SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.
School of Chemical and Biological Engineering, Seoul National University, Seoul, 08826, Republic of Korea.
Nat Commun. 2023 Jun 24;14(1):3779. doi: 10.1038/s41467-023-39509-y.
Colloidal Ag(In,Ga)S nanocrystals (AIGS NCs) with the band gap tunability by their size and composition within visible range have garnered surging interest. High absorption cross-section and narrow emission linewidth of AIGS NCs make them ideally suited to address the challenges of Cd-free NCs in wide-ranging photonic applications. However, AIGS NCs have shown relatively underwhelming photoluminescence quantum yield (PL QY) to date, primarily because coherent heteroepitaxy has not been realized. Here, we report the heteroepitaxy for AIGS-AgGaS (AIGS-AGS) core-shell NCs bearing near-unity PL QYs in almost full visible range (460 to 620 nm) and enhanced photochemical stability. Key to the successful growth of AIGS-AGS NCs is the use of the Ag-S-Ga(OA) complex, which complements the reactivities among cations for both homogeneous AIGS cores in various compositions and uniform AGS shell growth. The heteroepitaxy between AIGS and AGS results in the Type I heterojunction that effectively confines charge carriers within the emissive core without optically active interfacial defects. AIGS-AGS NCs show higher extinction coefficient and narrower spectral linewidth compared to state-of-the-art heavy metal-free NCs, prompting their immediate use in practicable applications including displays and luminescent solar concentrators (LSCs).
具有通过尺寸和组成在可见范围内可调带隙的胶体 Ag(In,Ga)S 纳米晶体 (AIGS NCs) 引起了人们的浓厚兴趣。AIGS NCs 的高吸收截面和窄发射线宽使它们非常适合解决无镉 NC 在广泛的光子应用中的挑战。然而,迄今为止,AIGS NCs 的光致发光量子产率 (PL QY) 相对较差,主要是因为尚未实现相干异质外延。在这里,我们报告了 AIGS-AgGaS (AIGS-AGS) 核壳 NCs 的异质外延,其在几乎整个可见光范围(460 至 620nm)内具有近 1 的 PL QY 和增强的光化学稳定性。成功生长 AIGS-AGS NCs 的关键是使用 Ag-S-Ga(OA) 配合物,该配合物补充了阳离子之间的反应性,以实现各种组成的同质 AIGS 核和均匀的 AGS 壳生长。AIGS 和 AGS 之间的异质外延导致了 I 型异质结,有效地将载流子限制在发射核内,而没有光学活性的界面缺陷。与最先进的无重金属 NCs 相比,AIGS-AGS NCs 具有更高的消光系数和更窄的光谱线宽,这促使它们立即在实际应用中使用,包括显示器和发光太阳能集中器 (LSCs)。