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Photo of Feng Gao

Feng Gao

Professor, Head of Unit

Organic and perovskite semiconductors for energy technologies. ERC Grantee (StG2016, CoG2021); Wallenberg Academy Fellow 2017; SSF Future Research Leader 2020; Tage Erlander Prize 2020; Wallenberg Scholar 2024.

Presentation

Prof. Feng Gao is leading a research group focusing on organic and perovskite semiconductors at ҳ. He works as a full professor at Linköping since 2020. 

Before 2020, Feng Gao was associate professor (2017-2020), assistant professor (2015-2017), and Marie Skłodowska-Curie Individual Fellow (2013-2015) at Linköping. He received his Docent from Linköping in 2016, his PhD degree from the University of Cambridge in 2011, and his B.S. and M.S. degrees from Nanjing University in 2004 and 2007, respectively. He works at the interfaces between physics, chemistry, and materials science, focusing on the development of novel optoelectronic devices for energy technologies.

Research

Prof. Gao’s group dedicates its efforts to energy devices, with the ambition to both improve device performance and understand the underlying fundamentals. Their current investigations include organic semiconductors and metal halide perovskites, with research focuses such as:

Fullerene-free organic solar cells, including low voltage losses, green solvent processing and new applications.






Perovskite solar cells, with a focus on understanding and improving the stability:


Perovskite LEDs, with the motivation to improve the device performance and also explore new applications:




Lead-free perovskites, aiming to tune the optoelectronic properties and explore their magnetic properties:


Perovskites for other applications, e.g. X-ray detection and lasers:


See the full list of publications at Google Schoolar:

Organic semiconductors

Organic semiconductors have a large potential in low-cost and large-area device applications, benefiting from cheap manufacturing processes such as solution-based roll-to-roll printing.

All device applications previously dominated by inorganic semiconductors have presented opportunities for their organic counterparts. Such applications include solar cells, LEDs, field-effect transistors, lasers, and memory devices.

Metal halide perovskites

Metal halide perovskites have emerged as one of the most popular semiconducting materials since 2009. They have shown unique properties, including:

  • Tunable bandgap
  • High absorption coefficient
  • Broad absorption spectrum
  • High charge carrier mobility
  • Long charge diffusion lengths

These properties enable metal halide perovskites to be used in a broad range of photovoltaic and other optoelectronic applications.

Solar cells

Although the current solar cell market is dominated by silicon-based devices, the recent emergence of solution-processed solar cells based on organic semiconductors and metal halide perovskites has shown great potential for commercial applications. For example, the power conversion efficiency of perovskite solar cells has soared from a few percent to over 25% within the past few years. Such a quick development has never before happened in the history of photovoltaics.

LEDs

LEDs, which emit light by a solid-state process called electroluminescence, are considered the most promising energy-efficient technologies for future lighting and displays. Metal halide perovskites demonstrate strong photoluminescence and tunable emission energy, making them a promising candidate for the next generation of highly efficient LEDs.

Lasers

Electrically pumped lasers are considered as a holy grail in the field of optoelectronics. Recent breakthroughs on optically pumped perovskite lasers and high-performance perovskite LEDs indicate great potential of developing perovskites into a new generation of materials for electrically pumped lasers.

Funding

Prof. Gao's research group is mainly supported by the following funding agencies:

Group and Supervision

Prof. Feng Gao is deeply involved in both the scientific and career development of his group members. The senior researchers in his group have been awarded the prestigious VR (Starting) Grants, Marie Skłodowska-Curie Individual Fellowship, VINNMER Fellowship. He also values the exchange of ideas: he has sponsored members of his group in exchanges to Cambridge, Oxford, Imperial College and EPFL, and his group has hosted visiting students and scholars from Cambridge, Oxford, Zhejiang University, Nanjing University, Nanjing Tech University, Shenzhen University, Queen Mary University of London, and more.

Organisation

News about Feng Gao

A close up of a person holding a camera.

LiU researchers push the boundaries of organic solar cells

Researchers at LiU have now demonstrated how organic solar cells can become more efficient than previously thought possible. The key is to extend the time that electrons in the material remain excited, which leads to improved performance.

LiU researchers on the list of the world’s most cited

Researchers from LiU among the world’s most influential. Clarivate has once again listed those who rank within the top one per cent most cited in their research fields.

Huotian Zhang

Huotian Zhang receives royal scholarship for his solar energy research

For the second year in a row, a researcher at the Division of Optoelectronics at ҳ, has been awarded the prestigious scholarship from Stiftelsen Konung Carl XVI Gustafs 50-årsfond för vetenskap, teknik och miljö.

Person with transmission electron microscope.

Department of Physics, Chemistry and Biology (IFM)

Excellent undergraduate teaching and research in the areas of biology, chemistry, materials and applied physics and theory and modelling are conducted at this department.

Electronic and photonic materials (EFM)

Our division's research is focused on the development of organic electronics for energy conversion and storage.

Portrait Feng Gao.

Creating the flexible X-ray technology of the future

Professor Feng Gao has been granted SEK 31 million from the Knut and Alice Wallenberg Foundation over five years to develop a new type of X-ray technology. The goal is a flexible material that can improve X-ray detector image quality.

Publications

Publication list

2026

Kanming Shi, Weidong Cai, Jiajun Qin, Lars Ohrstrom, Fanni Juranyi, Feng Gao, Maths Karlsson (2026) Journal of Materials Chemistry C (Article in journal)
Chenglong Li, Wei Qu, Deepak Kumar, Naini Jain, Nur Wardina Syahirah binti Mohamad Fadil, Nur Najiha binti Ahmad Rasid, Emannuel Kymakis, Maria Vasilopoulou, Feng Gao, Chunxiong Bao, Peng Gao, Sanjeev Kumar Sharma, Mohammad Khaja Nazeeruddin, Abd. Rashid bin Mohd Yusoff, Haotong Wei (2026) CARBON ENERGY (Article, review/survey)
Huotian Zhang, Jun Yuan, Tong Wang, Yijie Nai, Nurlan Tokmoldin, Wei Liu, Shanchao Ouyang, Rokas Jasiunas, Yiting Liu, Yuxuan Li, Mohammad Saeed Shadabroo, Manasi Pranav, Nakul Jain, Xiaolei Zhang, Veaceslav Coropceanu, Artem A. Bakulin, Sai-Wing Tsang, Vidmantas Gulbinas, Safa Shoaee, Yingping Zou, Dieter Neher, Thomas Kirchartz, Feng Gao (2026) Nature Photonics (Article in journal)
Shuohan Cheng, Yong Cui, Yang Xiao, Zhihao Chen, Zheng Zou, Haoyu Yuan, Tao Zhang, Guanlin Wang, Wenye Xu, Ni Yang, Lijiao Ma, Shaoqing Zhang, Feng Gao, Jianhui Hou (2026) Advanced Materials (Article in journal)
Wei Liu, Yijie Nai, Huotian Zhang, Xuehong Zhou, Weidi Ma, Chunlong Sun, Muyi Zhang, Chujun Zhang, Beibei Qiu, Long Ye, Feng Gao, Jun Yuan, Yingping Zou (2026) Advanced Materials (Article in journal)
Tinghuan Yang, Erxin Zhao, Nan Wu, Xiaoming Chang, Chenqing Tian, Hai-Long Wang, Lu Zhang, Nannan Gu, Ting Nie, Ye Yang, Zheng Zhang, Tianfei Xu, Xin Chen, Shuang Wang, Tianqi Niu, Niansheng Xu, Chuang Ma, Haojin Li, Buyi Yan, Zicheng Ding, Shengzhong (Frank) Liu, Feng Gao, Kui Zhao (2026) Nature (Article in journal)
Zhan Chen, Yu Wang, Liuchong Fu, Niansheng Xu, Xianjie Liu, Feng Gao, Xiaoke Liu (2026) Chemical Engineering Journal, Vol. 541, Article 177743 (Article in journal)
Sakarn Khamkaeo, Kunpot Mopoung, Anna Dávid, Muyi Zhang, Xianjie Liu, Feng Gao, Irina Buyanova, Weimin Chen, Yuttapoom Puttisong (2026) The Journal of Physical Chemistry C (Article in journal)
Geping Qu, Siyuan Cai, Yuli Tao, Letian Zhang, Ying Qiao, Jie Yang, Yuanjia Ding, Jun Fang, Zicheng Zhang, Xiaofeng Huang, Longbin Qiu, Shi Chen, Niansheng Xu, Xu Pan, Feng Gao, Alex K. -Y. Jen, Zong-Xiang Xu (2026) NATURE SYNTHESIS (Article in journal)
Nakul Jain, Xiane Li, Mats Fahlman, Olle Inganäs, Koen Vandewal, Feng Gao (2026) Advanced Materials, Article e17060 (Article in journal)