van der Sluijs Maaike M, Salzmann Bastiaan B V, Arenas Esteban Daniel, Li Chen, Jannis Daen, Brafine Laura C, Laning Tim D, Reinders Joost W C, Hijmans Natalie S A, Moes Jesper R, Verbeeck Johan, Bals Sara, Vanmaekelbergh Daniel
Condensed Matter & Interfaces, Debye Institute for Nanomaterials Science, Utrecht University, 3584 CC Utrecht, The Netherlands.
Electron Microscopy for Materials Science (EMAT), NANOlab Center for Excellence, University of Antwerp, 2020 Antwerp, Belgium.
Chem Mater. 2023 Mar 25;35(7):2988-2998. doi: 10.1021/acs.chemmater.3c00300. eCollection 2023 Apr 11.
Colloidal 2D semiconductor nanocrystals, the analogue of solid-state quantum wells, have attracted strong interest in material science and physics. Molar quantities of suspended quantum objects with spectrally pure absorption and emission can be synthesized. For the visible region, CdSe nanoplatelets with atomically precise thickness and tailorable emission have been (almost) perfected. For the near-infrared region, PbS nanosheets (NSs) hold strong promise, but the photoluminescence quantum yield is low and many questions on the crystallinity, atomic structure, intriguing rectangular shape, and formation mechanism remain to be answered. Here, we report on a detailed investigation of the PbS NSs prepared with a lead thiocyanate single source precursor. Atomically resolved HAADF-STEM imaging reveals the presence of defects and small cubic domains in the deformed orthorhombic PbS crystal lattice. Moreover, variations in thickness are observed in the NSs, but only in steps of 2 PbS monolayers. To study the reaction mechanism, a synthesis at a lower temperature allowed for the study of reaction intermediates. Specifically, we studied the evolution of pseudo-crystalline templates toward mature, crystalline PbS NSs. We propose a self-induced templating mechanism based on an oleylamine-lead-thiocyanate (OLAM-Pb-SCN) complex with two Pb-SCN units as a building block; the interactions between the long-chain ligands regulate the crystal structure and possibly the lateral dimensions.
胶体二维半导体纳米晶体作为固态量子阱的类似物,在材料科学和物理学领域引起了强烈关注。可以合成具有光谱纯吸收和发射特性的摩尔量悬浮量子物体。对于可见光区域,具有原子精确厚度和可定制发射特性的CdSe纳米片已经(几乎)臻于完善。对于近红外区域,PbS纳米片(NSs)极具潜力,但光致发光量子产率较低,关于其结晶度、原子结构、有趣的矩形形状以及形成机制等诸多问题仍有待解答。在此,我们报告了对用硫氰酸铅单源前驱体制备的PbS纳米片的详细研究。原子分辨的高角度环形暗场扫描透射电子显微镜(HAADF-STEM)成像揭示了在变形的正交晶系PbS晶格中存在缺陷和小立方畴。此外,在纳米片中观察到厚度变化,但仅以2个PbS单分子层为步长。为了研究反应机制,在较低温度下进行合成以便研究反应中间体。具体而言,我们研究了准晶模板向成熟的结晶PbS纳米片的演变过程。我们提出了一种基于油胺-铅-硫氰酸盐(OLAM-Pb-SCN)配合物的自诱导模板机制,该配合物以两个Pb-SCN单元作为构建块;长链配体之间的相互作用调节晶体结构以及可能的横向尺寸。