实现光电器件的高效稳定运行,关键在于构建牢固、可靠的电荷传输界面。当前高性能钙钛矿电池普遍采用有机分子层进行界面修饰,然而该类材料在持续光照与高温环境下稳定性不足,易引发性能衰减,制约了器件的实际应用寿命。2026年2月26日,Science在线以“Hafnium oxide interface stabilization for efficient, photothermally stable perovskite solar cells”为题发表了武汉大学物理科学与技术学院王植平教授课题组在高效、稳定钙钛矿太阳能电池领域取得的最新研究成果。
该论文提出一种“原子尺度界面键合”技术,采用原子层沉积工艺,在电池内部关键界面引入可调控的氧化铪(HfOx)中间层,从原子尺度上同步稳定空穴与电子传输界面,成功解决了长期制约钙钛矿太阳能电池发展的效率与稳定性难以协同提升的难题。
武汉大学物理科学与技术学院博士后杨远航、博士研究生程思阳为共同第一作者,王植平教授为通讯作者。2026年7月30日,Science 对于该文章发布了“Editorial Expression of Concern”的文章,指出文章存在数据异常,提醒广大学者注意。2026年2月26日,Science发表了武汉大学杨远航等人撰写的题为" Hafnium oxide interface stabilization for efficient, photothermally stable perovskite solar cells"的研究文章。多位读者随后指出,图4A中功率转换效率随时间变化的曲线似乎包含了在不同时间点重复出现的相同数据段。
原文链接https://www.science.org/doi/10.1126/science.aek6646。
王植平课题组相关信息
(来源:https://physics.whu.edu.cn/info/1181/5267.htm)
姓名:王植平
单位:物理科学与技术学院
职称:教授
学历:博士
E-mail: zp.wang@whu.edu.cn
办公室:物理科学与技术学院新楼D305
研究方向:光电器件及其应用;新能源材料开发;器件物理与优化设计。武汉大学物理科学与技术学院教授、博士生导师、全球高倍引学者,入选国家级海外高层次人才青年项目。主要研究方向包括高效光电器件的设计与制备、新能源材料的合成与缺陷态调控、异质结的界面反应与电荷传输的机理研究等。在钙钛矿太阳能电池稳定性、器件结构设计以及新型电荷传输层材料制备等方向开展了较为系统深入的研究。在Science, Nature, Nature Energy、Nature Communications, Advanced Materials等国际重要期刊发表SCI论文数十篇。
课题组常年招收硕士、博士(涵盖物理、材料、微电子)和博士后研究人员。欢迎感兴趣的同学和青年学者的加入。
学习与工作经历
2002-2006 大连理工大学本科
2007-2012 日本国立富山大学 硕士、博士
2012-2015 日本国立产业技术综合研究所 特别研究员
2015-2019 英国牛津大学博士后
Selected Publications (†Equal contribution, *Corresponding author)
1. Yuanhang Yang†, Siyang Cheng†, Xiaotian Yang, Mubai Li, Xueliang Zhu, Zhongji Yang, Yixuan Zheng, Yong Liu, Qianqian Lin, Ning Yan, Shengjun Yuan, and Zhiping Wang*,“Hafnium oxide interface stabilization for efficient, photothermally stable perovskite solar cells”,Science, 2026,391,6788.
2. Mubai Li†, Yuanhang Yang†, Sheng Li†, Xiaotian Yang†, Yixuan Zheng, Siyang Cheng, Junjie Feng, Hao Li, Qiuhan Yu, Zhongchen Xu, Houguo Fei, Yong Liu, Cunlan Guo, Shengjun Yuan, Qianqian Lin & Zhiping Wang*, “A molecularly engineered electron-selective self-assembled monolayer enhances quasi-Fermi level splitting in inverted perovskite solar cells”,Nature Energy,2026,10,3732.
3. Sheng Li, Xiaotian Yang, Siyang Cheng, Yujie Yang, Hao Li, Zhuo Zheng, Mubai Li, Qiuhan Yu, Shengjun Yuan, Qianqian Lin & Zhiping Wang*,“Solvent engineering enables tin-lead perovskite films with long carrier diffusion lengths and reduced tin segregation”, Nature Communications, 2025, 16,8072.
4. Siyang Cheng†, Yuanhang Yang†, Xueliang Zhu†, Yahui Li, Hao Li, Wenqi Xiong, Zhuo Zheng, Sheng Li, Yong Liu, Xiaoze Liu, Qianqian Lin, Shengjun Yuan, Enzheng Shi and Zhiping Wang*, “Enhanced electrical performance of perovskite solar cells via strain engineering”, Energy & Environmental Science, 2025,18, 2452-2461.
5. Yuanhang Yang†, Siyang Cheng†, Xueliang Zhu, Sheng Li, Zhuo Zheng, Kai Zhao, Liwei Ji, Ruiming Li, Yong Liu, Chang Liu, Qianqian Lin, Ning Yan & Zhiping Wang*,“Inverted perovskite solar cells with over 2,000h operational stability at 85°C using fixed charge passivation”,Nature Energy,2024, 9, 37–46.
6. Sheng Li, Zhuo Zheng, Jiaqi Ju, Siyang Cheng, Feiyu Chen, Zexu Xue, Li Ma, Zhiping Wang*, “A Generic Strategy to Stabilize Wide Bandgap Perovskites for Efficient Tandem Solar Cells”,Advanced Materials,2024, 2307701.
7. Xueliang Zhu, Mubai Li, Kangwei Mo, Man Yang, Sheng Li, Yujie Yang, Huijie Wang, Ruiming Li, Yong Liu, Qianqian Lin, Zhiping Wang*, “A Surface-Reconstructed Bilayer Heterojunction Enables Efficient and Stable Inverted Perovskite Solar Cells”, Advanced Materials, 2024, 2409340.
8. Xueliang Zhu, Wenqi Xiong, Chong Hu, Kangwei Mo, Man Yang, Yanyan Li, Ruiming Li, Chen Shen, Yong Liu, Xiaoze Liu, Sheng Wang, Qianqian Lin, Shengjun Yuan, Zhengyou Liu, and Zhiping Wang*, Advanced Materials, 2024, 2309487.
9. Deying Luo†, Wenqiang Yang†, Zhiping Wang†, Aditya Sadhanala, Qin Hu, Rui Su, Ravichandran Shivanna, Gustavo F. Trindade, John F. Watts, Zhaojian Xu, Tanghao Liu, Ke Chen, Fengjun Ye, Pan Wu, Lichen Zhao, Jiang Wu, Yongguang Tu, Yifei Zhang, Xiaoyu Yang, Wei Zhang*, Richard H. Friend, Qihuang Gong, Henry J. Snaith*, Rui Zhu*, “Enhanced photovoltage for inverted planar heterojunction perovskite solar cells”, Science, 2018, 360, 1442.
10. Zhiping Wang†, Qianqian Lin†, Bernard Wenger, M. Greyson Christoforo, Yen-Hung Lin, Matthew T. Klug, Michael B. Johnston, Laura M. Herz, Henry J. Snaith*, “High irradiance performance of metal halide perovskites for concentrator photovoltaics”, Nature Energy, 2018, 3, 855-861.
11. Deimante Vaitukaityte†, Zhiping Wang†*, Tadas Malinauskas, Artiom Magomedov, Giedre Bubniene, Vygintas Jankauskas, Vytautas Getautis*, Henry J. Snaith*, “Efficient and stable Perovskite Solar Cells using Low-cost Aniline-based Enamine Hole Transporting Materials”, Advanced Materials, 2018, 30, 1803735.
12. Zhiping Wang, Qianqian Lin, Francis P. Chmiel, Nobuya Sakai, Laura M. Herz, Henry J. Snaith*, “Efficient and ambient-air-stable solar cells with 2D-3D hetero-structured butylammonium-caesium-formamidinium lead halide perovskites”, Nature Energy, 2017, 2, 17135.
13. Zhiping Wang, David P. McMeekin, Nobuya Sakai, Stephan van Reenen, Konrad Wojciechowski, Jay B. Patel, Michael B. Johnston, Henry J. Snaith*, “Efficient and Air-Stable Mixed-Cation Lead Mixed-Halide Perovskite Solar Cells with n-Doped Organic Electron Extraction Layers” Advanced Materials, 2017, 29, 1604186.