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Showing 1 to 7 of 7 for “"anzsrc-for: 4004 Chemical engineering"”.

  1. Uncovering molecular orientation and morphology at biotic/abiotic interface for peptide-based graphene sensors

    … of biosensors is dictated by the biointerface formed by the bioreceptor attached to a transducer material. Among other factors, the conformation of the bioreceptor before and after analyte recognition and binding can be crucial to determining the success of the biosensor application. Therefore, …

    unsw Repository record for Uncovering molecular orientation and morphology at biotic/abiotic interface for peptide-based graphene sensors (opens in a new tab)

  2. Antimicrobial Polymers as Adjuvants/Synergists of Antibiotics to Combat Multidrug-Resistant Bacteria

    … the synergetic effects of new tri-systems for combination therapy against Gram-negative bacteria which contain: i) an AMP (colistin methanesulfonate); ii) an antimicrobial polymer as AMP mimic and; iii) commercial antibiotics. It was found that colistin and the antimicrobial polymer could …

    unsw Repository record for Antimicrobial Polymers as Adjuvants/Synergists of Antibiotics to Combat Multidrug-Resistant Bacteria (opens in a new tab)

  3. Visible Light-Mediated Polymerization for Protein-Polymer Conjugation: A Biocompatible Tool for Therapeutic Applications

    … thereby expanding the application scope for proteins. In the late 1970s, Davis’s pioneering work on the PEGylation of proteins marked the beginning of an era of protein-polymer conjugation for the preparation of therapeutic agents. However, early methods for protein-polymer conjugation …

    unsw Repository record for Visible Light-Mediated Polymerization for Protein-Polymer Conjugation: A Biocompatible Tool for Therapeutic Applications (opens in a new tab)

  4. Synthesis and Catalytic Applications of Ni-Based Single-Atom and Nanoparticle Catalysts Supported on UiO-66-NH2

    … In this project, we focus on the C1-level transformation of CO₂. UiO-66-NH2, as a novel metal-organic framework, possesses unique features such as excellent specific surface area and remarkable CO₂ adsorption capacity. Using it as a catalyst support for CO₂ conversion represents a promising …

    unsw Repository record for Synthesis and Catalytic Applications of Ni-Based Single-Atom and Nanoparticle Catalysts Supported on UiO-66-NH2 (opens in a new tab)

  5. Solar-driven catalytic processes for sustainable fuels and chemicals production

    … catalytic conversion of CO2 emissions and chemical wastes into value-added fuels and chemicals offers a promising solution to address the escalating energy demand and promote sustainable development. However, the advancement of solar fuels technology is severely impeded by the challenges in …

    unsw Repository record for Solar-driven catalytic processes for sustainable fuels and chemicals production (opens in a new tab)

  6. Thermal Modelling, Management, and Electrical Safety Assessment for Containerised Vanadium Flow Battery Systems

    … and costs, rendering them less suitable for large-scale applications. The Vanadium flow battery (VFB), which stores energy in liquid electrolytes, presents a distinct advantage by allowing extended storage through increased tank volume without the need for substantial equipment expansion. …

    unsw Repository record for Thermal Modelling, Management, and Electrical Safety Assessment for Containerised Vanadium Flow Battery Systems (opens in a new tab)

  7. Phase Control and Transformations of Azole-Based Metal Organic Framework Composites

    … We first study ZIF-7 phase control using mechanochemical synthesis. Ammonium nitrate was found to be a good catalyst in mechanochemical ZIF formation, with the usage of DMF and H2O favouring ZIF-7-I and ZIF-7-III formation, respectively. New phases of ZIF-7 variations not accessible using the …

    unsw Repository record for Phase Control and Transformations of Azole-Based Metal Organic Framework Composites (opens in a new tab)