International PhD Program for Science, National Sun Yat-Sen University, Kaohsiung, 80424, Taiwan.
Department of Chemistry, National Sun Yat-Sen University, Kaohsiung, 70, Lien-Hai Road, Kaohsiung, 80424, Taiwan.
J Mater Chem B. 2023 Jul 5;11(26):6044-6052. doi: 10.1039/d3tb00572k.
Neurotransmitters have been of immense scientific interest due to their importance as human-health biomarkers. Several reports suggest necessary improvisations in the sensing capabilities of these neurotransmitters. Herein, the authors report a novel synthesis methodology for bimetallic aluminum-tungsten (Al-W) nanosheets, with the hybrid nanostructure showing high specificity toward serotonin neurotransmitters. The inspiration to design hybrid metallic nanosheets depends on the inherited optical properties of the parent precursors. The interstate conversion (ISC) between Al-W nanosheets promoted photoluminescent behavior with serotonin. The PL study shows that serotonin drastically enhanced at 335 nm. The importance of emission below the visible spectrum is to modulate any possible aggregation-induced emissions, which earlier troubled analytical chemists. The understanding of the selective detection of serotonin from a group of similar neurotransmitters is discussed with nanomolar quantification. The quantified detection limit using Al-W nanosheets is 0.05 nm with high linearity ( = 0.9906). Furthermore, real-world quantification studies have been performed on human urine and serum samples with of 0.9938 and 0.9801, respectively.
神经递质因其作为人类健康生物标志物的重要性而引起了极大的科学兴趣。有几项报告表明,这些神经递质的传感能力有必要进行改进。在此,作者报告了一种用于制备双金属铝-钨(Al-W)纳米片的新合成方法,该混合纳米结构对血清素神经递质表现出高特异性。设计混合金属纳米片的灵感来自于母体前体的固有光学性质。Al-W 纳米片之间的电子态间转换(ISC)促进了与血清素的光致发光行为。PL 研究表明,血清素在 335nm 处大大增强了。发射低于可见光谱的重要性在于调节任何可能的聚集诱导发射,这在早些时候困扰了分析化学家。讨论了从一组类似的神经递质中选择性检测血清素的问题,并进行了纳摩尔定量。使用 Al-W 纳米片进行定量检测的检出限为 0.05nm,线性度高( = 0.9906)。此外,还在人体尿液和血清样本中进行了实际的定量研究,分别得到了 0.9938 和 0.9801 的置信度。