ProfessorSergei Kazarian, FRSC
Professor of Physical Chemistry
Department of Chemical Engineering - Faculty of Engineering
Orcid identifier0000-0003-1768-9134 (opens in a new tab)
- Professor of Physical ChemistryDepartment of Chemical Engineering - Faculty of Engineering
- 020 7594 5574 (Work)
- 440, Bone Building, South Kensington Campus, United Kingdom
RESEARCH
Overview
Research Interests
My principal research interests are molecular spectroscopy of polymeric materials and supercritical fluids processing. My overall strategy is to combine physical chemical studies with chemical engineering research and applications. I am interested in studying intermolecular interactions in polymers and supercritical fluids, using them to engineer new products and processes. I develop and apply in situ spectroscopic methods to study supercritical fluid-polymer interactions, plasticisation of polymeric materials, supercritical fluid dyeing, drying, extraction and impregnation. In recent years my research interests have broadened to include preparation of polymer/drug formulations, supercritical fluids enhanced processing, rheology, separations using supercritical fluids and ionic liquids.
In most recent years my research has focused on the development and applications of advanced spectroscopic imaging methods. These include FTIR spectroscopic imaging (specifically attenuated total reflection (ATR) imaging in both macro and micro modes), confocal Raman microscopy and tip-enhanced Raman scattering. FTIR spectroscopic imaging brings to light a whole new range of possibilities in complex materials, forensics, pharmaceutical and biomedical research.
Multidisciplinary collaborations with colleagues from universities, industry and government institutions play an important role in my research, focusing on solving problems with implications for health, the environment and security as well as those of significant industrial interest.
Research Interests
My principal research interests are molecular spectroscopy of polymeric materials and supercritical fluids processing. My overall strategy is to combine physical chemical studies with chemical engineering research and applications. I am interested in studying intermolecular interactions in polymers and supercritical fluids, using them to engineer new products and processes. I develop and apply in situ spectroscopic methods to study supercritical fluid-polymer interactions, plasticisation of polymeric materials, supercritical fluid dyeing, drying, extraction and impregnation. In recent years my research interests have broadened to include preparation of polymer/drug formulations, supercritical fluids enhanced processing, rheology, separations using supercritical fluids and ionic liquids.
In most recent years my research has focused on the development and applications of advanced spectroscopic imaging methods. These include FTIR spectroscopic imaging (specifically attenuated total reflection (ATR) imaging in both macro and micro modes), confocal Raman microscopy and tip-enhanced Raman scattering. FTIR spectroscopic imaging brings to light a whole new range of possibilities in complex materials, forensics, pharmaceutical and biomedical research.
Multidisciplinary collaborations with colleagues from universities, industry and government institutions play an important role in my research, focusing on solving problems with implications for health, the environment and security as well as those of significant industrial interest.
GRANTS
- GRANT*College* Impact Acceleration Account - Imperial College London 2012Engineering & Physical Science Research Council (E1 Oct 2012 - 30 Sep 2015
- PROGRAMME GRANTMultiscale Analysis of Complex Interfacial Phenomena (MACIPh): Coarse graining, Molecular modelling, stochasticity, and experimentationEngineering & Physical Science Research Council (EPSRC)
- PROGRAMME GRANTPredictive Analysis of Complex Interfacial Flows (PACIF)Engineering & Physical Science Research Council (EPSRC)