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All Outputs (6)

A Taxonomically-informed Mass Spectrometry Search Tool for Microbial Metabolomics Data (2023)
Working Paper
Zuffa, S., Schmid, R., Bauermeister, A., Gomes, P. W. P., Caraballo-Rodriguez, A. M., Abiead, Y. E., …Dorrestein, P. C. A Taxonomically-informed Mass Spectrometry Search Tool for Microbial Metabolomics Data

MicrobeMASST, a taxonomically-informed mass spectrometry (MS) search tool, tackles limited microbial metabolite annotation in untargeted metabolomics experiments. Leveraging a curated database of >60,000 microbial monocultures, users can search known... Read More about A Taxonomically-informed Mass Spectrometry Search Tool for Microbial Metabolomics Data.

Examining the Use of Autonomous Systems for Home Health Support using a Smart Mirror (2023)
Working Paper
Dowthwaite, L., Reyez Cruz, G., Pena, A. R., Pepper, C., Jäger, N., Barnard, P., …Benford, S. Examining the Use of Autonomous Systems for Home Health Support using a Smart Mirror

The home is becoming a key location for healthcare delivery, including the use of technology driven by autonomous systems (AS) to monitor and support healthcare plans. Using the example of a smart mirror, this paper describes the outcomes of focus gr... Read More about Examining the Use of Autonomous Systems for Home Health Support using a Smart Mirror.

PDI-functionalised glass beads: efficient, metal-free heterogeneous photocatalysts suitable for flow photochemistry (2023)
Working Paper
Ali, H., Ahmed, I., Robertson, K., & Lanterna, A. PDI-functionalised glass beads: efficient, metal-free heterogeneous photocatalysts suitable for flow photochemistry

Perylene diimides (PDI) have an extraordinary ability to activate both energy and electron transfer process upon light excitation, however, their extremely low solubility has hindered their wide use as photocatalysts. Here, we show a series of suppor... Read More about PDI-functionalised glass beads: efficient, metal-free heterogeneous photocatalysts suitable for flow photochemistry.

Pathways for the Valorization of Animal and Human Waste to Biofuels, Sustainable Materials and Value-Added Chemicals (2023)
Working Paper
Okolie, J. A., Jimoh, T., Akande, O., Okoye, P. U., Ogbaga, C. C., Adeleke, A. A., …Nosakhare Amenaghawon, A. Pathways for the Valorization of Animal and Human Waste to Biofuels, Sustainable Materials and Value-Added Chemicals

Human and animal waste, including waste products originating from human or animal digestive systems such as urine, feces, and animal manure, have constituted a nuisance to the environment. Inappropriate disposal and poor sanitation of human and anima... Read More about Pathways for the Valorization of Animal and Human Waste to Biofuels, Sustainable Materials and Value-Added Chemicals.

Sustainability of Bioenergy – Mapping the Risks & Benefits to Inform Future Bioenergy Systems (2023)
Working Paper
James Welfle, A., Almena, A., Naveed Arshad, M., William Banks, S., Butnar, I., Jane Chong, K., …Roeder, M. Sustainability of Bioenergy – Mapping the Risks & Benefits to Inform Future Bioenergy Systems

Bioenergy is widely included in energy strategies for its GHG mitigation potential. Bioenergy technologies will likely have to be deployed at scale to meet decarbonisation targets, and consequently biomass will have to be increasingly grown/mobilised... Read More about Sustainability of Bioenergy – Mapping the Risks & Benefits to Inform Future Bioenergy Systems.

OptoRheo: Simultaneous in situ micro-mechanical sensing and 3D imaging of live cell cultures (2023)
Working Paper
Mendonca, T., Lis-Slimak, K., Matheson, A. B., Smith, M. G., Anane-Adjei, A. B., Cavanagh, R., …Wright, A. J. OptoRheo: Simultaneous in situ micro-mechanical sensing and 3D imaging of live cell cultures

Biomechanical cues from the extracellular matrix (ECM) are essential for directing many cellular processes, from normal development and repair, to disease progression. To better understand cell-matrix interactions, we have developed a new instrument... Read More about OptoRheo: Simultaneous in situ micro-mechanical sensing and 3D imaging of live cell cultures.