Bayindir Sinan, Akar Sebiha, Hussein Abdullah S, Lafzi Ferruh, Orak İkram
Department of Chemistry Faculty of Sciences and Arts, Bingöl University, 12000, Bingöl, Türkiye.
College of Education Chemistry Department, Salahaddin University-Erbil, 44001, Erbil, Iraq.
ChemistryOpen. 2025 Sep;14(9):e202500045. doi: 10.1002/open.202500045. Epub 2025 May 6.
This study reports the synthesis of bis-substituted tetraphenylethenes (TPEs) and the investigation of their photophysical and photochemical properties. Utilizing the aggregation-induced emission characteristic of TPEs, this study demonstrates that BPh-TPE and BRh-TPE function as "turn-off" fluorescent sensors for detecting Cu and Hg/Ag, respectively, exhibiting quenched fluorescence in the presence of these ions. The limits of detection (LODs) for Cu, Hg, and Ag are determined to be 299, 522 nM, and 1.58 μM, respectively. Interestingly, the probes also show "turn-on" fluorescence upon the addition of glutathione (GSH) in the presence of Cu or Hg. Specifically, the LOD for GSH using the BPh-TPE-Cu complex is 457 nM. Practical applicability is confirmed via visual color changes on filter paper and in water samples. These findings highlight the potential of these TPE derivatives for detecting copper, mercury, silver ions, and GSH in environmental water. Additionally, Al/organic layer/p-Si heterojunction devices incorporating spin-coated TPE layers are fabricated. Their electrical behaviors are analyzed through current-voltage and current-time measurements under varying light conditions. Transient photocurrent analysis indicates strong photoresponse, supporting their suitability for optoelectronic and photovoltaic applications.
本研究报道了双取代四苯乙烯(TPEs)的合成及其光物理和光化学性质的研究。利用TPEs的聚集诱导发光特性,本研究表明BPh-TPE和BRh-TPE分别作为检测铜和汞/银的“关断”荧光传感器,在这些离子存在下表现出荧光猝灭。铜、汞和银的检测限(LOD)分别确定为299、522 nM和1.58 μM。有趣的是,在铜或汞存在下加入谷胱甘肽(GSH)时,探针也会显示“开启”荧光。具体而言,使用BPh-TPE-Cu络合物检测GSH的LOD为457 nM。通过滤纸和水样中的视觉颜色变化证实了实际适用性。这些发现突出了这些TPE衍生物在环境水中检测铜、汞、银离子和GSH的潜力。此外,还制备了包含旋涂TPE层的Al/有机层/p-Si异质结器件。通过在不同光照条件下的电流-电压和电流-时间测量来分析它们的电学行为。瞬态光电流分析表明有强烈的光响应,支持它们适用于光电子和光伏应用。