Characterisation of Nano-Particulates in Natural Systems
Lead Research Organisation:
University of Leeds
Department Name: Institute of Materials Research
Abstract
Characterisation of the primary nano-particulate crystallites that make up natural and synthetic structures is of increasing importance in industrial, biological and environmental application. This Advanced Fellowship aims to build on existing studies by the applicant, his collaborators, and his PhD students, and will focus on the determination of the surface characteristics that appear to differentiate nano-particle minerals in natural systems (environmental and biological) from those in synthetic systems. In particular the underlying hypothesis is that dynamic exchangeable (or thermodynamically unstable) surfaces are a consistent feature of primary particles in natural systems that then shape the physical characteristics at the macroscopic level, in particular explaining aspects of exchangeability, turnover, mechanical strength and interaction with organic molecules. The application draws on the latest analytical electron microscopy techniques available in the physical sciences and, with novel application, applies them to the environments of natural systems which are very sensitive to electron beam irradiation. This leading edge structural analysis will provide fundamental data that will then be used to probe the function of the particle in the system. Therefore the application truly serves to advance potential understanding and cross-disciplinary interaction.
Organisations
People |
ORCID iD |
Andrew Brown (Principal Investigator) |
Publications
Aslam Z
(2008)
Electronic property investigations of single-walled carbon nanotube bundles in situ within a transmission electron microscope: an evaluation.
in Journal of microscopy
Bilton M
(2010)
Sol-gel synthesis and characterisation of nano-scale hydroxyapatite
in Journal of Physics: Conference Series
Bilton M
(2012)
Comparison of Hydrothermal and Sol-Gel Synthesis of Nano-Particulate Hydroxyapatite by Characterisation at the Bulk and Particle Level
in Open Journal of Inorganic Non-metallic Materials
Bonneville S
(2009)
Plant-driven fungal weathering: Early stages of mineral alteration at the nanometer scale
in Geology
Bonneville S
(2011)
Tree-mycorrhiza symbiosis accelerate mineral weathering: Evidences from nanometer-scale elemental fluxes at the hypha-mineral interface
in Geochimica et Cosmochimica Acta
Booth M
(2012)
Determining the Concentration of CuInS 2 Quantum Dots from the Size-Dependent Molar Extinction Coefficient
in Chemistry of Materials
Bots P
(2014)
Formation of stable uranium(VI) colloidal nanoparticles in conditions relevant to radioactive waste disposal.
in Langmuir : the ACS journal of surfaces and colloids
Brown A
(2014)
Measuring in vitro cellular uptake of nanoparticles by transmission electron microscopy
in Journal of Physics: Conference Series
Brown A
(2013)
Nanomedicine
Description | I have developed methods to characterise nanoparticles in natural environments such as cells and frozen fluids by electron microscopy. Thus we can explore the structure and chemistry of these particles to explore how these environments might affect the particles' properties. |
Exploitation Route | I have progressed to a full academic in this area of electron microscopy. Others will use the microscopy techniques developed in this work for similar nano particle, nano toxicology and nano medicine investigations. |
Sectors | Chemicals Environment Healthcare Manufacturing including Industrial Biotechology Pharmaceuticals and Medical Biotechnology |