Design, syntese og modellering af metalkomplekser til enkelt-molekyle magnetisme, metal skabelon syntese og små-molekyle-aktiveret katalyse.
Organiske molekyler designes og syntetiseres med henblik på at studere deres egenskaber, intermolekylære vekselvirkninger og reaktivitet i både opløsning og gasfase.
Nano partikel katalyse til udvikling af bæredygtig energi. Studier af molekylær selvsamling i kunstige og naturlige systemer. Molekylær elektronik. Fluorescerende molekyler og materialer og billedannende teknikker.
Grænseområdet mellem kemisk syntese, biologi og biofysik. Vi fokuserer på at forstå biologiske samt kemiske fænomener på nano-skala og anvender disse indsigter i udviklingen af biomedicin.
Molekylær forståelse af biologiske systemer, herunder proteiners struktur, metalioners vekselvirkning med biomolekyler og modellering af komplekse biologiske systemer.
Grundlæggende eksperimentel og teoretisk forskning i gasfase- og overfladekemi. Ofte inspireret af problemer indenfor miljø, klima, atmosfærekemi og proteinfoldning.
Uddannelsen i Nanoscience handler om at forstå og mestre opbygningen af strukturer på det atomare og molekylære niveau.
An overarching goal of synthetic biology is to control and direct the behaviour of living cells. At its most basic level, this can be accomplished by modifying the genetic code of the cell.
CHEAC targets electrochemical reactions for the production of renewable and high-value chemicals where the reaction energy is provided by electricity, thus paving the way for a greener society.
The Center for Medicinal Chemistry brings together scientists at UCPH in a dynamic, collaborative-oriented, integrated research and educational environment across the Faculty of Science, the Faculty of Health and Medical Sciences, other academic institutions as well as the biotech and pharmaceutical industry.
Research of the Novo Nordisk Foundation CO2 Research Center is at the interface between life sciences and chemical sciences to develop new fundamental understandings and early technology platforms for capturing and converting CO2 for storage and utilisation.
The vision of COE is to resolve a main bottleneck that prevents the widespread implementation of oligonucleotide pharmaceutics, and their limited (~<5%) endosomal escape.
The NNF-center for 4D cell dynamics is an interdisciplinary research infrastructure center whose purpose is to provide local researchers with state of the art equipment for 4D imaging and expertise with quantitative image analysis of biological systems.
The Copenhagen Pulse EPR Facility is a core facility available to researchers in academia and industry both within Denmark and internationally.