梁宇航
日期:2025-05-28 阅读次数: 作者: 来源:

1243C

姓名:梁宇航

性别:男

职称:硕士生导师/博士生导师

学历:博士

专业:物理化学、凝聚态物理

邮箱yuhang.liang@fzu.edu.cn

研究方向:凝聚态理论与计算


教育工作经历

2025 – 至今      太阳集团tcy8722         太阳集团tcy8722

2024 – 2025            悉尼大学        凝聚态物理         博士后研究员

2021 – 2024            悉尼大学         化学工程              博士

     2021                   悉尼大学        凝聚态物理          助理研究员  

2019 – 2021            悉尼大学        凝聚态物理             硕士  

2014 – 2018            汕头大学    光电信息科学与工程         学士


科研简介

   主要从事先进半导体光电材料的理论与计算研究,致力于新型钙钛矿半导体体系微观结构中的缺陷与杂质性质、掺杂物理、及其诱导的载流子复合、动态晶格畸变、离子迁移、固体结构相变,和其中微观能量转换机制,从多个的维度(动力学-热力学-电子学)和多个层次(缺陷-晶格-性质)发展和优化材料设计。近五年来,发表高水平论文27篇,其中以唯一第一/通讯作者在Nature CommunicationsScience AdvancesJournal of the American Chemical SocietyAdvanced MaterialsNpj Computational MaterialsPhysical Review系列,The Journal of Physical Chemistry Letters等国际顶级期刊发表研究论文15篇。


科研项目

      “旗山学者(海外)人才支持项目

   悉尼大学研究支持计划


发表论文

1.         Y. Liang*, F. Li*, X. Cui*, T. Lv, C. Stampfl, S. P. Ringer, X. Yang, J. Huang*, R. Zheng*, Toward stabilization of formamidinium lead iodide perovskites by defect control and composition engineering. Nat. Commun. 15, 1707 (2024).

2.         Y. Liang*, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, J. Huang*, R. Zheng*, Minimizing and Controlling Hydrogen for Highly Efficient Formamidinium Lead Triiodide Solar Cells. J. Am. Chem. Soc. 144, 6770–6778 (2022).

3.         Y. Liang, F. Li*, X. Cui*, C. Stampfl, S. P. Ringer, X. Yang, J. Huang*, R. Zheng*, Multiple B-site doping suppresses ion migration in halide perovskites. Sci. Adv. 11, eads7054 (2025).

4.         Z. Hu, S. Yang, L. Zheng, H. Qiu, J. Tanwen, Y. Gu, Y. Li, H. Cheng, Y. Liang*, Y. Zheng*, Mitigating Surface Energy and Core-Shell Interface Strain of Yb3+-Doped ZnSe-Based Quantum Dots for Pure-Blue Emission QLED Devices. Adv. Mater. n/a, 2501500.

5.         Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, R. Zheng*, Electrode-induced impurities in tin halide perovskite solar cell material CsSnBr 3 from first principles. Npj Comput. Mater. 7, 1–9 (2021).

6.         Y. Liang*, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, J. Huang*, R. Zheng*, Trapped-Hydrogen-Induced Energy Loss in Tin-Based Hybrid Perovskite Solar Cells. Phys. Rev. Applied 18, 034084 (2022). 

7.         Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, X. Yang, J. Huang, R. Zheng, Origin of Enhanced Nonradiative Carrier Recombination Induced by Oxygen in Hybrid Sn Perovskite. J. Phys. Chem. Lett. 14, 2950–2957 (2023).

8.         Y. Liang, X. Cui*, F. Li, C. Stampfl, J. Huang, S. P. Ringer, R. Zheng*, Hydrogen-Anion-Induced Carrier Recombination in MAPbI3 Perovskite Solar Cells. J. Phys. Chem. Lett. 12, 10677–10683 (2021).

9.         M. Cheng, X. Zhou, Y. Liang*, Y. Zheng*, Synergistic solvation and interphase design via a steric-electronic additive for ultra-long cycling lithium metal batteries. J. Energy Chem. 108, 759–768 (2025).

10.        Y. Liang, F. Li*, R. Zheng*, Low-Dimensional Hybrid Perovskites for Field-Effect Transistors with Improved Stability: Progress and Challenges. Adv. Electron. Mater. 6, 2000137 (2020).

11.        Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, R. Zheng*, Atomic and Molecular Hydrogen Impurities in Hybrid Perovskite Solar Cells. J. Phys. Chem. C 126, 1721–1728 (2022).

12.        Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, R. Zheng*, First-principles investigation of intrinsic point defects in perovskite CsSnBr3. Phys. Rev. Mater. 5, 035405 (2021).

13.        Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, J. Huang*, R. Zheng*, Interstitial Hydrogen Anions: A Cause of p-Type Conductivity in CsSnI3. J. Phys. Chem. C 126, 14843–14849 (2022).

14.        Y. Liang, X. Cui*, F. Li, C. Stampfl, S. P. Ringer, J. Huang, R. Zheng*, Hydrogen-Induced Nonradiative Recombination in All-Inorganic CsPbI3 Perovskite Solar Cells. Solar RRL 6, 2200211 (2022).

15.        H. Ji+, Y. Liang+, T. Yang*, H. Wu, O. Sheng, T. Shen, C. Dong, T. Du, L. Yin, J. Zhang, R. Zheng*, X. Zhang, Dense solid electrolyte interphase and Zn (002) plane texture enabling high depth-of-discharge anode for highly reversible zinc ion batteries. J. Mater. Sci. Technol., doi: 10.1016/j.jmst.2025.03.055 (2025).

16.        S. Zou, Y. Liang, X. Zhang, Q. Gu, L. Wang, H. Sun, X. Liao, J. Huang, A. R. Masri, Manufacturing Single-Atom Alloy Catalysts for Selective CO2 Hydrogenation via Refinement of Isolated-Alloy-Islands. Angewandte Chemie International Edition 64, e202412835 (2025).

17.        F. Li, Y. Liang, R. Zheng, A balanced view of ion migration in halide perovskite electronics. Newton 1 (2025).

18.        F. Zeng, W. Kong, Y. Liang, F. Li, Y. Lvtao, Z. Su, T. Wang, B. Peng, L. Ye, Z. Chen, X. Gao, J. Huang, R. Zheng, X. Yang, Highly Stable and Efficient Formamidinium-Based 2D Ruddlesden–Popper Perovskite Solar Cells via Lattice Manipulation. Adv. Mater. 35, 2306051 (2023).

19.        F. Zeng, Z. Su, W. Kong, F. Li, Y. Liang, X. Zhang, T. Wang, L. Zhang, Y. Lvtao, R. Liu, X. Gao, J. Huang, X. Yang, R. Zheng, De-templated crystallization in 2D perovskites for enhanced photovoltaic efficiency. Energy Environ. Sci. 17, 8284–8292 (2024).

20.        T. Lv, Y. Liang, F. Li, X. Yang, J. Huang, R. Zheng, Two-dimensional halide perovskites: A review on their orientations. Sci. China Phys. Mech. Astron. 66, 217306 (2022).

21.        T. Lv, Y. Liang, F. Zeng, F. Li, X. Yang, J. Huang, R. Zheng, Kinetic Process with Anti-Frenkel Disorder in a CsPbI3 Perovskite. J. Phys. Chem. Lett. 15, 2929–2935 (2024).

22.        T. Lv, Z. Zhong, Y. Liang, F. Li, J. Huang, R. Zheng, Deep Charge: Deep learning model of electron density from a one-shot density functional theory calculation. Phys. Rev. B 108, 235159 (2023).

23.        T. Yang, M. Fang, J. Liu, D. Yang, Y. Liang, J. Zhong, Y.-J. Yuan, Y. Zhang, X. Liu, R. Zheng, K. Davey, J. Zhang, Z. Guo, Ultranarrow Bandgap Se-Deficient Bimetallic Selenides for High Performance Alkali Metal-Ion Batteries. Adv. Funct. Mater. 32, 2205880 (2022).

24.        H. Sun, Z. Lin, R. Tang, Y. Liang, S. Zou, X. Zhang, K. Chen, R. Zheng, J. Huang, Enhanced solar urea synthesis from CO2 and nitrate waste via oxygen vacancy mediated-TiOx support lead-free perovskite. Appl. Catal., B 360, 124511 (2025).

25.        H. Sun, R. Tang, L. Wang, Y. Liang, W. Yang, Z. Lin, X. Zhang, K. Chen, W. Liang, S. Zhao, R. Zheng, J. Huang, Vacancy-engineered bismuth vanadate for photoelectrocatalytic glycerol oxidation with simultaneous hydrogen production. EES Catalysis, doi: 10.1039/D4EY00211C (2025).

26.        H. Sun, R. Tang, X. Zhang, S. Zou, Y. Liang, N. Namuerkesaihan, Q. Gu, A. Baiker, J. Huang, Unbiased photoelectrochemical tandem reaction for concurrent oxidations with ultra-high overall faradaic efficiency. J. Mater. Chem. A 13, 14205–14215 (2025).

27.        H. Sun, Y. Shu, Y. Liang, J. Huang, Heterojunction-Engineered Photoelectrocatalytic Glycerol Oxidation Coupled with On-Site H2O2 Production. Energy & Fuels 39, 7483–7491 (2025).

获奖情况

l 2024年悉尼大学研究支持计划 悉尼大学,澳大利亚

l 2023年悉尼大学研究支持计划 悉尼大学,澳大利亚

l 2021年悉尼大学工研究奖 悉尼大学,澳大利亚

l 2016年广东省大学生物理竞赛三等奖 广东省物理学会

l 2015年汕头大学物理系校友奖学金 汕头大学

l 2013年中国奥林匹克化学竞赛二等奖 中国化学会


办公地址



其他


上一篇:庄乃锋
下一篇:胡晓琳