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2D V-V Binary Materials: Status and Challenges.
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TLDR
A review of the historical work is provided for both theoretical predictions and experimental advances of 2D V-V binary materials, and their various intriguing electronic properties are discussed, including band structure, carrier mobility, Rashba effect, and topological state.Abstract:
2D phosphorene, arsenene, antimonene, and bismuthene, as a fast-growing family of 2D monoelemental materials, have attracted enormous interest in the scientific community owing to their intriguing structures and extraordinary electronic properties. Tuning the monoelemental crystals into bielemental ones between group-VA elements is able to preserve their advantages of unique structures, modulate their properties, and further expand their multifunctional applications. Herein, a review of the historical work is provided for both theoretical predictions and experimental advances of 2D V-V binary materials. Their various intriguing electronic properties are discussed, including band structure, carrier mobility, Rashba effect, and topological state. An emphasis is also given to their progress in fabricated approaches and potential applications. Finally, a detailed presentation on the opportunities and challenges in the future development of 2D V-V binary materials is given.read more
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A comprehensive review on the state-of-the-art of piezoelectric energy harvesting
Nurettin Sezer,Muammer Koç +1 more
TL;DR: A comprehensive review on the state-of-the-art of piezoelectric energy harvesting is presented in this paper, where the authors present the broad spectrum of applications of piezolectric materials for clean power supply to wireless electronics in diverse fields.
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MXene/Polymer Membranes: Synthesis, Properties, and Emerging Applications
Lingfeng Gao,Chao Li,Weichun Huang,Shan Mei,Han Lin,Qi Ou,Ye Zhang,Jia Guo,Feng Zhang,Shixiang Xu,Han Zhang +10 more
TL;DR: The 2D transition metal carbides or nitrides, known as MXenes, are a new family of 2D materials with close to 30 members experimentally synthesized and dozens more theoretically investigated.
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Black Phosphorus Field-effect Transistors
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TL;DR: In this paper, a few-layer black phosphorus crystals with thickness down to a few nanometres are used to construct field effect transistors for nanoelectronic devices. But the performance of these materials is limited.
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Layered Oxide Cathodes Promoted by Structure Modulation Technology for Sodium‐Ion Batteries
Yao Xiao,Yao Xiao,Yao Xiao,Nasir Mahmood Abbasi,Yan-Fang Zhu,Shi Li,Shuang-Jie Tan,Wei Ling,Ling Peng,Tingqiang Yang,Lude Wang,Xiaodong Guo,Ya-Xia Yin,Han Zhang,Yu-Guo Guo +14 more
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Tellurene-based saturable absorber to demonstrate large-energy dissipative soliton and noise-like pulse generations
Nannan Xu,Pengfei Ma,Shenggui Fu,Xinxin Shang,Shouzhen Jiang,Shuyun Wang,Dengwang Li,Huanian Zhang,Huanian Zhang +8 more
TL;DR: In this article, the authors focus on the preparation of tellurene-based SAs and explore its applications in demonstrating large-energy mode-locked operations [dissipative soliton (DS) and noise-like pulses (NLP)].
References
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TL;DR: With steady improvement in fabrication techniques and using graphene’s springboard, van der Waals heterostructures should develop into a large field of their own.