Li Jie, Tao Li, Wang Yanqing, Yao Yali, Guo Qiang
College of Optoelectronic Technology, Chengdu University of Information Technology, Chengdu, China.
College of Polymer Science and Engineering, Sichuan University, Chengdu, China.
Front Chem. 2021 Jun 18;9:717569. doi: 10.3389/fchem.2021.717569. eCollection 2021.
On the basis of planar and relatively rigid nitrogen-rich heterocyclic system of the heptazine core, heptazine-based -conjugated materials have aroused widespread attention over the past decade by virtue of the fascinating electronic, optical, thermal, and mechanical properties in the fields of light-emitting, photocatalysis, sensors, environmental remediation, and so forth. However, there are still several obstacles to be solved before practical applications, such as low photoluminescence quantum efficiencies for light-emitting and weak visible absorption for photocatalysis. To further enhance various properties of heptazine-based -conjugated materials, a series of strategies have been developed, including ingenious molecular design and modification, novel synthetic, and preparation methods. In this review, the significant progress of monomeric and polymeric heptazine-based -conjugated materials and their applications typically in light-emitting are reviewed, which is beneficial for the acceleration of practical applications of heptazine-based materials and devices.
基于七嗪核心的平面且相对刚性的富氮杂环体系,在过去十年中,基于七嗪的共轭材料凭借其在发光、光催化、传感器、环境修复等领域迷人的电子、光学、热学和机械性能而引起了广泛关注。然而,在实际应用之前仍有几个障碍需要解决,例如发光的光致发光量子效率低以及光催化的可见光吸收弱。为了进一步提高基于七嗪的共轭材料的各种性能,已经开发了一系列策略,包括巧妙的分子设计和修饰、新颖的合成及制备方法。在这篇综述中,综述了单体和聚合物七嗪基共轭材料的重大进展及其典型的发光应用,这有利于加速七嗪基材料和器件的实际应用。