Cai Jixiang, Li Feixing, Zhang Xueshuai, Wang Jianguo, Yu Zecong, Feng Bo, Li Youwen
Xinjiang Biomass Solid Waste Resources Technology and Engineering Center, College of Chemistry and Environmental Science, Kashi University, Kashi 844000, China.
Shaanxi Key Laboratory of Condensed Matter Structures and Properties and MOE Key Laboratory of Materials Physics and Chemistry Under Extraordinary Conditions, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China.
Materials (Basel). 2025 Jun 24;18(13):2999. doi: 10.3390/ma18132999.
Two-dimensional film materials with unique atomic structures and electronic operation modes have demonstrated amazing application potential and value in the field of high technology. Among the various methods for preparing 2D film materials, PLD technology has become the preferred technology for rapid and green preparation of high-quality, complex structured 2D film materials due to its features such as maintaining the excellent stoichiometric ratio of the target, strong process flexibility, and non-polluting environment. Therefore, this paper discusses the exciting topic of PLD technology in the preparation and application of 2D film materials. Based on a systematic exposition of its basic principles and influencing factors, it provides a detailed overview of the current application status of PLD technology in the preparation of various 2D film materials such as carbides, sulfides, oxides, nitrides, and perovskites. Meanwhile, the advantages and disadvantages of PLD technology in the preparation of 2D film materials were also positively summarized, and the challenges and emerging strategies it faces in the future preparation of 2D film materials were cautiously discussed. This provides practical suggestions and reflections for the sustainable development of PLD technology in the fields of basic research, performance regulation, device development, and application of 2D film materials preparation.
具有独特原子结构和电子运行模式的二维薄膜材料在高科技领域展现出了惊人的应用潜力和价值。在制备二维薄膜材料的各种方法中,脉冲激光沉积(PLD)技术因其能保持靶材优异的化学计量比、工艺灵活性强且无污染环境等特点,已成为快速、绿色制备高质量、复杂结构二维薄膜材料的首选技术。因此,本文探讨了PLD技术在二维薄膜材料制备与应用这一令人关注的话题。在系统阐述其基本原理和影响因素的基础上,详细概述了PLD技术在制备碳化物、硫化物、氧化物、氮化物和钙钛矿等各种二维薄膜材料方面的当前应用状况。同时,也积极总结了PLD技术在制备二维薄膜材料中的优缺点,并谨慎讨论了其在未来二维薄膜材料制备中面临的挑战和新出现的策略。这为PLD技术在二维薄膜材料制备的基础研究、性能调控、器件开发及应用等领域的可持续发展提供了切实可行的建议和思考。