Averchenko Aleksandr V, Abbas Omar A, Salimon Igor A, Zharkova Ekaterina V, Grayfer Ekaterina D, Lipovskikh Svetlana, McNaughter Paul, Lewis David, Hallam Toby, Lagoudakis Pavlos G, Mailis Sakellaris
Center for Photonic Science and Engineering (CPhSE), Skolkovo Institute of Science and Technology, 3 Nobel Street, Moscow, 143026, Russian Federation.
Laser and Optoelectronics Department, College of Engineering, Al-Nahrain University, Baghdad, 10072, Iraq.
Small. 2024 Nov;20(44):e2401891. doi: 10.1002/smll.202401891. Epub 2024 Jul 14.
Various polytypes of van der Waals (vdW) materials can be formed by sulfur and tin, which exhibit distinctive and complementary electronic properties. Hence, these materials are attractive candidates for the design of multifunctional devices. This work demonstrates direct selective growth of tin sulfides by laser irradiation. A 532 nm continuous wave laser is used to synthesize centimeter-scale tin sulfide tracks from single source precursor tin(II) o-ethylxanthate under ambient conditions. Modulation of laser irradiation conditions enables tuning of the dominant phase of tin sulfide as well as SnS/SnS heterostructures formation. An in-depth investigation of the morphological, structural, and compositional characteristics of the laser-synthesized tin sulfide microstructures is reported. Furthermore, laser-synthesized tin sulfides photodetectors show broad spectral response with relatively high photoresponsivity up to 4 AW and fast switching time (τ = 1.8 ms and τ = 16 ms). This approach is versatile and can be exploited in various fields such as energy conversion and storage, catalysis, chemical sensors, and optoelectronics.
硫和锡可以形成各种范德华(vdW)材料的多型体,它们具有独特且互补的电子特性。因此,这些材料是设计多功能器件的有吸引力的候选材料。这项工作展示了通过激光辐照直接选择性生长硫化锡。在环境条件下,使用532 nm连续波激光从单源前驱体乙基黄原酸亚锡合成厘米级的硫化锡轨迹。激光辐照条件的调制能够调节硫化锡的主导相以及形成SnS/SnS异质结构。报道了对激光合成的硫化锡微结构的形态、结构和成分特征的深入研究。此外,激光合成的硫化锡光电探测器显示出宽光谱响应,具有高达4 AW的相对高光响应率和快速开关时间(τ = 1.8 ms和τ = 16 ms)。这种方法具有通用性,可用于能量转换与存储、催化、化学传感器和光电子学等各个领域。