organic building blocks is not yet well understood. Here, different classes of organoammonium molecules are exploited to engineer the optical emission and robustness of a new set of Ruddlesden-Popper metal-halide layered perovskites. It is shown that the type of molecule regulates the number of hydrogen bonds that it forms with the edge-sharing [PbBr ] octahedra layers, leading to strong differences in the material emission and tunability of the color coordinates, from deep-blue to pure-white. Also, the emission intensity strongly depends on the length of the molecules, thereby providing an additional parameter to optimize their emission efficiency. The combined experimental and computational study provides a detailed understanding of the impact of lattice distortions, compositional defects, and the anisotropic crystal structure on the emission of such layered materials. It is foreseen that this rational design can be extended to other types of organic linkers, providing a yet unexplored path to tailor the optical and mechanical properties of these materials and to unlock new functionalities.
二维层状钙钛矿中有机层和无机层的独特组合为机电一体化、柔性电子学、能量转换和照明等多种材料的设计带来了希望。然而,通过有机结构单元对其性能进行潜在调控的方式尚未得到充分理解。在此,利用不同类别的有机铵分子来设计一组新型的Ruddlesden-Popper金属卤化物层状钙钛矿的光发射和稳定性。结果表明,分子类型调节其与共边[PbBr]八面体层形成的氢键数量,导致材料发射以及颜色坐标可调性存在显著差异,范围从深蓝色到纯白色。此外,发射强度强烈依赖于分子长度,从而提供了一个优化其发射效率的额外参数。结合实验和计算的研究详细阐述了晶格畸变、成分缺陷和各向异性晶体结构对这类层状材料发射的影响。预计这种合理设计可扩展到其他类型的有机连接体,为定制这些材料的光学和力学性能以及解锁新功能提供一条尚未探索的途径。