Luo Lianshun, Liu Zhongyu, Mazumder Abhrojyoti, Jin Rongchao
Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States.
J Am Chem Soc. 2024 Oct 3;146(41):27993-7. doi: 10.1021/jacs.4c11703.
Highly emissive gold nanoclusters (NCs) in the near-infrared (NIR) region are of wide interest, but challenges arise from the excessive nonradiative dissipation. Here, we demonstrate an effective suppression of the motions of surface motifs on the Au(PET) rod (PET = 2-phenylethanethiolate) by noncoordinative interactions with amide molecules and accordingly raise the NIR emission (875/1045 nm peaks) quantum yield (QY) from 18% to 50% in deaerated solution at room temperature, which is rare in Au NCs. Cryogenic photoluminescence measurements indicate that amide molecules effectively suppress the vibrations associated with the Au-S staple motifs on Au and also enhance the radiative relaxation, both of which lead to stronger emission. When Au NCs are embedded in a polystyrene film containing amide molecules, the PLQY is further boosted to 75%. This research not only produces a highly emissive material but also provides crucial insights for the rational design of NIR emitters and advances the potential of atomically precise Au NCs for diverse applications.
近红外(NIR)区域的高发射性金纳米团簇(NCs)备受关注,但过量的非辐射耗散带来了挑战。在此,我们通过与酰胺分子的非配位相互作用,有效抑制了Au(PET)棒(PET = 2-苯乙硫醇盐)表面基序的运动,相应地在室温下的脱气溶液中,将近红外发射(875/1045 nm峰)量子产率(QY)从18%提高到50%,这在金纳米团簇中是罕见的。低温光致发光测量表明,酰胺分子有效地抑制了与金上的Au-S主链基序相关的振动,同时增强了辐射弛豫,这两者都导致更强的发射。当金纳米团簇嵌入含有酰胺分子的聚苯乙烯薄膜中时,光致发光量子产率进一步提高到75%。这项研究不仅制备出了一种高发射性材料,还为近红外发射体的合理设计提供了关键见解,并推动了原子精确金纳米团簇在各种应用中的潜力。