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All Outputs (3)

Interfacial engineering of MoxSy via Boron‐doping for electrochemical N2‐to‐NH3 conversion. (2024)
Journal Article
ALSABBAN, M.M., PERAMAIAH, K., GENOVESE, A., AHMAD, R., AZOFRA, L.M., RAMALINGAM, V., HEDHILI, M.N., WEHBE, N., CAVALLO, L. and HUANG, K.-W. [2024]. Interfacial engineering of MoxSy via Boron-doping for electrochemical N2-to-NH3 conversion. Advanced materials [online], Early View. Available from: https://doi.org/10.1002/adma.202405578

The electrocatalytic synthesis of ammonia (NH3) through the nitrogen reduction reaction (NRR) under ambient temperature and pressure is emerging as an alternative approach to the conventional Haber–Bosch process. However, it remains a significant cha... Read More about Interfacial engineering of MoxSy via Boron‐doping for electrochemical N2‐to‐NH3 conversion..

Photocatalytic conversion of cellulose into C5 oligosaccharides. (2023)
Journal Article
SKILLEN, N., WELGAMAGE, A., ROBERTSON, P.K.J., IRVINE, J.T.S. and LAWTON, L.A. 2023. Photocatalytic conversion of cellulose into C5 oligosaccharides. Journal of physics: energy [online], 6(1), article number 015002. Available from: https://doi.org/10.1088/2515-7655/ad04f1

Cellulose is made up of linear polymers of glucose monomers that could be a crucial source for valuable chemicals and sustainable liquid fuels. Cellulose is however, very stable and its conversion to a useful fuel or platform chemical products remain... Read More about Photocatalytic conversion of cellulose into C5 oligosaccharides..

Simultaneous cellulose conversion and hydrogen production assisted by cellulose decomposition under UV-light photcatalysis. (2015)
Journal Article
ZHANG, G., NI, C., HUANG, X., WELGARMAGE, A., LAWTON, L.A., ROBERTSON, P.K.J. and IRVINE, J.T.S. 2016. Simultaneous cellulose conversion and hydrogen production assisted by cellulose decomposition under UV-light photcatalysis. Chemical communications [online], 52, pages 1673-1676. Available from: https://doi.org/10.1039/c5cc09075j

Photocatalytic conversion of cellulose to sugars and carbon dioxide with simultaneous production of hydrogen assisted by cellulose decomposition under UV or solar light irradiation was achieved upon immobilization of cellulose onto a TiO2 photocataly... Read More about Simultaneous cellulose conversion and hydrogen production assisted by cellulose decomposition under UV-light photcatalysis..