Department of Chemistry, School of Advanced Science, VIT University, Vellore, Tamil Nadu, 632014, India.
Department of Inorganic Chemistry, University of Madras, Guindy Campus, Chennai, Tamil Nadu, 600025, India.
Top Curr Chem (Cham). 2019 Apr 22;377(3):12. doi: 10.1007/s41061-019-0237-4.
Over the past few years, significant progress has been made in the design of organic semi-conducting conjugated polymers that readily transport holes or electrons and can result in light emission. The conjugated backbone consist mainly of electron-donating (donor) and electron-withdrawing (acceptor) units as alternating groups in a conjugated oligomer or polymer that can be regulated by physical properties such as π conjugation length, monomer alteration, inter/intramolecular interactions and energy levels. Certainly, it is notable today that the highest occupied molecular orbital level of the producing material is localized predominantly on the electron-donating moiety and lowest unoccupied molecular orbital level on the electron-accepting moiety. Conjugated oligomers or polymers are used in many detecting fields due to their exceptional ability to sense toxic chemicals, metal ions and biomolecules. The conjugated polymers have unique delocalized π-electronic "molecular wires" that can expand the fluorescence intensity considerably. The fluorescence intensity of polymers can be quenched by particular quenching molecules. In this review, the fluorescence intensity, detecting of multiple metal ions, solubility, photochemical stability and optoelectronic properties of these conjugated polymers, and how they can be regulated by different functional groups, are discussed in detail.
在过去的几年中,在设计容易传输空穴或电子并导致发光的有机半导体共轭聚合物方面取得了重大进展。共轭主链主要由供电子(供体)和吸电子(受体)单元组成,这些单元作为共轭低聚物或聚合物中的交替基团,可以通过物理性质(如π共轭长度、单体改变、分子内/分子间相互作用和能级)进行调节。当然,今天值得注意的是,产生材料的最高占据分子轨道能级主要定域在供电子部分,而最低未占据分子轨道能级定域在受电子部分。由于其对有毒化学物质、金属离子和生物分子具有出色的感应能力,共轭低聚物或聚合物在许多检测领域得到了广泛应用。共轭聚合物具有独特的离域π电子“分子导线”,可以大大扩展荧光强度。聚合物的荧光强度可以被特定的猝灭分子猝灭。在这篇综述中,详细讨论了这些共轭聚合物的荧光强度、多种金属离子的检测、溶解度、光化学稳定性和光电性质,以及如何通过不同的官能团进行调节。