Fang Cao, Xu Chang, Zhang Wei, Zhou Meng, Tan Dong, Qian Lixia, Hu Daqiao, Jin Shan, Zhu Manzhou
Department of Chemistry and Centre for Atomic Engineering of Advanced Materials, Anhui University, Hefei, Anhui, 230601, China.
Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education, Anhui University, Hefei, Anhui, 230601, China.
Nat Commun. 2024 Jul 16;15(1):5962. doi: 10.1038/s41467-024-50289-x.
Dual emission (DE) in nanoclusters (NCs) is considerably significant in the research and application of ratiometric sensing, bioimaging, and novel optoelectronic devices. Exploring the DE mechanism in open-shell NCs with doublet or quartet emissions remains challenging because synthesizing open-shell NCs is difficult due to their inherent instability. Here, we synthesize two dual-emissive MAg(PFBT)(TPP) (M = Pt, Pd; PFBT = pentafluorobenzenethiol; TPP = triphenylphosphine) NCs with a 7-electron open-shell configuration to reveal the DE mechanism. Both NCs comprise a crown-like MAg kernel with Pt or Pd in the center surrounded by five PPh ligands and two Ag(SR)(PPh) motifs. The combined experimental and theoretical studies revealed the origin of DE in PtAg and PdAg. Specifically, the high-energy visible emission and the low-energy near-infrared emission arise from two distinct quartet excited states: the core-shell charge transfer and core-based states, respectively. Moreover, PFBT ligands are found to play an important role in the existence of DE, as its low-lying π* levels result in energetically accessible core-shell transitions. This novel report on the dual-quartet phosphorescent emission in NCs with an open-shell electronic configuration advances insights into the origin of dual-emissive NCs and promotes their potential application in magnetoluminescence and novel optoelectronic devices.
纳米团簇(NCs)中的双发射(DE)在比率传感、生物成像和新型光电器件的研究与应用中具有相当重要的意义。探索具有双重态或四重态发射的开壳层NCs中的DE机制仍然具有挑战性,因为开壳层NCs由于其固有的不稳定性而难以合成。在此,我们合成了两种具有7电子开壳层结构的双发射MAg(PFBT)(TPP)(M = Pt、Pd;PFBT = 五氟苯硫醇;TPP = 三苯基膦)NCs,以揭示DE机制。两种NCs均包含一个冠状的MAg核,中心为Pt或Pd,周围环绕着五个PPh配体和两个Ag(SR)(PPh)基序。结合实验和理论研究揭示了PtAg和PdAg中DE的起源。具体而言,高能可见光发射和低能近红外发射分别源于两个不同的四重态激发态:核壳电荷转移态和基于核的态。此外,发现PFBT配体在DE的存在中起重要作用,因为其低 lying π* 能级导致能量上可及的核壳跃迁。这一关于具有开壳层电子结构的NCs中双四重态磷光发射的新报告推进了对双发射NCs起源的认识,并促进了它们在磁致发光和新型光电器件中的潜在应用。