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Jing xiang 2d materials8/11/2023 In particular, we have seen some major breakthroughs made in the field of 2D materials in last five years not only in developing novel synthetic methods and exploring new structures/properties but also in identifying innovative applications and pushing forward commercialisation. The unique structural features and physicochemical properties of 2D materials make them one class of the most appealing candidates for a wide range of potential applications. Starting from graphene, 2D materials now have become a big family with numerous members and diverse categories. Research on two-dimensional (2D) materials has been explosively increasing in last seventeen years in varying subjects including condensed matter physics, electronic engineering, materials science, and chemistry since the mechanical exfoliation of graphene in 2004. Wee 31, Zhongming Wei 38, Yuen Wu 36, Zhong-Shuai Wu 39, Jie Xiong 40, Qihua Xiong 41, Weigao Xu 42, Peng Yin 43, Haibo Zeng 44, Zhiyuan Zeng 12, Tianyou Zhai 45, Han Zhang 43, Hui Zhang 4, Qichun Zhang 12, Tierui Zhang 46, Xiang Zhang 47, Li-Dong Zhao 11, Meiting Zhao 48, Weijie Zhao 20, Yunxuan Zhao 46, Kai-Ge Zhou 49, Xing Zhou 45, Yu Zhou 50, Hongwei Zhu 51, Hua Zhang 9 ,*( ), Zhongfan Liu 27 ,*( ) Recent Progress on Two-Dimensional MaterialsĬheng Chang 1, Wei Chen 2, Ye Chen 3, Yonghua Chen 4, Yu Chen 5, Feng Ding 6, Chunhai Fan 7, Hong Jin Fan 8, Zhanxi Fan 9, Cheng Gong 10, Yongji Gong 11, Qiyuan He 12, Xun Hong 13, Sheng Hu 14, Weida Hu 15, Wei Huang 4, Yuan Huang 16, Wei Ji 17, Dehui Li 18, Lain-Jong Li 19, Qiang Li 20, Li Lin 21, Chongyi Ling 20, Minghua Liu 22, Nan Liu 23, Zhuang Liu 24, Kian Ping Loh 2, Jianmin Ma 25, Feng Miao 26, Hailin Peng 27, Mingfei Shao 28, Li Song 29, Shao Su 30, Shuo Sun 31, Chaoliang Tan 32, Zhiyong Tang 33, Dingsheng Wang 34, Huan Wang 35, Jinlan Wang 20, Xin Wang 36, Xinran Wang 37, Andrew T.
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