Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710062, PR China.
Chem Asian J. 2012 Jun;7(7):1576-82. doi: 10.1002/asia.201100958. Epub 2012 Apr 5.
A stable, ultrasensitive, and fully reversible fluorescent sensing film for organic amines has been fabricated by assembling cholesterol (Chol)-derived perylene bisimide on a glass plate surface. The compound exhibits excellent film formation properties and forms well-defined nanofibers, as evidenced by SEM and AFM measurements. It has been revealed that besides the molecular structure of the specially designed perylene derivative, the existence of nanofibers in the film is another key factor to endow the film with superior sensing ability for organic amines, including aniline. The detection limit of the amine is ca. 150.0 ppt in the vapor phase and at room temperature. Furthermore, the sensing process is free of interference from common organic solvents, nitroaromatics, and particularly phenols, which makes the film a potential candidate to be used in lung cancer diagnoses and related applications.
通过在玻璃表面组装胆固醇衍生的苝二酰亚胺,制备了一种用于有机胺的稳定、超灵敏且完全可还原的荧光传感膜。该化合物具有出色的成膜性能,并形成了定义明确的纳米纤维,这可以通过 SEM 和 AFM 测量得到证明。已经揭示出,除了特别设计的苝衍生物的分子结构外,薄膜中纳米纤维的存在是赋予薄膜对包括苯胺在内的有机胺具有优异传感能力的另一个关键因素。在气相和室温下,胺的检测限约为 150.0 ppt。此外,传感过程不受常见有机溶剂、硝基芳烃以及特别是酚类的干扰,这使得该薄膜成为用于肺癌诊断和相关应用的潜在候选物。