State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, Fujian, 350108 (P. R., China.
College of Materials Science and Engineering, Fuzhou University, Fuzhou, Fujian, 350108, P. R. China.
Angew Chem Int Ed Engl. 2023 Mar 27;62(14):e202216434. doi: 10.1002/anie.202216434. Epub 2023 Feb 24.
Poly (triazine imide) photocatalysts prepared via molten salt methods emerge as promising polymer semiconductors with one-step excitation capacity of overall water splitting. Unveiling the molecular conjugation, nucleation, and crystallization processes of PTI crystals is crucial for their controllable structure design. Herein, microscopy characterization was conducted at the PTI crystallization front from meso to nano scales. The heptazine-based precursor was found to depolymerize to triazine monomers within molten salts and KCl cubes precipitate as the leading cores that guide the directional stacking of PTI molecular units to form aggregated crystals. Upon this discovery, PTI crystals with improved dispersibility and enhanced photocatalytic performance were obtained by tailoring the crystallization fronts. This study advances insights into the directional assembling of PTI monomers on salt templates, placing a theoretical foundation for the ordered condensation of polymer crystals.
聚(三嗪亚胺)光催化剂通过熔融盐法制备,是一种很有前途的聚合物半导体,具有整体水分解的一步激发能力。揭示 PTI 晶体的分子键合、成核和结晶过程对于其可控结构设计至关重要。本文在从中等到纳米尺度的 PTI 结晶前沿进行显微镜表征。发现基于六嗪的前体在熔融盐中解聚为三嗪单体,KCl 立方体沉淀作为引导核心,指导 PTI 分子单元的定向堆积形成聚集晶体。在此发现的基础上,通过调整结晶前沿,获得了分散性更好、光催化性能增强的 PTI 晶体。该研究深入了解了 PTI 单体在盐模板上的定向组装,为聚合物晶体的有序缩合奠定了理论基础。