Marine College, Shandong University, Weihai, Weihai 264209, People's Republic of China.
Dalton Trans. 2018 Dec 21;47(47):16902-16908. doi: 10.1039/c8dt03917h. Epub 2018 Nov 16.
A simple layer-by-layer approach has been developed to introduce a 3,5-dicarboxylphenoxy decorated tetraphenylethene derivative (denoted as TPE-2COOH) into a lanthanide nanowire. Interestingly, the aggregation-induced emission (AIE) was turned on by loading the negative TPE-2COOH on the positive surface of the nanowire via electrostatic interactions. More excitingly, these synthesized composite nanowires exhibit significantly different fluorescence properties in the presence of a pair of cis- and trans-isomers of fatty acids (oleic acid and elaidic acid). The obvious emission peak (382 nm) upon the addition of oleic acid (cis-configuration) was observed, which was consistent with that of the frozen diluted TPE-2COOH solution (1.95 × 10 mol L), demonstrating the occurrence of the monomer emission of TPE-2COOH. When the oleic acid with a special cis-configuration got close to the nanowire, it substituted some TPE-2COOH and arranged as cages on the surface to isolate the TPE-2COOH molecule, leading to the monomer emission. Different from such monomer emission induced by oleic acid, an attenuated aggregate emission was detected by the addition of its trans isomer elaidic acid, because it is almost impossible for the elaidic acid with a linear structure to form the cage-like shape on the surface during the substitution process. It was found for the first time that the fluorescence of such a TPE-based material can be controlled by the configuration of isomers. This discovery may provide a facile strategy to design and synthesize more promising candidates for TPE-based fluorescent sensors.
一种简单的层层组装方法被开发用来将一个 3,5-二羧基苯氧基修饰的四苯乙烯衍生物(记为 TPE-2COOH)引入镧系纳米线中。有趣的是,通过静电相互作用将带负电的 TPE-2COOH 负载在纳米线的正表面上,聚集诱导发光(AIE)被开启。更令人兴奋的是,这些合成的复合纳米线在存在一对顺式和反式脂肪酸(油酸和反油酸)异构体时表现出明显不同的荧光性质。在添加油酸(顺式构型)时观察到明显的发射峰(382nm),这与冷冻稀释的 TPE-2COOH 溶液(1.95×10-5 mol L-1)的发射峰一致,表明 TPE-2COOH 的单体发射发生。当具有特殊顺式构型的油酸接近纳米线时,它取代了一些 TPE-2COOH 并在表面排列成笼状以隔离 TPE-2COOH 分子,导致单体发射。与油酸诱导的这种单体发射不同,当添加其反式异构体反油酸时,检测到衰减的聚集发射,因为在取代过程中,具有线性结构的反油酸几乎不可能在表面形成笼状形状。这是首次发现这种基于 TPE 的材料的荧光可以通过异构体的构型来控制。这一发现可能为设计和合成基于 TPE 的荧光传感器提供了一种简便的策略。