Jiayin Yuan Professor

Contact

Name and title: Jiayin YuanProfessor

Phone: +468162391

Workplace: Department of Chemistry Länk till annan webbplats.

Visiting address Room C422Svante Arrhenius väg 16 C

Postal address Kemikum10691 Stockholm

Research group

Jiayin Yuan's group

Our mission is to design, create and investigate broadly defined functional polymers and carbons, particularly in a well-structured (e.g., colloidal or porous) form, via simple chemistry and processing.

About me

Jiayin Yuan is a Professor of Materials Chemistry at Stockholm University, Sweden. He earned his PhD in polymer chemistry in Germany in 2009 and subsequently led a research team developing functional ionic polymers at the Max Planck Institute of Colloids and Interfaces, Germany. After a one-year stay in the United States in 2017, he joined Stockholm University as a Wallenberg Academy Fellow awarded by the Knut & Alice Wallenberg Foundation in 2018 and has been a full professor since Jan. 2019. He received an European research council (ERC) Starting Grant in 2014 and an ERC Consolidator Grant in 2022. His current research focuses on functional polymers and carbon materials for addresing environmental and energy challenges in sustainabability. One of his key research interests is to develop materials and techniques for carbon capture and utilization.

See our group website: www.yuan-group.com

 

2011-2016 at Uni Potsdam, Germany

Bachelor students in Chemistry "General Chemistry", "Polymer Chemistry I" and "II".

Master and PhD students in Chemistry "Modern Aspects of Colloid Science"

Master students in Chemistry "Biopolymer"

2014-2016 at Max Planck Institute of Colloids and Interfaces, Germany

2015 for PhD students in IMPRS (International Max Planck Research School) on Multiscale Bio- Systems) "Synthetic biomimetic actuator"

2015 for PhD students in IMPRS (International Max Planck Research School) on Multiscale Bio- Systems) "Membrane structures and applications"

2017-2018 at Clarkson University, USA

Undergradudate and graduate students 2017 Spring semester CM484/584 "Functional polymer systems"

2017 Spring semester for undergradudate students "Freshman seminar" on March. 1st.

2017 Summer CM990 for graduate students "Thesis research."

2017 Fall semester CM435/535 for undergradudate and graduate students"Better materials through chemistry"

2017 Fall semester CM890 for graduate students"Directed Study"

2017 Fall semester CM990 for graduate students "Thesis research."

2018 Spring for undergraduate and graduate students "Colloids and Interfaces"(with Dr. Weiyi Zhang together)

from 2019 at Stockholm University

PhD course "Advanced Materials chemistry"

PhD course "Electrochemical Energy Storage"

Master course "Chemistry of Renewable Energy Generatio and Storage".

We are interested in the synthesis and exploration of function polymers and heteroatom-doped porous carbon materials for addressing energy and environmental challenges, in particular carbon capture and utilization.


Sustainable nanomaterials for robust bijels generation

The group's research focus on nanoporous carbon membranes for environmental and energy applications. In this project we investigate stabilized bicontinuous interfacially jammed emulsion gels otherwise known as "bijels".

CO₂-responsive colloidal dispersions for efficient CO₂ capture

Stockholm University coordinates this research initiative, which aims to develop a new generation of safer and more energy-efficient carbon capture technologies. The work focuses on CO₂-responsive colloidal dispersions containing aminated nanoparticles or porous colloids as an alternative to conventional amine-water scrubbers, which are energy-intensive and may release harmful substances.

Contact

Name and title: Jiayin YuanProfessor

Phone: +468162391

Workplace: Department of Chemistry Länk till annan webbplats.

Visiting address Room C422Svante Arrhenius väg 16 C

Postal address Kemikum10691 Stockholm

Research group

Jiayin Yuan's group

Our mission is to design, create and investigate broadly defined functional polymers and carbons, particularly in a well-structured (e.g., colloidal or porous) form, via simple chemistry and processing.