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  1. 12 Ιουλ 2020 · Multiscale Construction of Bifunctional Electrocatalysts for Long-Lifespan Rechargeable Zinc–Air Batteries. Chang-Xin Zhao, Jia-Ning Liu, Bo-Quan Li, Ding Ren, Xiao Chen, Jia Yu, Qiang Zhang. First published: 12 July 2020. https://doi.org/10.1002/adfm.202003619.

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  2. Interlaced NiS 2–MoS 2 nanoflake-nanowires as efficient hydrogen evolution electrocatalysts in basic solutions. T An, Y Wang, J Tang, W Wei, X Cui, AM Alenizi, L Zhang, G Zheng. Journal of...

  3. 9 Φεβ 2016 · Qian Zhong, Yuan Li, Jin Liu, Jun Li, Gaoke Zhang. In situ construction of Ti3+ self-doped TiO2/Ti3C2 Schottky heterojunctions for highly selective photo-Fenton-like degradation of organic pollutants: Surface/interface effect and mechanism insight.

  4. 2016 38. Direct Superassemblies of Freestanding Metal–carbon Frameworks Featuring Reversible Crystalline-phase Transformation for Electrochemical Sodium Storage D. Zhao, L. Zu, C. Peng, Y. Zhang, W. Zhang, J. Tang, J. Yang, Journal of the American Chemical Society, 2016, 138, 16533. 37. Photoelectrochemical Conversion from Graphitic C3N4 Quantum Dot Decorated Semiconductor Nanowires

  5. 4 Απρ 2019 · Photoluminescence is a radiative recombination process of electron–hole pairs. Self-trapped excitons (STEs), occurring in a material with soft lattice and strong electron–phonon coupling, emit photons with broad spectrum and large Stokes shift. Recently, series halide perovskites with efficient STE emission have been reported and showed ...

  6. 2 Μαρ 2021 · Abstract. Cu (I)-based catalysts have proven to play an important role in the formation of specific hydrocarbon products from electrochemical carbon dioxide reduction reaction (CO 2 RR). However, it is difficult to understand the effect of intrinsic cuprophilic interactions inside the Cu (I) catalysts on the electrocatalytic mechanism and ...

  7. Jing Tang – Mechanical Engineering. Assistant Professor, Mechanical Engineering. Tang Group. Address. 3458 GGB. 2350 Hayward, Ann Arbor, MI 48109. Email: jingtang@umich.edu. Phone: (734) 936-2775. Degrees. Ph.D. in Chemistry, Fudan University, 2016. Research Interests.

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