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Mechanochromic luminogen with aggregation-induced emission: implications for ink-free rewritable paper with high fatigue resistance and low toxicity

机译:具有聚集诱导发射的机械变色发光剂:对具有高抗疲劳性和低毒性的无墨水可重写纸的影响

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摘要

In this study, we report the synthesis and photoluminescence (PL) behaviour of a new luminogen, DHBA, a functionalized Schiff base. The twisted molecular conformation together with the incorporation of electron donor-acceptor pairs endow the luminogen with both aggregation-induced emission and twisted intramolecular charge transfer properties. The crystalline luminogen shows strong green emission at around 514 nm while the emission colour turns orange-red (562 nm) with a big loss in the quantum efficiency after grinding. The colour of the ground sample can be readily converted back into the initial state though recrystallization by either immersing or fuming in organic solvents. The conversion can be implemented for more than 30 cycles, showing good repeatability. This luminogen probably shows the highest fatigue resistance among all the mechanochromic compounds that have been reported. Inspired by the unique mechanochromism, an archetype of ink-free rewritable paper is developed. Letters and patterns can be easily written using pressure and erased by fumigation in handwriting experiments. The luminogen also enjoys the advantages of a one-pot synthesis and low biotoxicity, providing a reliable candidate for green rewritable paper technology to fulfill demands for sustainability and carbon mitigation.
机译:在这项研究中,我们报告了一种新型发光剂DHBA(一种功能化的席夫碱)的合成和光致发光(PL)行为。扭曲的分子构象加上电子给体-受体对的结合使发光剂具有聚集诱导的发射和扭曲的分子内电荷转移性质。晶体发光剂在514 nm处显示强绿色发射光,而发射色变成橙红色(562 nm),研磨后量子效率损失很大。通过将样品浸入或熏蒸在有机溶剂中进行重结晶,可以容易地将磨碎样品的颜色转换回初始状态。转换可以执行30个以上的周期,显示出良好的可重复性。在所有已报道的机械变色化合物中,这种发光剂可能显示出最高的抗疲劳性。受到独特的机械致变色的启发,开发了无墨水可重写纸的原型。字母和图案可以很容易地用压力书写,并在手写实验中通过熏蒸消除。发光剂还具有一锅法合成和低生物毒性的优点,为绿色可重写纸技术提供了可靠的候选物,以满足可持续性和减碳的需求。

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