Zhang Yongjie, Feng Ning, Zhou Shujin, Xin Xia
Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, China.
Nanoscale. 2021 Feb 25;13(7):4140-4150. doi: 10.1039/d0nr09141c.
Gold nanoclusters (AuNCs) are among the most promising organic-inorganic hybrid luminescent materials for various applications. The current development of AuNCs majorly focuses on controlling their luminescence properties. Herein, we report a new strategy to facilely construct two different nanocomposites featuring enhanced photoluminescence based on mercaptopropionic acid-protected AuNCs (MPA-AuNCs). Through co-assembly with Zn2+ and 2-methylimidazole (2M-IM), the weak luminescence of MPA-AuNCs evolved into either intense blue-green or orange emission at different concentration ratios of additives. HR-TEM and spectroscopic characterization studies revealed that the intense blue-green emission was ascribed to the formation of ZnS quantum dots (QDs) on the outer surface of AuNCs (AuNCs@ZnS), while the strong orange emission originated from the primitive MPA-AuNC core encapsulated by a cubic ZIF-8 shell (AuNCs@ZIF-8). The AuNCs@ZnS nanocomposite was further applied as an exceptional chemical sensor for selective detection of Pb2+ and Fe3+via different quenching mechanisms, and the AuNCs@ZIF-8 composite was applied for fabricating light-converting devices. The co-assembly of AuNCs with Zn2+ and imidazole derivatives provides a facile strategy for acquiring differentiated nanomaterials that have versatile potential applications in chemical detection and light-converting devices.
金纳米团簇(AuNCs)是最有前途的用于各种应用的有机-无机杂化发光材料之一。目前AuNCs的发展主要集中在控制其发光特性上。在此,我们报告了一种基于巯基丙酸保护的AuNCs(MPA-AuNCs)轻松构建两种具有增强光致发光特性的不同纳米复合材料的新策略。通过与Zn2+和2-甲基咪唑(2M-IM)共组装,MPA-AuNCs的弱发光在添加剂的不同浓度比下演变成强烈的蓝绿色或橙色发射。高分辨率透射电子显微镜(HR-TEM)和光谱表征研究表明,强烈的蓝绿色发射归因于在AuNCs外表面形成的硫化锌量子点(QDs)(AuNCs@ZnS),而强烈的橙色发射源于被立方ZIF-8壳包裹的原始MPA-AuNC核心(AuNCs@ZIF-8)。AuNCs@ZnS纳米复合材料进一步用作通过不同猝灭机制选择性检测Pb2+和Fe3+的优异化学传感器,并且AuNCs@ZIF-8复合材料用于制造光转换器件。AuNCs与Zn2+和咪唑衍生物的共组装为获得在化学检测和光转换器件中具有广泛潜在应用的差异化纳米材料提供了一种简便策略。