CONDENSED MATTER: STRUCTURAL, MECHANICAL, AND THERMAL PROPERTIES |
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Surface structure modification of ReSe2 nanosheets via carbon ion irradiation |
Mei Qiao(乔梅)1, Tie-Jun Wang(王铁军)1,†, Yong Liu(刘泳)2, Tao Liu(刘涛)3, Shan Liu(刘珊)1, and Shi-Cai Xu(许士才)1,‡ |
1 College of Physics and Electronic Information, Shandong Key Laboratory of Biophysics, Dezhou University, Dezhou 253023, China; 2 School of Physics, State Key Laboratory of Crystal Materials and Key Laboratory of Particle and Particle Irradiation(MOE), Shandong University, Jinan 250100, China; 3 School of Electronic and Information, Qingdao University, Qingdao 266071, China |
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Abstract The effects of C ion irradiation on multilayer ReSe2 flakes are studied by utilizing different kinds of technologies. The domain sizes, thickness, morphologies of the multilayer ReSe2 flakes on the Al2O3 substrates before and after 1.0-MeV C ion irradiation with different fluence rates are studied by atomic force microscope and scanning electron microscopy. The atomic vibrational spectra of multilayer ReSe2 flakes are detected by micro-Raman spectra. The redshifts of the Raman modes after 1.0-MeV C ion irradiation are observed from the micro-Raman spectra. The elemental compositions and bonding configurations of the multilayer ReSe2 samples before and after irradiation processes are characterized by x-ray photoelectron spectroscopy. The structural properties are also investigated by x-ray diffraction, and it is concluded that after 1.0-MeV C ion irradiation process, multilayer ReSe2 samples continue to grow on Al2O3 substrates, the increase of crystallite size also reveals that the crystallinity is improved with the increase of the layer number after 1.0-MeV C ion irradiation.
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Received: 19 March 2022
Revised: 08 May 2022
Accepted manuscript online: 24 May 2022
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PACS:
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61.05.-a
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(Techniques for structure determination)
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61.05.cp
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(X-ray diffraction)
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61.46.-w
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(Structure of nanoscale materials)
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61.72.-y
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(Defects and impurities in crystals; microstructure)
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Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 12105036, 11775135, and 11805108), the Natural Science Foundation of Shandong Province, China (Grant Nos. ZR2020QA088 and ZR2021QA074), the Taishan Scholars Program of Shandong Province, China (Grant No. tsqn201812104), and the State Key Laboratory of Nuclear Physics and Technology at Peking University, China. |
Corresponding Authors:
Tie-Jun Wang, Shi-Cai Xu
E-mail: Wtj.sdu@foxmail.com;shicaixu@dzu.edu.cn
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Cite this article:
Mei Qiao(乔梅), Tie-Jun Wang(王铁军), Yong Liu(刘泳), Tao Liu(刘涛), Shan Liu(刘珊), and Shi-Cai Xu(许士才) Surface structure modification of ReSe2 nanosheets via carbon ion irradiation 2023 Chin. Phys. B 32 026101
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[1] Apte A, Krishnamoorthy A, Hachtel J A, Susarla S, Yoon J, Sassi L M, Bharadwaj P, Tour J M, Idrobo J C, Kalia R K, Nakano A, Vashishta P, Tiwary C S and Ajayan P M 2019 Nano Lett. 19 6338 [2] Simchi H 2019 Chin. Phys. B 29 027401 [3] Li Y, Fu R Z, Duan Z G, Zhu C H and Fan D D 2022 Bioact. Mater. 9 461 [4] Zhang Q, Ying H, Li X, Xiang R, Zheng Y, Wang H, Su J, Xu M, Zheng X, Maruyama S and Zhang X 2021 ACS Appl. Mater. Inter. 13 31861 [5] Wu Y K, Zhong W, Yang Q J, Hao C, Li Q L, Xu M O and Bao S J 2021 Chem. Eng. J. 427 130960 [6] Li X M, Deng J X, Liu L L, Zhang L L, Sun J, Ge D L, Liu Y Y and Duan R 2018 Surf. Coat. Tech. 352 128 [7] Bian C, Shi J, Liu X, Yang Y, Yang H and Gao H 2022 Chin. Phys. B 31 097304 [8] Ernandes C, Khalil L, Almabrouk H, Pierucci D and Ouerghi 2021 npj 2D Mater. Appl. 5 7 [9] Wolverson D, Crampin S, Kazemi A S, llie A and Bending A J 2014 ACS Nano 8 11154 [10] Jariwala B, Voiry D, Jindal A, Chalke B A, Bapat R, Thamizhavel A, Chhowalla M, Deshmukh M and Bhattacharya A 2016 Chem. Mater. 28 3352 [11] Tongay S, Sahin H, Ko C, Luce A, Fan W, Liu K, Zhou J, Huang Y S, Ho C H, Yan J, Ogletree D F, Aloni S, Ji J, Li S, Li J, Peeters F M and Wu J 2014 Nat. Commun. 5 3252 [12] Yang S, Wang C, Sahin H, Chen H, Li Y, Li S S, Suslu A, Peeters F M, Liu Q, Li J and Tongay S 2015 Nano Lett. 15 1660 [13] Yang S, Tongay S, Yue Q, Li Y, Li B and Lu F 2014 Sci. Rep. 4 5442 [14] Wang X, Huang L, Peng Y, Huo N, Wu K, Xia C, Wei Z, Tongay S and Li J 2016 Nano Res. 9 507 [15] Cui F, Li X, Feng Q, Yin J, Zhou L, Liu D, Liu K, He X, Liang X, Liu S, Lei Z, Liu Z, Peng H, Zhang J, Kong J and Xu H 2017 Nano Res. 10 2732 [16] Xie C, Jiang S, Zou X, Sun Y, Zhao L, Hong M, Chen S, Huan Y, Shi J and Zhou X 2019 Nano Res. 12 149 [17] Naitou Y and Ogawa S 2016 Appl. Phys. Lett. 108 171605 [18] Fujiwara H, Norizuki R, Miura S, Kano S, Tanaka T, Inami W, Kawata Y and Chikada T 2022 Nucl. Mater. Energy 30 101141 [19] Pantousa S, Mergia K, Ionescu A, Manios E, Dellis S, Kinane C, Langridge S, Caruana A, Kentsch U and Messoloras S 2022 Nucl. Mater. Energy 30 101147 [20] Song H L, Yu X F, Chen M, Qiao Mei, Wang T J, Zhang J, Liu Y, Liu P and Wang X L 2018 Appl. Surf. Sci. 439 240 [21] Luxa J, Mazánek V, Mackova A, Malinsky P, Akhmadaliev S and Sofer Z 2018 Appl. Mater. Today 14 216 [22] Zhang N, Liu B and Lin L W 2020 Acta Phys. Sin. 69 016101 (in Chinese) [23] Jiang M Y, Zhu Z J, Chen C K, Li X and Hu X J 2019 Acta Phys. Sin. 68 148101 (in Chinese) [24] Wang J L, Chen C K, Li X, Jiang M Y and Hu X J 2020 Chin. Phys. B 29 018103 [25] Liu P 2013 Waveguide formation, scintillation response and damage properties of functional crystal materials under MeV ion irradiation Ph.D. dissertation (Jinan: Shandong university) (in Chinese) [26] Hafeez M, Gan L, Li H, Ma Y and Zhai T 2016 Adv. Mater. 28 8296 [27] Molina-Sánchez A and Wirtz L 2011 Phys. Rev. B 84 155413 [28] Zhang X, Qiao X F, Shi W, Wu J B, Jiang D S and Tan P H 2015 Chem. Soc. Rev. 44 2757 [29] Zhao W, Ghorannevis Z, Kumar A K, Pang J R, Toh M, Zhang X, Kloc C, Tan P H and Eda G 2013 Nanoscale 5 9677 [30] Zhao H, Wu J, Zhong H, Guo Q, Wang X, Xia F, Yang L, Tan P and Wang H 2015 Nano Res. 8 3651 [31] Feng Y, Zhou W, Wang Y, Zhou J, Liu E, Fu Y, Ni Z, Wu X, Yuan H, Miao F, Wang B, Wan X and Xing D 2015 Phys. Rev. B 92 054110 [32] Qi F, Wang X, Zheng B, Chen Y, Yu B, Zhou J, He J, Li P, Zhang W and Li Y 2017 Electrochim. Acta 224 593 [33] Jiang C H 2014 The technique and application of polycrystalline x-ray diffraction, (Vol. 1) (Beijing: Chemical Industry Press) pp. 62-63 (in Chinese) |
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