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講師、助理研究員

蘭珍云

日期:2022-07-27 來源: 作者:

                                

教師簡介:

 姓 名:

蘭珍云

 職 稱:

講師

 職 務(wù):

 所屬系:

材料物理及新能源材料與器件系

 郵 箱:

zhenyunlan@hfut.edu.cn

 電 話:

 

個(gè)人簡歷:

蘭珍云,女。20218月博士畢業(yè)于丹麥技術(shù)大學(xué)能源系。從20227月開始至今在十大正規(guī)外圍平臺(tái)排名外圍買球app十大平臺(tái)材料物理系工作,承擔(dān)教學(xué)和科研任務(wù)。主要從事新能源材料的第一性原理計(jì)算模擬。

 

l   教育簡歷

2018/09 - 2021/08,丹麥技術(shù)大學(xué),能源系,博士

2015/09 - 2018/06,浙江大學(xué),外圍買球app十大平臺(tái),碩士

2011/09 - 2015/07,廈門大學(xué),外圍買球app十大平臺(tái),學(xué)士

 

l  工作簡歷

2022/7 - 至今, 十大正規(guī)外圍平臺(tái)排名,外圍買球app十大平臺(tái)

2021/09 - 2021/11,丹麥技術(shù)大學(xué),能源系,研究助理

 

 

 

主講課程:

 

 

主要科研領(lǐng)域、方向:

l  教學(xué)研究

l  科學(xué)研究

新能源材料的結(jié)構(gòu)、性質(zhì)、機(jī)理的理論計(jì)算與模擬。

 

主持或參與的項(xiàng)目:

 

 

研究成果:

l  學(xué)術(shù)論文

[1].    Lan,   Z., Smabraten, D. R., Xiao, C., Vegge, T.,   Aschauer, U., & Castelli, I. E. (2021). Enhancing oxygen evolution       reaction activity by using switchable polarization in ferroelectric InSnO2N.   ACS Catalysis, 11(20), 12692-12700.

[2].    Lan,   Z., Vegge, T., & Castelli, I. E. (2021).  Theoretical Insight on Anion Ordering, Strain, and Doping Engineering of       the Oxygen Evolution Reaction in BaTaO2N. Chemistry of       Materials, 33(9), 3297-3303.

[3].    Lan,  Z., Meng, J., Zheng, K., & Castelli, I. E.   (2021). Exploring the Intrinsic Point Defects in Cesium Copper Halides.       The Journal of Physical Chemistry C, 125(2), 1592-1598.

[4].    Lan,   Z., Chen, M., Xu, X., Xiao, C., Wang, F., Wang,   Y., ... & Jiang, J. (2017). Investigations on molybdenum dinitride as       a promising anode material for Na-ion batteries from first-principle       calculations. Journal of Alloys and Compounds, 701, 875-881.

[5].    Meng,   J., Lan, Z., Lin, W., Liang, M., Zou, X., Zhao, Q.,       ... & Zheng, K. (2022). Optimizing the quasi-equilibrium state of hot       carriers in all-inorganic lead halide perovskite nanocrystals through Mn       doping: fundamental dynamics and device perspectives. Chemical Science, 13, 1734-1745. ( co-first author)      

[6].    Meng,  J., Lan, Z., Castelli, I. E., & Zheng, K. (2021). Atomic-Scale Observation of Oxygen Vacancy-Induced Step Reconstruction in       WO3. The Journal of Physical Chemistry C, 125(15), 8456-8460. ( co-first author)

[7].    Meng,  J., Lan, Z., Abdellah, M., Yang, B., Mossin, S., Liang, M.,  & Zheng, K. (2020). Modulating charge-carrier dynamics in       Mn-doped all-inorganic halide perovskite quantum dots through the       doping-induced deep trap states. The journal of physical chemistry       letters, 11(9), 3705-3711. ( co-firstauthor)

[8].    Meng,   J., Lan, Z., Chen, T., Lin, Q., Liu, H., Wei, X., ... &   Zhang, Z. (2018). Organic–Organic Hybrid g-C3N4/Ethanediamine       Nanosheets for Photocatalytic H2 Evolution. The Journal of       Physical Chemistry C, 122(43), 24725-24731. (       co-first author)

[9].    Meng,   J., Lan, Z., Lin, Q., Chen, T., Chen, X., Wei, X., ...  & Zhang, Z. (2019). Cubic-like BaZrO3 nanocrystals with       exposed {001}/{011} facets and tuned electronic band structure for       enhanced photocatalytic hydrogen production. Journal of Materials       Science, 54(3), 1967-1976. ( co-first       author)

[10].   Cao,  C., Lan, Z., Yan, Y., Cheng, H., Pan, B., Xie, J., ...   & Zhao, X. (2018). Mechanistic insight into the synergetic catalytic   effect of Pd and MnO2 for high-performance Li–O2  cells. Energy Storage Materials, 12, 8-16. (co-first author)

[11].    Zhang,  Y., Lan, Z., Jian, N., Ren, Z., Hu, J., Gao, M., ... &   Liu, Y. (2017). Mechanistic insights into the remarkable catalytic   activity of nanosized Co@ C composites for hydrogen desorption from the   LiBH4–2LiNH2 system. Catalysis Science & Technology,   7(9), 1838-1847. ( co-first author)      

[12].   Ludvigsen,  A. C., Lan, Z., & Castelli, I. E. (2022). Autonomous    Design of Photoferroic Ruddlesden-Popper Perovskites for Water Splitting       Devices. Materials, 15(1), 309. (       corresponding author)

 

        授權(quán)專利


 [1]陸赟豪, 吳琛, 蘭珍云, 一種晶體管及構(gòu)建其模型的方法,中國,ZL 2016 1       0632361.7

        

 

 

 

 

 

 

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