Rachel has been awarded an Isaac Newton Trust grant for new lecturers at Cambridge. There will be a 6 month postdoctoral position available in the sol-gel synthesis of templated nanoparticles – watch this space!
Rachel has been awarded an Isaac Newton Trust grant for new lecturers at Cambridge. There will be a 6 month postdoctoral position available in the sol-gel synthesis of templated nanoparticles – watch this space!
Full or fees-only awards available to students who pay ‘home rate’ fees
Starting date: October 2017
Please contact Rachel for more information or click here for the job posting.
Porous membranes perform essential functions in a variety of environmental and energy related applications, including mass and gas separation, particulate filtration, water purification, and catalysis. However, the development of membrane technologies requires that the complex relationship between the chemical activity of the membrane material and physical parameters, such as surface area, pore size, connectivity, and morphology, can be both controlled and understood.
The aim of this PhD project is to develop novel organic-inorganic polymer membranes, that exhibit hierarchical porosity across multiple length scales, which leads to their superior performance in the destruction or capture of pollutants. To achieve this, a bottom-up synthetic approach utilising light-responsive templates will be used to adjust size, surface area and connectivity of the membrane pores. This will enable the relationship between the membrane structure and the flow and entrapment of pollutant species within the porous network to be studied directly. The long-term vision is to integrate these materials with fluidic device technology to realise advanced purification systems with in-built capability for remote and automated control. This project will involve synthetic materials chemistry, characterisation (X-ray diffraction, scanning electron microscopy, adsorption isotherms, small-angle X-ray/neutron scattering) and membrane fabrication and testing.
We welcome Elaine Kelly back to the group to undertake her PhD studies on hierarchically structured porous nanoparticles from stimuli-responsive templates. Elaine undertook her final year project in the group and was awarded a highly competitive IRC postgraduate studentship to return to pursue her PhD studies with us. Congratulations Elaine!
Congratulations to Barry who was awarded the 2015-2016 prize for best demonstrator in the JF Physical Chemistry laboratories. The prize winner is jointly chosen by the undergraduate students and the academic staff members responsible for the lab. Well done Barry!

Photochemistry has existed as a branch of the chemical sciences for over two hundred years. However, the applications of photochemistry are very much a hot topic in modern day research, engaging scientists across a variety of disciplines. Applied Photochemistry, published by Springer in 2013, is a new textbook aimed at students and researchers in science, engineering and medicine who are interested in applying photochemistry in a broad spectrum of areas. Edited by Dr Rachel C. Evans (Trinity College Dublin), Dr Peter Douglas (Swansea University) and Prof. Hugh D. Burrows (Universidade de Coimbra), Applied Photochemistry brings together contributions from specialists in a variety of fields including solar energy, photomedicine, optical sensing, photochemical synthesis, electronics and imaging.

Editors: Rachel C. Evans, Peter Douglas, Hugh D. Burrows