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Jiang Long-Xing, Li Qing-Chao, Zhang Xu, Li Jing-Feng, Zhang Jing, Chen Zu-Xin, Zeng Min, Wu Hao.Spintronic devices based on topological and two-dimensional materials. Acta Physica Sinica, 2024, 73(1): 017505.doi:10.7498/aps.73.20231166 |
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Fan Xiao-Zheng, Li Yi-Lian, Wu Yi, Chen Jun-Cai, Xu Guo-Liang, An Yi-Peng.Magnetism and spin transport properties of two-dimensional magnetic semiconductor kagome lattice Nb3Cl8monolayer. Acta Physica Sinica, 2023, 72(24): 247503.doi:10.7498/aps.72.20231163 |
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Yu Ze-Hao, Zhang Li-Fa, Wu Jing, Zhao Yun-Shan.Recent progress of 2-dimensional layered thermoelectric materials. Acta Physica Sinica, 2023, 72(5): 057301.doi:10.7498/aps.72.20222095 |
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Li Ce, Yang Dong-Liang, Sun Lin-Feng.Research progress of neuromorphic devices based on two-dimensional layered materials. Acta Physica Sinica, 2022, 71(21): 218504.doi:10.7498/aps.71.20221424 |
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Liu Nan-Shu, Wang Cong, Ji Wei.Recent research advances in two-dimensional magnetic materials. Acta Physica Sinica, 2022, 71(12): 127504.doi:10.7498/aps.71.20220301 |
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Liu Yu-Ting, He Wen-Yu, Liu Jun-Wei, Shao Qi-Ming.Berry curvature-induced emerging magnetic response in two-dimensional materials. Acta Physica Sinica, 2021, 70(12): 127303.doi:10.7498/aps.70.20202132 |
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Liao Jun-Yi, Wu Juan-Xia, Dang Chun-He, Xie Li-Ming.Methods of transferring two-dimensional materials. Acta Physica Sinica, 2021, 70(2): 028201.doi:10.7498/aps.70.20201425 |
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He Cong-Li, Xu Hong-Jun, Tang Jian, Wang Xiao, Wei Jin-Wu, Shen Shi-Peng, Chen Qing-Qiang, Shao Qi-Ming, Yu Guo-Qiang, Zhang Guang-Yu, Wang Shou-Guo.Research progress of spin-orbit torques based on two-dimensional materials. Acta Physica Sinica, 2021, 70(12): 127501.doi:10.7498/aps.70.20210004 |
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Wang Hai-Yu, Liu Ying-Jie, Xun Lu-Lu, Li Jing, Yang Qing, Tian Qi-Yun, Nie Tian-Xiao, Zhao Wei-Sheng.Research progress of preparation of large-scale two-dimensional magnetic materials and manipulation of Curie temperature. Acta Physica Sinica, 2021, 70(12): 127301.doi:10.7498/aps.70.20210223 |
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Xiao Han, Mi Meng-Juan, Wang Yi-Lin.Recent development in two-dimensional magnetic materials and multi-field control of magnetism. Acta Physica Sinica, 2021, 70(12): 127503.doi:10.7498/aps.70.20202204 |
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Wang Hui, Xu Meng, Zheng Ren-Kui.Research progress and device applications of multifunctional materials based on two-dimensional film/ferroelectrics heterostructures. Acta Physica Sinica, 2020, 69(1): 017301.doi:10.7498/aps.69.20191486 |
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Xu Yi-Quan, Wang Cong.All-optical devices based on two-dimensional materials. Acta Physica Sinica, 2020, 69(18): 184216.doi:10.7498/aps.69.20200654 |
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Wu Xiang-Shui, Tang Wen-Ting, Xu Xiang-Fan.Recent progresses of thermal conduction in two-dimensional materials. Acta Physica Sinica, 2020, 69(19): 196602.doi:10.7498/aps.69.20200709 |
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Xu Hong, Yuan Zheng-Yi, Huang Tong-Fei, Wang Xiao, Chen Zheng-Xian, Wei Jin, Zhang Xiang, Huang Yuan.Inspiration of wrinkles in layered material for the mechanism study of several geological activities. Acta Physica Sinica, 2020, 69(2): 026101.doi:10.7498/aps.69.20190122 |
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Wang Peng-Cheng, Cao Yi, Xie Hong-Guang, Yin Yao, Wang Wei, Wang Ze-Ying, Ma Xin-Chen, Wang Lin, Huang Wei.Magnetic properties of layered chiral topological magnetic material Cr1/3NbS2. Acta Physica Sinica, 2020, 69(11): 117501.doi:10.7498/aps.69.20200007 |
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Shi Ruo-Yu, Wang Lin-Feng, Gao Lei, Song Ai-Sheng, Liu Yan-Min, Hu Yuan-Zhong, Ma Tian-Bao.Quantitative calculation of atomic-scale frictional behavior of two-dimensional material based on sliding potential energy surface. Acta Physica Sinica, 2017, 66(19): 196802.doi:10.7498/aps.66.196802 |
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Li Zhu-Song, Steven Zhu.Continuum modeling of thermal transport in superlattices and layered materials for new energy matierlas. Acta Physica Sinica, 2016, 65(11): 116802.doi:10.7498/aps.65.116802 |
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Zhang Xin-Wei, Hua Zheng-He, Jiang Yu-Wen, Yang Shao-Guang.Progress in sol-gel autocombustion synthesis of metals and alloys. Acta Physica Sinica, 2015, 64(9): 098101.doi:10.7498/aps.64.098101 |
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Zhou Zhuo-Hui, Liu Xiao-Lai, Huang Da-Qing, Kang Fei-Yu.Design and preparation of a low frequency absorber based on hollowed-out cross-shaped meta-material structure. Acta Physica Sinica, 2014, 63(18): 184101.doi:10.7498/aps.63.184101 |