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Organic nanoelectronics

Organic nano electronics

Our focus is on creating innovative materials and devices that utilize ion-electron coupling to enhance the capabilities of future electronics.

The Organic Nanoelectronics group (ONE) specializes in creating and studying new multifunctional materials for various purposes, primarily in electronics and energy harvesting. Our group envisions a world where electronic components are seamlessly integrated into everyday objects and even the human body, constantly monitoring our health and transforming the way we interact and communicate with our surroundings. To achieve this, we focus on developing novel functional materials and devices with ion-electron coupled functionalities.

Our research is interdisciplinary, combining chemistry, physics, materials science, and device engineering. In our group, students and postdoctoral fellows can receive training in a wide range of areas, such as polymer synthesis, surface chemistry, printing, device fabrication, and the use of advanced techniques to analyze physical properties.

Our goal is to foster a research environment that promotes creativity and innovation. We focus on advancing the boundaries of polymer electronics and contributing to the development of transformative technologies that will shape a connected future.

Group members

News

A man standing in a lab.

Prestigious chemistry award to Simone Fabiano

This year’s Göran Gustafsson Prize in Chemistry is awarded to LiU Professor Simone Fabiano. His research focuses on organic semiconductors and how so‑called doping can improve conductivity and yield new properties.

Reseracher in lab.

New master’s programmes in world-leading materials science

ÌÇÐÄÍøÒ³°æ is one of the world’s leading universities in materials science. The autumn of 2026 will see the launch of two new master’s programmes in this field. The students can look forward to an excellent labour market.

Researcher with blue gloves by microscope.

Plastic nerve cells become more advanced – and simpler

An artificial neuron made of conductive plastics that can perform advanced functions similar to those of biological nerve cells has been demonstrated by researchers at LiU.

Publications

2026

Haoyu Zheng, Ruizhe Wang, Hengyi Ma, Xiang Li, Gang Ye, Yuanchun Zhao, Ping Zhang, Gang Wang, Hengda Sun, Yongri Liang, Simone Fabiano, Kai Xu (2026) Science Advances, Vol. 12, Article eaea9786 (Article in journal)
Tiefeng Liu, Zesheng Liu, Ihor Sahalianov, Qiao He, Sang Young Jeong, Huotian Zhang, Qifan Li, Chiyuan Yang, Junpeng Ji, Lize Bynens, Wouter Maes, Feng Gao, Han Young Woo, Martin Heeney, Glib Baryshnikov, Mats Fahlman, Simone Fabiano (2026) Advanced Materials (Article in journal)
Hao Jiang, Chiyuan Yang, Chengyang Du, Yueheng Zhong, Ruizhe Wang, Zhu Chen, Liang-Wen Feng, Jiangang Chen, Hengda Sun, Simone Fabiano, Hongzhi Wang, Gang Wang (2026) ACS Nano (Article in journal)
Tiefeng Liu, Matilde Silveri, Zesheng Liu, Sang Young Jeong, Qiao He, Giannis G. Gkikas, Wenlong Jin, Chiyuan Yang, Tom van der Pol, Feng Zhang, Christina Kousseff, Anna Martinelli, Iain McCulloch, Martin Heeney, Han Young Woo, Alessandro Motta, Mats Fahlman, Simone Fabiano (2026) Nature Materials (Article in journal)
Qifan Li, Tiefeng Liu, Jun-Da Huang, Ze-Fan Yao, Dace Gao, Qingqing Wang, Junpeng Ji, Miao Xiong, Xianjie Liu, Sang Young Jeong, Min Gyu Kang, Hanyan Wu, Chiyuan Yang, Han Young Woo, Mats Fahlman, Simone Fabiano (2026) Matter, Vol. 9, Article 102599 (Article in journal)
Tom van der Pol, Simone Fabiano (2026) Nature Materials (Article in journal)
Giacomo Forti, Marc-Antoine Stoeckel, Yongjoon Cho, Matteo Palesati, Mark Weber, Liwei Ye, Sein Chung, Robert M. Pankow, Brendan Kerwin, Boseok Kang, Simone Fabiano, Natalie Stingelin, Antonio Facchetti, Tobin J. Marks (2026) Chemistry of Materials (Article in journal)
Tom van der Pol, Dongxun Lyu, Zoe Truyens, Vincent Lemaur, Demetra Tsokkou, Arianna Magni, Chiara Musumeci, Hanyan Wu, Junpeng Ji, David Cornil, Chiyuan Yang, Scott T. Keene, Gabriele D'Avino, Alberto Salleo, Natalie Banerji, Clare Grey, David Beljonne, Simone Fabiano (2026) Nature Materials (Article in journal)
Hanyan Wu, Yingxue An, Luigi Fabiano, Qifan Li, Qingqing Wang, Feng Zhang, Wenlong Jin, Miao Xiong, Junpeng Ji, Ugo Bruno, Grzegorz Greczynski, Grazia Maria Lucia Messina, Xianjie Liu, Chiyuan Yang, Simone Fabiano (2026) Advanced Materials, Article PMID 9885358 (Article in journal)
Jennifer Gerasimov, Mary Donahue, Dace Gao, Deyu Tu, Simone Fabiano (2026) Chemical Reviews, Vol. 126, p. 28-79 (Article, review/survey)

2025

Ali Solgi, Yeohoon Yoon, Jun-Da Huang, Simone Fabiano, Karl Leo, Hans Kleemann (2025) Advanced Materials Technologies (Article in journal)
Filippo Bonafe, Junpeng Ji, Simone Fabiano, Beatrice Fraboni, Tobias Cramer (2025) Small, Vol. 21, Article e10345 (Article in journal)
Yuning Li, Simone Fabiano, Oana D. Jurchescu (2025) Journal of Materials Chemistry C (Article in journal)
Xiangyu Wang, Hao Jiang, Haoyu Wang, Weichu Chen, Ruizhe Wang, Yueheng Zhong, Zhen Tang, Zhu Chen, Hongxiang Li, Xiaozheng Duan, Chiyuan Yang, Liang-Wen Feng, Hengda Sun, Hongzhi Wang, Simone Fabiano, Meifang Zhu, Gang Wang (2025) Advanced Functional Materials, Article e15197 (Article in journal)
Hao Jiang, Chiyuan Yang, Deyu Tu, Yueheng Zhong, Zhu Chen, Wei Huang, Liang-Wen Feng, Hengda Sun, Christian Mueller, Antonio Facchetti, Hongzhi Wang, Simone Fabiano, Gang Wang (2025) NATIONAL SCIENCE REVIEW, Vol. 12, Article nwaf331 (Article in journal)

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