基本信息
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职业迁徙
个人简介
Research
The research in my group is focused on polymers for energy and sustainability. We explore the connection between macromolecular structure, morphology, and the resulting properties of polymeric materials. Our activities thus span across macromolecular design, synthesis, polymer self-assembly, and material structure and property characterization of polymers. In particular, we are motivated by global challenges concerning energy and sustainability that drive the research for new multifunctional polymer materials. This requires new synthetic strategies and careful fundamental studies of synthetic pathways, structure and properties. Currently our research areas are:
Ionic polymers for durable proton- and anion-exchange membranes. These membranes are crucial components of energy conversion and storage systems such as fuel cells, water electrolyzers and flow batteries, and enable water purification technologies such as reverse osmosis and nanofiltration.
Solid single lithium ion conducting polymer electrolytes, which are central materials for lithium-polymer batteries and other solid-state electrochemical devices.
Bio-based monomers, polymers and plastics synthesized using building blocks from renewable resources.
We employ different polymerization (anionic, radical, condensation, etc) and modification methods to prepare our polymers, and then use a variety of charaterization techniques to study for example molecular structure and nano-scale morphology, as well as the thermal, mechanical and transport properties of the materials and membranes.
The research in my group is focused on polymers for energy and sustainability. We explore the connection between macromolecular structure, morphology, and the resulting properties of polymeric materials. Our activities thus span across macromolecular design, synthesis, polymer self-assembly, and material structure and property characterization of polymers. In particular, we are motivated by global challenges concerning energy and sustainability that drive the research for new multifunctional polymer materials. This requires new synthetic strategies and careful fundamental studies of synthetic pathways, structure and properties. Currently our research areas are:
Ionic polymers for durable proton- and anion-exchange membranes. These membranes are crucial components of energy conversion and storage systems such as fuel cells, water electrolyzers and flow batteries, and enable water purification technologies such as reverse osmosis and nanofiltration.
Solid single lithium ion conducting polymer electrolytes, which are central materials for lithium-polymer batteries and other solid-state electrochemical devices.
Bio-based monomers, polymers and plastics synthesized using building blocks from renewable resources.
We employ different polymerization (anionic, radical, condensation, etc) and modification methods to prepare our polymers, and then use a variety of charaterization techniques to study for example molecular structure and nano-scale morphology, as well as the thermal, mechanical and transport properties of the materials and membranes.
研究兴趣
论文共 274 篇作者统计合作学者相似作者
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Tam T. Nguyen, Emma Olsson,Smita V. Mankar,Niklas Warlin,Nitin G. Valsange, Jonas Engqvist,Nicola Rehnberg,Patric Jannasch,Baozhong Zhang
Macromolecules (2024)
Nitin G. Valsange, Rafael Natal Lima de Menezes,Niklas Warlin,Smita V. Mankar,Nicola Rehnberg,Baozhong Zhang,Patric Jannasch
MACROMOLECULESno. 6 (2024): 2868-2878
Dirk Henkensmeier,Won-Chul Cho,Patric Jannasch, Jelena Stojadinovic,Qingfeng Li,David Aili,Jens Oluf Jensen
CHEMICAL REVIEWSno. 10 (2024): 6393-6443
JOURNAL OF ENERGY CHEMISTRY (2024): 512-523
Rauno Sedrik,Olivier Bonjour, Nariê Rinke Dias de Souza, Alina Ismagilova, Iris Tamsalu, Veljo Kisand,Francesco Cherubini,Patric Jannasch,Lauri Vares
ChemSusChempp.e202401239-e202401239, (2024)
EUROPEAN POLYMER JOURNAL (2024)
SSRN Electronic Journal (2023): 121390-121390
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作者统计
#Papers: 273
#Citation: 8607
H-Index: 48
G-Index: 76
Sociability: 6
Diversity: 0
Activity: 3
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