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    Evolution of the Valley Position in Bulk Transition-Metal Chalcogenides and Their Monolayer Limit
    with H. Yuan, Z. Liu, G. Xu, B. Zhou, S. Wu, D. Dumcenco, Y. Zhang, S. K. Mo, P. Dudin, V. Kandyba, M. Yablonskikh, A. Barinov, Z. Shen, S. Zhang, Y. Huang, X. Xu, Z. Hussain, H. Y. Hwang, Y. Cui, and Y. Chen
    © 2016 American Chemical Society.Layered transition metal chalcogenides with large spin orbit coupling have recently sparked much interest due to their potential applications for electronic, optoelectronic, spintronics, and valleytronics. However, most current understanding of the electronic structure near band valleys in momentum space is based on either theoretical investigations or optical measurements, leaving the detailed band structure elusive. For example, the exact position of the conduc…Read more
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    Lithium-oxygen cells are a promising power source, and carbons are an attractive non-metal catalyst for air electrodes. To improve the electrochemical performance, various carbons are heated in an inert atmosphere. It is found that heat treatment at 900 C can differently improve the electrochemical performance of multiwalled carbon nanotubes, acetylene carbon black and activated carbon, but the improvement of CNTs is the most obvious. After heat treatment, the peak current density of the oxygen …Read more