Zheng Han-Wen, Yang Dong-Dong, Shi Yong-Sheng, Xiao Tong, Zheng Xiang-Jun
Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Beijing Normal University, Beijing 100875, P. R. China.
Dalton Trans. 2022 Oct 18;51(40):15370-15375. doi: 10.1039/d2dt02435g.
The development of stimulus-responsive luminescent materials, especially those based on a single compound exhibiting multicolor and high-contrast (Δ ≥ 100 nm) chromic properties, is a critical challenge. In this work, we synthesized and characterized a zinc(II) complex (1). As expected, 1 displays aggregation-induced emission enhancement (AIEE) in THF/HO mixtures, and remarkable multicolor switching under external stimuli in the solid state. Complex 1 shows reversible mechanochromic luminescence behavior with a large wavelength shift (Δ = 100 nm) during the grinding-fuming cycles, due to the phase transformation between the crystalline and amorphous states. More impressively, 1 exhibits obvious acidochromic properties (Δ = 130 nm) which originate from the adsorption of vapor and a gas-solid reaction on the crystal surface. Furthermore, 1 exhibits electrochemical oxidation behavior accompanied by quenching of yellow-green emission due to the overlap of an emission band and an absorption band. The above-mentioned color changes under ambient light can also be observed by the naked eye during the mechanical, acid-base vapor and electrical stimulation. Based on the high-contrast and multicolor switching, complex 1 was successfully developed into test papers and films in the field of rapid detection of mechanical stimuli and HCl/NH vapors.
开发刺激响应性发光材料,尤其是基于单一化合物表现出多色和高对比度(Δ≥100nm)变色特性的材料,是一项关键挑战。在这项工作中,我们合成并表征了一种锌(II)配合物(1)。正如预期的那样,1在THF/HO混合物中表现出聚集诱导发光增强(AIEE),并且在固态下受到外部刺激时表现出显著的多色切换。配合物1在研磨-熏蒸循环中表现出可逆的机械变色发光行为,波长位移较大(Δ = 100nm),这是由于晶态和非晶态之间的相变。更令人印象深刻的是,1表现出明显的酸致变色特性(Δ = 130nm),这源于蒸汽的吸附以及晶体表面的气固反应。此外,由于发射带和吸收带的重叠,1表现出电化学氧化行为并伴有黄绿色发射的猝灭。在机械、酸碱蒸汽和电刺激过程中,上述在环境光下的颜色变化也能用肉眼观察到。基于高对比度和多色切换,配合物1在快速检测机械刺激和HCl/NH蒸汽领域成功开发成试纸和薄膜。