Zhang Jing, Liu Ke, Liu Zhongshan, Wang Zhaolong, Hua Chunxia, Liu Taihong, Fang Yu
Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710062, P. R. China.
ACS Appl Mater Interfaces. 2021 Feb 3;13(4):5625-5633. doi: 10.1021/acsami.0c21424. Epub 2021 Jan 24.
Development of high-performance, low-power-consumption, small-sized detectors is a key issue for fabricating specific miniaturized chromatographs (GCs). Herein, we report, for the first-time, utilization of a film-based fluorescent sensor as a GC detector. In the studies, we designed a new -carborane derivative of a known cyclometalated alkynyl-gold(III) complex, . Unlike the parent gold(III) complex, the newly synthesized depicted a remarkable aggregation-induced emission (AIE) property, enabling fabrication of a fluorescent film. The film emission is highly sensitive to the presence of ketones such as acetone, 2-pentanone, 3-pentanone, cyclopentanone, etc., in the air. It was demonstrated that the sensing performance of the film could be further improved by changing the film from a planar structure to a tubular one. Via combination with an earlier reported homemade sensory device, a conceptual film-based fluorescent sensor was developed, which demonstrated instant and fully reversible response to the ketones. The experimental detection limits for cyclohexanone and acetone could be lower than 0.08 and 13.0 ppm, respectively. Moreover, the sensor is super stable, as 24 h continuous illumination resulted in less than 1.0% reduction of the fluorescence emission, 50 successive sensings showed no observable decay in the performance, and more than 1 year of storage had no effect upon the property. Further studies demonstrated that the film sensor could be used as a GC detector with performance comparable to the commercial flame ionization detector (FID), which lays the foundation for future applications in specific miniaturized GCs because of its merits in size, power consumption, carrier gas, etc.
开发高性能、低功耗、小型化的探测器是制造特定微型气相色谱仪(GC)的关键问题。在此,我们首次报道了将基于薄膜的荧光传感器用作GC探测器。在研究中,我们设计了一种已知的环金属化炔基金(III)配合物的新型碳硼烷衍生物。与母体金(III)配合物不同,新合成的化合物表现出显著的聚集诱导发光(AIE)特性,能够制备荧光薄膜。该薄膜发射对空气中丙酮、2-戊酮、3-戊酮、环戊酮等酮类物质的存在高度敏感。结果表明,将薄膜从平面结构变为管状结构可进一步提高其传感性能。通过与早期报道的自制传感装置相结合,开发了一种基于薄膜的概念性荧光传感器,该传感器对酮类物质表现出即时且完全可逆的响应。环己酮和丙酮的实验检测限分别可低于0.08 ppm和13.0 ppm。此外,该传感器具有超强稳定性,24小时连续光照导致荧光发射降低不到1.0%,连续50次传感显示性能无明显衰减,储存超过1年对其性能无影响。进一步研究表明,该薄膜传感器可用作GC探测器,其性能与商业火焰离子化检测器(FID)相当,因其在尺寸、功耗、载气等方面的优点,为未来在特定微型GC中的应用奠定了基础。