Interface Defect Engineering of a Large-Scale CVD-Grown MoS2 Monolayer via Residual Sodium at the SiO2/Si Substrate
Interface Defect Engineering of a Large-Scale CVD-Grown MoS2 Monolayer via Residual Sodium at the SiO2/Si Substrate
Citing Articles
2021 {2}
· Shisheng Li, "Salt-Assisted Chemical Vapor Deposition of Two-Dimensional Transition Metal Dichalcogenides", iScience 24, 103229 (2021).
· Luca Seravalli and Matteo Bosi, "A Review on Chemical Vapour Deposition of Two-Dimensional MoS2 Flakes", Materials 14, 7590 (2021).
2022 {7}
· Yang Liao, Sen Luo, Rongsheng Chen, Yuhui Zuo, Xinsheng Wang, and Changjian Zhou, "Synthesis of single-crystalline molybdenum disulfide on molybdenum films aided with NaCl solution treatment", Mater. Des. 215, 1105517 (2022).
· Hari Krishna Neupane and Narayan Prasad Adhikari, "Adsorption of water on C sites vacancy defected graphene/h-BN: First-principles study", J. Mol. Model. 28, 107 (2022).
· F. GoncaAras, Alp Yilmaz, H. Gunalp Tasdelen, Ayberk Ozden, Feridun Ay, Nihan Kosku Perkgoz, and Aydan Yeltik, "A review on recent advances of chemical vapor deposition technique for monolayer transition metal dichalcogenides (MX2: Mo, W; S, Se, Te)", Mater. Sci. Semicond. Process. 148, 106829 (2022).
· Sang Wook Han, Won Seok Yun, Manil Kang, Sangsun Lee, and Jusang Park, "Phase transition of a MoS2 monolayer through top layer desulfurization by He+ ion irradiation", J. Appl. Phys. 131, 224301 (2022).
· Robert T. Busch, Riccardo Torsi, Angelica Drees, David Moore, Andrew Sarangan, Nicholas R. Glavin, Joshua A. Robinson, Jonathan P. Vernon, W. Joshua Kennedy, and Peter R. Stevenson, "Effective Optical Properties of Laterally Coalescing Monolayer MoS2", J. Phys. Chem. Lett. 13, 5808-5814 (2022).
· Songyan Xue, Huace Hu, Yinuo Xu, Yingchen Wang, Jing Long, Binzhang Jiao, Yuncheng Liu, Xuhao Fan, Hui Gao, Leimin Deng, Wei Xiong, "Research Progress and Application of Femtosecond Laser-Induced Patterned Growth of Nanomaterials", Chin. J. Lasers 49, 1202001 (2022) (written in Chinese).
· Xinli Ma, Jinxi Zhang, Yang Sun, Chen Wu, Guangyu Geng, Jing Zhang, Enxiu Wu, Linyan Xu, Sen Wu, Xiaodong Hu, and Jing Liu, "Engineering of Oxidized Line Defects on CVD-Grown MoS2 Flakes", ACS Appl. Mater. Interfaces 14, 47288-47299 (2022).
2023 {4}
· Maryam Zamani, Farid Jamali-Sheini, and Mohsen Cheraghizade, "Space-charge-limited current passivation of the self-powered and ultraviolet-to-visible range bilayer p-Si/n-Bi2S3 heterojunction photodetector by Ag coating", J. Alloys Compd. 933, 167665 (2023).
· Naznin Shaikh, Indrajit Mukhopadhyay, and Abhijit Ray, "Improved electrocatalytic hydrogen evolution characteristics in Mn-doped MoS2 nanosheets grown under a non-equilibrium condition", Int. J. Hydrog. Energy 48, 15944-15955 (2023).
· Wonchae Jeong, Taeyoung Kim, Yoonsok Kim, Mun Seok Jeong, and Eun Kyu Kim, "Improved characteristics of MoS2 transistors with selective doping using 1,2-dichloroethane", Semicond. Sci. Technol. 38, 075013 (2023).
· Chi Zhang and Shumin Xiao, "Progress in CMOS-Compatible Fabrication Process of Dielectric Metasurfaces", Acta Opt. Sin. 43, 0822003 (2023) (written in Chinese).
2024 {8}
· Ali Altuntepe, Serkan Erkan, Mehmet Ali Olgar, Güldöne Toplu, and Recep Zan, "Potassium doping of sputtered MoS2 films by CVD method", J. Mater. Sci.: Mater. Electron. 35, 69 (2024).
· Saeed Sovizi, Shayan Angizi, Sayed Ali Ahmad Alem, Reyhaneh Goodarzi, Mohammad Reza Rahmani Taji Boyuk, Hajar Ghanbari, Robert Szoszkiewicz, Abdolreza Simchi, and Peter Kruse, "Plasma Processing and Treatment of 2D Transition Metal Dichalcogenides: Tuning Properties and Defect Engineering", Chem. Rev. 123, 13869-13951 (2024).
· Sang Wook Han, Won Seok Yun, Seugho Seong, Zeeshan Tahir, Yong Soo Kim, Minji Ko, Sunmin Ryu, Jong-Seong Bae, Chang Won Ahn, and Jeongsoo Kang, "Hidden Direct Bandgap of Bi2O2Se by Se Vacancy and Enhanced Direct Bandgap of Bismuth Oxide Overlayer", J. Phys. Chem. Lett. 15, 1590-1595 (2024).
· Jinglong Liang, Chuanbo Wei, Dongxing Huo, and Hui Li, "Research progress on modification and application of two-dimensional anode materials for sodium ion batteries", J. Energy Storage 85, 111044 (2024).
· Ting Li, Chong Zhang, Yali Cai, Wenfeng Yue, Jie Liu, Chuanwei Huang, Quansheng Guo, Tingting Jia, and Shuhui Yu, "Sodium chloride-assisted CVD enables controlled synthesis of large single-layered MoS2", RSC Adv. 14, 30982-30989 (2024).
· Linlin Zang, Mengxia Wang, Qi Han, and Zhongying Wang, "Phase-Dependent Properties and Applications of MoS2 in Environmental Remediation: Synthesis, Characterization, and Performance Optimization", ACS EST Water 4, 4690-4707 (2024).
· Jiafan Qu, Yadong Wei, Liang Zhao, Ruoxi Tan, Weiqi Li, Hongyan Shi, Yueling Zhang, Jianqun Yang, Bo Gao, and Xingji Li, "Defect-Mediated Exciton Localization and Relaxation in Monolayer MoS2", ACS Nano 18, 34322-34331 (2024). See also: Research Square, DOI:10.21203/rs.3.rs-4972498/v1.
· S. Toumi and Z. Ouennoughi, "Temperature-dependent analysis of charge carrier current in Al/SiO2/p-type Si MOS structures with TiN-induced traps via the Poole-Frenkel conduction mechanism using the vertical optimization method", BOHR J. Mater. Sci. Engin. 2, 1-12 (2024).
2025 {3}
· Jinfeng Yang, Ye Fan, Ryo Mizuta, Max Rimmer, Jack Donoghue, Shaoliang Guan, Sarah J. Haigh, and Stephan Hofmann, "Operando Scanning Electron Microscopy Study of Support Interactions and Mechanisms of Salt-Assisted WS2 Growth", Chem. Mater. 37, 989-1000 (2025).
· Shuva Mitra, Laleh Avazpour, and Irena Knezevic, "Terahertz conductivity of two-dimensional materials: a review", J. Phys.: Condens. Matter 37, 133005 (2025).
· Kaixiang Shu, Lam Nguyen Do, Wei Gao, Johan Biscaras, and Abhay Shukla, "Photoluminescence in single-layer MoS2: The role of impurities and doping", J. Appl. Phys. 138, 064303 (2025).
2026 {1}
· Krishna Moorthy Ponnusamy, Jungwoo Bong, Hyunjin Lee, Jun-Hui Choi, Bhishma Pandit, Soheil Ghods, Santhosh Durairaj, Jong Bae Park, Yoon Kyeung Lee, Taehun Lee, Jae-Hyun Lee, Hyeon-Sik Jang, Samygounder Chandramohan, and Keun Heo, "Promoter-Free Synthesis of Wafer-Scale Monolayer MoS2 for Visible to Near-Infrared Photodetection", ACS Appl. Mater. Interfaces, accepted (2026).