Hydrogenation-induced atomic stripes on the 2H-MoS2 surface
Hydrogenation-induced atomic stripes on the 2H-MoS2 surface
Citing Articles
2016 {5}
· Yanli Wang and Yi Ding, "Hydrogen-induced structural stability and promising electronic properties of molybdenum and tungsten dinitride nanosheets: A first-principles study", J. Mater. Chem. C 4, 7485-7493 (2016).
· Zhen Zhu, Hartwin Peelaers, and Chris G. Van de Walle, "Hydrogen intercalation in MoS2", Phys. Rev. B 94, 085426 (2016).
· Won Seok Yun and J. D. Lee, "Schottky barrier tuning of the single-layer MoS2 on magnetic metal substrates through vacancy defects and hydrogenation", Phys. Chem. Chem. Phys. 18, 31027-31032 (2016).
· Sang Wook Han, Youngsin Park, Young Hun Hwang, Soyoung Jekal, Manil Kang, Wang G. Lee, Woochul Yang, Gun-Do Lee, and Soon Cheol Hong, "Electron beam-formed ferromagnetic defects on MoS2 surface along 1T phase transition", Sci. Rep. 6, 38730 (2016).
· Sang Wook Han, Youngsin Park, Young Hun Hwang, Wang G. Lee, and S. C. Hong, "Investigation of electron irradiation-induced magnetism in layered MoS2 single crystals", Appl. Phys. Lett. 109, 252403 (2016).
2017 {5}
· Debora Pierucci, Hugo Henck, Zeineb Ben Aziza, Carl H. Naylor, Adrian Balan, Julien E. Rault, Mathieu G. Silly, Yannick J. Dappe, François Bertran, Patrick Le Fèvre, Fausto Sirotti, A. T. Charlie Johnson, and Abdelkarim Ouerghi, "Tunable Doping in Hydrogenated Single Layered Molybdenum Disulfide", ACS Nano 11, 1755-1761 (2017).
· R. Sahu, U. Bhat, N. M. Batra, H. Sharona, B. Vishal, S. Sarkar, S. Assa Aravindh, S. C. Peter, I. S. Roqan, P. M. F. J. Costa, and R. Datta, "Nature of low dimensional structural modulations and relative phase stability in RexMo(W)1-xS2 transition metal dichalcogenide alloys", J. Appl. Phys. 121, 105101 (2017). See also: arXiv:1611.00478.
· Hongxing Li, Min Huang, and Gengyu Cao, "Stability, bonding and electronic structures of halogenated MoS2 monolayer: A first-principles study", Physica E 91, 8-14 (2017).
· Sang Wook Han, Gi-Beom Cha, Youngsin Park, and S. C. Hong, "Hydrogen physisorption based on the dissociative hydrogen chemisorption at the sulphur vacancy of MoS2 surface", Sci. Rep. 7, 7152 (2017).
· Kyung Yeol Ma, Seong In Yoon, A-Rang Jang, Hu Young Jeong, YongJin Kim, Pramoda K. Nayak, and Hyeon Suk Shin, "Hydrogenation of Monolayer Molybdenum Diselenide via Hydrogen Plasma Treatment", J. Mater. Chem. C 5, 11294-11300 (2017).
2018 {5}
· Yun Ji Kim, Woojin Park, Jin Ho Yang, Yonghun Kim, and Byoung Hun Lee, "Contact resistance reduction of WS2 using high-pressure hydrogen annealing", IEEE J. Electron Devices Soc. 6, 164-168 (2018).
· Yafei Zhao, Wei Wang, Can Li, Yizhe Sun, Huanfeng Xu, Jian Tu, Jiai Ning, Yongbing Xu, and Liang He, "Enhanced photocatalytic activity of nonmetal doped monolayer MoSe2 by hydrogen passivation: First-principles study", Appl. Surf. Sci. 456, 133-139 (2018).
· Gi Wan Jeon, Kyu Won Lee, and Cheol Eui Lee, "Ferromagnetism in monolayer MoS2 dictated by hydrogen adsorption sites and concentration", Physica E 104, 309-313 (2018).
· Chithra H. Sharma, Ananthu P. Surendran, Abin Varghese, and Madhu Thalakulam, "Stable and scalable 1T MoS2 with low temperature-coefficient of resistance", Sci. Rep. 8, 12463 (2018). See also: arXiv:1801.07049.
· Soohyun Cho, Beom Seo Kim, Beomyoung Kim, Wonshik Kyung, Jeongjin Seo, Min Park, Jun Woo Jeon, Kiyohisa Tanaka, Jonathan D. Denlinger, Changyoung Kim, Dorj Odkhuu, Byung Hoon Kim, and Seung Ryong Park, "Electronic-dimensionality reduction of bulk MoS2 by hydrogen treatment", Phys. Chem. Chem. Phys. 20, 23007-23012 (2018).
2019 {5}
· Natália P. Rezende, Alisson R. Cadore, Andreij C. Gadelha, Cíntia L. Pereira, Vinícius Ornelas, Kenji Watanabe, Takashi Taniguchi, André S. Ferlauto, Angelo Malachias, Leonardo C. Campos, and Rodrigo G. Lacerda, "Probing the Electronic Properties of Monolayer MoS2 via Interaction with Molecular Hydrogen", Adv. Elect. Mater. 5, 1800591 (2019).
· Sang Wook Han, Gi-Beom Cha, Manil Kang, Jong Duk Lee,and Soon Cheol Hong, "Hydrogen interaction with selectively desulfurized MoS2 surface using Ne+ sputtering", J. Appl. Phys. 125, 085102 (2019).
· Younghun Hwang, Won Seok Yun, Gi-Beom Cha, Soon Cheol Hong, and Sang Wook Han, "Thermally driven homonuclear-stacking phase of MoS2 through desulfurization", Nanoscale 11, 11138-11144 (2019).
· Sang Wook Han, Gi-Beom Cha, Kyoo Kim, and Soon Cheol Hong, "Hydrogen interaction with a sulfur-vacancy-induced occupied defect state in the electronic band structure of MoS2", Phys. Chem. Chem. Phys. 21, 15302-15309 (2019).
· Eunsung Jekal and Dao Phuong, "Magnetism and Magnetocystalline Anisotropy of Localized 1H/1T by S Atom Sliding", Preprints 2019110291 (2019)
2020 {4}
· Yi Ding and Yanli Wang, "Intrinsic ferromagnetism and valley polarization in hydrogenated group V transition-metal dinitride (MN2H2, M = V/Nb/Ta) nanosheets: insights from first-principles", Nanoscale 12, 1002-1012 (2020).
· Amine Slassi, David Cornil, and Jérôme Cornil, "Theoretical characterization of the electronic properties of heterogeneous vertical stacks of 2D metal dichalcogenides containing one doped layer", Phys. Chem. Chem. Phys. 22, 14088-14098 (2020).
· Ekaterina N. Voronina, Yu A. Mankelevich, Lev S. Novikov, T. V. Rakhimova, Daniil Marinov, and Jean-Francois DeMarneffe, "Mechanisms of hydrogen atom interactions with MoS2 monolayer", J. Phys.:Condens. Matter 32, 445003 (2020).
· Kaiying Dou, Yandong Ma, Rui Peng, Wenhui Du, Baibiao Huang, and Ying Dai, "Promising valleytronic materials with strong spin-valley coupling in two-dimensional MN2X2 (M = Mo, W; X = F, H)", Appl. Phys. Lett. 117, 172405 (2020).
2021 {3}
· Zhenxiao Shang, Kaimei Wang, and Menghong Li, "Tunable electronic and optical properties of new two-dimensional Blue P/MoSe2 van der Waals heterostructures with the potential for photocatalysis applications", Chem. Phys. Lett. 777, 138740 (2021).
· Huixing Li, Yan Xue, and Xiancai Zeng, "Tunable electronic and optical properties of new two-dimensional CuCl/GaSe van der Waals heterostructures with the potential for photocatalysis application", Chem. Phys. Lett. 780, 138936 (2021).
· Mauricio V. Bessa, Wellington D. Freitas, Natália P. Neme, Luiz G. P. Martins, Ana P. M. Barboza, Matheus J. S. Matos, Mario S. C. Mazzoni, and Bernardo R. A. Neves, "Electromechanical Modulations in Transition Metal Dichalcogenide Nanosheets: Implications for Environmental Sensors", ACS Appl. Nano Mater. 4, 11305-11311 (2021).
2022 {2}
· Dimitris Tsikritzis, Nataliya Tsud, Tomáš Skála, and Labrini Sygellou, "Unravelling the phase transition of 2H-MoS2 to 1T-MoS2 induced by the chemical interaction of Pd with molybdenum disulfide–graphene hybrids", Appl. Surf. Sci. 599, 153896 (2022). See also: SSRN.4040467.
· Wenxuan Guo, Mengge Li, Xiaoxiang Wu, Yali Liu, Tianjian Ou, Cong Xiao, Zhanjie Qiu, Yuan Zheng, and Yewu Wang, "Nonvolatile n-Type Doping and Metallic State in Multilayer-MoS2 Induced by Hydrogenation Using Ionic-Liquid Gating", Nano Lett. 22, 8957-8965 (2022).
2023 {3}
· Chenyin Feng, Wenwei Wu, Huidi Liu, Junke Wang, Houzhao Wan, Guokun Ma, and Hao Wang, "Emerging Opportunities for 2D Materials in Neuromorphic Computing", Nanomaterials 13, 2720 (2023).
· Erika Giangrisostomi, Ruslan Ovsyannikov, Robert Haverkamp, Nomi L. A. N. Sorgenfrei, Stefan Neppl, Hikmet Sezen, Fredrik O. L. Johansson, Svante Svensson, and Alexander Föhlisch, "Inhomogeneity of Cleaved Bulk MoS2 and Compensation of Its Charge Imbalances by Room-Temperature Hydrogen Treatment", Adv. Mater. Interfaces 10, 2300392 (2023).
· Yanli Wang and Yi Ding, "Tunable structural phases and electronic properties of group V MSi2N4 (M = V, Nb, Ta) nanosheets via surface hydrogenation: a first-principles study", J. Mater. Chem. C 11, 17034-17043 (2023).
2024 {2}
· Jong Hun Kim, Hayeong Sung, and Gwan-Hyoung Lee, "Phase Engineering of Two-Dimensional Transition Metal Dichalcogenides", Small Sci. 4, 2300093 (2024).
· Caijia Sun, Haoshen Ye, Yijie Zhu, Leiming Chen, Dongmei Bai, and Jianli Wang, "Ferroelectrically controlled electromagnetic and transport properties of VN2H2/Al2O3 van der Waals multiferroic heterostructures", Nanoscale 16, 15746-15757 (2024).
2025 {2}
· Xiang Li, Xin-Wei Yi, Jing-Yang You, Jia-Wen Li, Qing-Han Yang, Gang Su, and Bo Gu, "Bilateral Hydrogenation Realizes High-Temperature Quantum Anomalous Hall Insulator in 2D Cr2Ge2Te6", arXiv:2509.09164 (2025).
· Meng Su, Dingwen Zhang, Haoshen Ye, G. P. Zhang, Mingqiang Gu, and Jianli Wang, "Interlayer-sliding controlled magneto-optical effect and ferrovalley in a fully compensated ferrimagnetic bilayer", Phys. Rev. B 112, 195427 (2025).