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首页> 外文期刊>RSC Advances >A TPE–benzothiazole piezochromic and acidichromic molecular switch with high solid state luminescent efficiency
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A TPE–benzothiazole piezochromic and acidichromic molecular switch with high solid state luminescent efficiency

机译:具有高固态发光效率的TPE-苯并噻唑压致变色和酸性变色分子开关

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A new organic compound, namely B-TPEAN , was constructed by using tetraphenylethylene, acrylonitrile and benzothiazole as building blocks. Herein, results of single crystal structure analysis and theoretical calculation for the as-synthesized compound were presented. Photophysical properties, including UV-visible absorption, photoluminescence and fluorescent quantum yield, were also well studied. B-TPEAN was found to show excellent aggregation-induced emission (AIE) properties and high quantum yield (up to 85%) in the solid-state. These results should be attributed to the positive effect of a combination of two typical AIE moieties in one molecule. Upon grinding, the emission color of the pristine sample for B-TPEAN changed from bluish green ( λ _(em,max) = 497 nm) to yellow ( λ _(em,max) = 567 nm), exhibiting a remarkable piezochromism. Moreover, by fuming with acid vapor, both of the pristine and the ground samples of B-TPEAN showed dramatic decreases in fluorescence quantum yields and large bathochromic shifts in PL maxima up to 53 nm and 80 nm, respectively, indicating a success in achieving multi-stimuli-responsive luminophore with high contrast in both emission intensity and color. Further investigation revealed that the acidifluorochormism of the samples was caused by the protonation of the benzothiazole moiety, leading to an enhancement of ICT effect in the protonated molecules.
机译:以四苯基乙烯,丙烯腈和苯并噻唑为构建基,构建了一种新的有机化合物B-TPEAN。在此,给出了所合成化合物的单晶结构分析结果和理论计算结果。光物理性质,包括紫外可见吸收,光致发光和荧光量子产率也得到了很好的研究。发现B-TPEAN在固态中表现出出色的聚集诱导发射(AIE)特性和高量子产率(高达85%)。这些结果应该归因于两个典型的AIE部分在一个分子中的结合所产生的积极作用。研磨后,B-TPEAN的原始样品的发射颜色从蓝绿色(λ_(em,max)= 497 nm)变为黄色(λ_(em,max)= 567 nm),表现出显着的压致变色现象。此外,通过用酸蒸气发烟,B-TPEAN的原始样品和地面样品均显示荧光量子产率显着下降,PL最大值的最大红移分别达到53 nm和80 nm,表明成功实现了多峰刺激响应的发光体,在发射强度和颜色上都具有高对比度。进一步的研究表明,样品的酸性氟发色是由苯并噻唑部分的质子化引起的,从而导致质子化分子中ICT效应的增强。

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