About
Magnus Berggren received his MSc in Physics and PhD in Applied Physics in 1991 and 1996, respectively, from Linköping University in Sweden. After that he joined Bell Laboratories, USA, for postdoctoral studies focusing on the development of organic lasers. In 1997 he co-founded Thin Film Electronics AB and for one and a half years he served the company as its managing director with the prime mission of developing printed electronic memories. Then, he returned to Linköping University and, also, joined Acreo (today RISE) to initiate the research in printed and paper electronics, in part supported by the paper- and packaging industry. Since 2002, he is the professor and director of the Laboratory of Organic Electronics, Linköping University, today including about 140 people organized in 12 different research groups. Magnus Berggren is one of the pioneers behind Paper Electronics, Organic Bioelectronics and Electronic Plants and in 2012 and 2018 he became an elected member of the Royal Swedish Academy of Sciences and the Royal Swedish Academy of Engineering Sciences (IVA), respectively. In 2014 he received the Marcus Wallenberg Price and in 2017 he received the IVA gold medal. Recently, Magnus Berggren was appointed the director of the Wallenberg Initiative Material Science for Sustainability (WISE), a 260 million Euro research program including six member universities, operating from 2022 through 2033.
Employment
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Linköpings universitet Professor2002 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (376)
- Enzymatically Polymerized Glycolated Conductive Polymers as Soft Electrodes for Neural Bioelectronic Interfaces Save
- Polyelectrolyte Design Principles for Electrophoretic Drug Delivery Save
- Fumarate dramatically enhances biocurrent output in Shewanella-based bioelectrochemical system Save
- Make it flow from solid to liquid: redox-active electrofluids for intrinsically stretchable batteries Save
- Lithography-Free Water Stable Conductive Polymer Nanowires Save
- Integrating environmental assessment into early-stage wearable electronics research Save
- Enzymatically Polymerized Organic Conductors on Native Lipid Membranes Save
- From Synthetic Vesicles to Living Cells: Anchoring Conducting Polymers to Cell Membrane Save
- Interconnecting EDOT-Based Polymers with Native Lignin toward Enhanced Charge Storage in Conductive Wood Save
- Organic Electrochemical Transistor Aptasensor for Interleukin-6 Detection Save