Su Wenjie, Kuklin Artem, Jin Ling Hua, Engelgardt Dana, Zhang Han, Ågren Hans, Zhang Ye
School of Chemistry and Chemical Engineering, University of South China, Hengyang, 421001, China.
Department of Physics and Astronomy Uppsala University, Box 516, Uppsala, SE-751 20, Sweden.
Adv Sci (Weinh). 2024 Aug;11(31):e2402875. doi: 10.1002/advs.202402875. Epub 2024 Jun 3.
Exfoliation of 2D non-Van der Waals (non-vdW) semiconductor nanoplates (NPs) from inorganic analogs presents many challenges ahead for further exploring of their advanced applications on account of the strong bonding energies. In this study, the exfoliation of ultrathin 2D non-vdW chromium sulfide (2D CrS) by means of a combined facile liquid-phase exfoliation (LPE) method is successfully demonstrated. The morphology and structure of the 2D CrS material are systematically examined. Magnetic studies show an obvious temperature-dependent uncompensated antiferromagnetic behavior of 2D CrS. The material is further loaded on TiO nanorod arrays to form an S-scheme heterojunction. Experimental measurements and density functional theory (DFT) calculations confirm that the formed TiO@CrS S-scheme heterojunction facilitates the separation and transmission of photo-induced electron/hole pairs, resulting in a significantly enhanced photocatalytic activity in the visible region.
由于键能很强,从无机类似物中剥离二维非范德华(non-vdW)半导体纳米片(NPs)在进一步探索其先进应用方面面临诸多挑战。在本研究中,成功展示了通过一种简便的组合液相剥离(LPE)方法对超薄二维非范德华硫化铬(2D CrS)进行剥离。系统地研究了2D CrS材料的形貌和结构。磁性研究表明2D CrS具有明显的温度依赖性未补偿反铁磁行为。该材料进一步负载在TiO纳米棒阵列上以形成S型异质结。实验测量和密度泛函理论(DFT)计算证实,形成的TiO@CrS S型异质结促进了光致电子/空穴对的分离和传输,从而在可见光区域显著提高了光催化活性。