Department: Chemistry
Organisation: University College London
High End Computing for the Characterisation of Structure and Reactivity of Complex Oxide Catalysts
MATERIALS CHEMISTRY HIGH END COMPUTING CONSORTIUM
Modelling of Advanced Functional Materials using Terascale Computing
N2 to NH3 by 3MCs: Electrochemical Dinitrogen Reduction by Trimetallic Catalysts
Next generation ammonia synthesis: a highly integrated computational modelling and experimental approach
Semiconductor nanocrystals for solar cells: Tuning shape, size and interface effects
The UK Catalysis Hub
The UK Catalysis Hub - 'Science': 1 - Optimising, predicting and designing new Catalysts
Utilisation of Solar Energy and Electrocatalytic Processes for the Low Energy Conversion of CO2 to Fuels and Chemicals
A Coordinated, Comprehensive approach to Carbon Capture and Utilisation
Bio-inspired (Fe,Ni)S nano-catalysts for CO2 conversion
Bio-inspired sulfide nanocatalysts: From proof of concept to 'real' catalysis
Centre for Nature Inspired Engineering (CNIE): Addressing Challenges in Sustainability and Scalable Manufacturing
Energy Materials: Computational Solutions
Fuel from biorenewable polyols: A new catalytic route
HIGH END COMPUTING MATERIALS CHEMISTRY CONSORTIUM
Integrated Computational Solutions for Catalysis
New perspectives in photocatalysis and near-surface chemistry: catalysis meets plasmonics
New trimetallic nanoparticles as catalysts for the conversion of carbon dioxide to renewable fuels
Surface and Interface Toolkit for the Materials Chemistry Community
The Sustainable Chemicals and Materials Manufacturing Hub SCHEMA
The UK Catalysis Hub -'Core'
The UK Catalysis Hub - 'Science': 2 Catalysis at the Water-Energy Nexus
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