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Structure of Molecular Hydrogen in High Charge Pillared Clays
In this proposal we aim to study low temperature structure of hydrogen in the interlayer region of partially hydrated pillared clays. There are linked dual motivations for this... -
Interlayer Dynamics in Graphite Intercalation Compounds
Alkali metals are well-known to form regularly-layered graphite intercalation compounds (GICs) which exhibit a number of novel and practically important structural and... -
QENS studies of nanostructured hydrides
The search for a light, high-capacity hydrogen store continues. Ammonia borane (AB) is a complex hydride with excellent hydrogen capacity, of which half desorbs at moderate... -
The structure of hydrogen in calcium-ammonia-graphite: an in situ time resolv...
The aim of this proposal is to determine the in-plane and out-of-plane structure of H2 in the two dimensional galleries of stage-I calcium-ammonia-graphite intercalates: this... -
The Dynamics of Molecular Hydrogen in Synthetic Clays
In this proposal we aim to study the low temperature uptake and dynamics of hydrogen in the interlayer region of partially hydrated pillared clays. There are linked dual... -
The dynamics of the calcium-ammonia-graphite decomposition with hydrogen
Graphite intercalation compounds (GICs) have potential as hydrogen storage materials, from direct physisorption of H2 or as a high surface area nanostructured host for metal... -
Structural Properties of Hydrogenated Ca-Intercalated Graphite Compounds
The recent discovery of superconductivity in Ca-intercalated graphite (C6Ca) has refocused considerable interest onto graphite intercalated compounds (GICs). We would like to... -
Hydrogen dynamics in clay nanotubes
We will study H2 dynamics in the nanotubular clay imogolite whose structure has an external diameter of ~2.5 nm and an inner diameter of <1 nm. The tube length of synthetic... -
QENS studies of molecular hydrogen in K-doped electrospun graphite nanofibres
The physisorptive capability of graphite-based nanomaterials for hydrogen is strongly dependent on their surface areas and nanomorphologies. We have made electrospun graphite... -
Structural studies and decomposition of nanostructured ammonia borane-polymer...
Ammonia borane (AB) is a promising hydrogen storage material with up to 12 wt% obtainable from 100 to 150 C. Desorption temperatures can be lowered towards targets and kinetics... -
The structure of ammonia borane in water, DMSO and THF
There is an increasing urgency to find stable and lightweight hydrogen storage materials for clean transport applications. Promising options being investigated include Mg-based... -
The structure of aprotic and aromatic solvents
In this proposal we would like to study the structure of polar aprotic and aromatic liquids using H/D and 15N/*N isotopic labelling on SANDALS. The molecules chosen for study... -
INS studies of improved hydrogen release in nanostructured ammonia borane fibres
Increasing the density of hydrogen storage is critical for the commercial introduction of hydrogen vehicles. Our nanostructured electrospun ammonia borane (AB)-polystyrene (PS)... -
QENS studies of improved hydrogen release in nanostructured ammonia borane fi...
Increasing the density of hydrogen storage is critical for the commercial introduction of hydrogen vehicles. Our nanostructured electrospun ammonia borane (AB)-polystyrene (PS)... -
SANS studies of electrospun polystyrene-ammonia borane nanostructures
Increasing the density of hydrogen storage under ambient conditions is a critical requirement for the widespread introduction of low-carbon hydrogen vehicles. Ammonia borane... -
INS studies of molecular hydrogen in K-doped electrospun graphite nanofibres
The physisorptive capacity of graphite-based nanomaterials for hydrogen is strongly dependent on their internal surface areas and pore dimensions. We have made electrospun... -
Diffraction of potassium-intercalated graphitic nanofibres with hydrogen
Nanostructured carbons are promising precursors for a high-capacity reversible hydrogen storage material with fast kinetics, but the interaction of H2 with pure graphite is too...