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Dive into the research topics where Leighton Holyfield is active.

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Featured researches published by Leighton Holyfield.


Journal of Materials Chemistry | 2017

Hydrogen storage in polymer-based processable microporous composites

Sébastien Rochat; Katarzyna Polak-Kraśna; Mi Tian; Leighton Holyfield; Timothy J. Mays; Chris R. Bowen; Andrew D. Burrows

We report on a series of composites based on a polymer of intrinsic microporosity matrix (PIM-1) containing a high surface area porous aromatic framework filler (PAF-1). The hydrogen uptake and mechanical properties of the composites are presented along with an assessment of their potential for integration into high-pressure hydrogen storage tanks, either to increase storage capacity or to reduce operating pressure for the same uptake. The composites are more stable and processable than systems such as finely divided physisorbent materials, and they can be made into self-standing films. In addition to retaining the processability of PIM-1, they also possess enhanced surface areas and pore volumes approximately proportional to the amount of incorporated PAF-1. Hydrogen uptake measurements combined with theoretical modelling show that the composites can store up to 6.7 wt% H2 at 77.4 K. Tensile testing and dynamic mechanical thermal analyses indicate decreasing stress and strain to failure with increasing proportion of PAF-1, although the processability and elasticity of the compounds are maintained until the weight percentage of filler reaches 30%. These lightweight composites show promise as effective hydrogen storage materials, especially for applications where pressures up to 7.5 MPa are required. We also provide guidelines for the design of polymer-based porous composites for gas storage or separation.


Journal of Materials Science | 2017

Mechanical characterisation of polymer of intrinsic microporosity PIM-1 for hydrogen storage applications

Katarzyna Polak-Kraśna; Robert Dawson; Leighton Holyfield; Chris R. Bowen; Andrew D. Burrows; Timothy J. Mays


Chemical Engineering Journal | 2015

High volumetric and energy densities of methane stored in nanoporous materials at ambient temperatures and moderate pressures

Nuno Bimbo; Andrew Physick; Antonio Noguera-Díaz; Adam Pugsley; Leighton Holyfield; Valeska Ting; Timothy J. Mays


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2016

Structure-property relationships in metal-organic frameworks for hydrogen storage

Antonio Noguera-Díaz; Nuno Bimbo; Leighton Holyfield; Ibbi Y. Ahmet; Valeska Ting; Timothy J. Mays


Archive | 2018

Materials Based on the Polymer of Intrinsic Microporosity PIM-1 for Hydrogen Storage Applications

Leighton Holyfield


ChinaNANO2017: The 7th International Conference on Nanoscience & Technology | 2017

Polymer-based Composites with Enhanced Microporosity for Hydrogen Storage

Mi Tian; Leighton Holyfield; Sébastien Rochat; Katarzyna Polak-Kraśna; Andrew D. Burrows; Chris R. Bowen; Timothy J. Mays


11th International Symposium on the Characterization of Porous Solids (COPS-XI) | 2017

Evaluation of PIM-1/MIL-101 Composites for Use in a Hybrid High Pressure Hydrogen Storage System

Leighton Holyfield; Nick Weatherby; Andrew D. Burrows; Timothy J. Mays


U4C Colloquium | 2016

Novel Hydrogen Storage Solutions for Road Transport Applications

Leighton Holyfield; Robert Dawson; Nick Weatherby; Andrew D. Burrows; Timothy J. Mays


H2FC: Hydrogen & Fuel Cell SUPERGEN Researcher Conference | 2016

Towards a novel hybrid hydrogen storage system featuring a PIM-1/MIL-101 adsorbent composite

Leighton Holyfield; Nick Weatherby; Andrew D. Burrows; Timothy J. Mays


Royal Society International Seminar - a UK-Japan meeting on Transforming Framework Materials Chemistry | 2015

Adsorptive storage of methane - high volumetric and energy densities at moderate pressures and temperatures

Nuno Bimbo; Andrew Physick; Antonio Noguera Noguera Diaz; Adam Pugsley; Leighton Holyfield; Valeska Ting; Timothy J. Mays

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