EquipmentPerkinElmer DSC 8000 Differential Scanning Calorimeter

Thermomechanical Analysis Lab (Room E109 of the Civil/Mechanical building)
University of Canterbury
Mechanical Engineering
Ilam campus
Christchurch
Canterbury
8041
New Zealand

PEOPLE

  • Team member
    • Associate Professor
    • Mechanical Engineering
    • Associate ProfessorMechanical Engineering

    Dr Mark Staiger is a materials scientist and engineer with a research career spanning more than 20 years. He obtained both his undergraduate and postgraduate degrees from the Department of Materials Engineering at Monash University, Clayton, Melbourne, Australia, and subsequently established an interdisciplinary research programme at the University of Canterbury spanning both metallic and non-metallic materials, including polymers, composites and bio-derived materials.

     

    Dr Staiger's research is motivated by a strong interest in addressing societal challenges through materials-based technologies, with particular emphasis on improving public health and protecting the natural environment. Globally important issues—including the rising cost of healthcare, the need for improved biomedical technologies, resource sustainability and the growing environmental burden associated with waste materials—provide a strong motivation for his research.

     

    Over his career, Dr Staiger has developed a diverse portfolio of research encompassing metallurgical science, biomaterials, polymers, composites and sustainable materials. His work includes the development and characterisation of biodegradable metallic biomaterials, particularly magnesium-based materials for biomedical applications, as well as research into bio-based and biodegradable non-metallic materials.

    His current and recent research encompasses biocomposites, natural-fibre materials, proteinaceous materials, bioaerogels, cellulose-based materials, biodegradable polymers, recycled polymers and nanofibrous materials. This work explores how materials derived from biological and renewable resources can be engineered to provide useful mechanical, functional and biological properties, while offering pathways towards more sustainable materials manufacture and end-of-life management.

     

    A complementary strand of his research is directed towards advanced materials for healthcare, including biodegradable metallic biomaterials for biomedical devices and materials for bone repair and tissue engineering. His research in this area seeks to address some of the limitations of conventional permanent implants by developing materials whose properties and degradation behaviour can be tailored to the requirements of the biological environment.

     

    Dr Staiger has also established expertise in the processing and characterisation of advanced polymeric, composite and bio-derived materials, with research spanning the molecular, microstructural and macroscopic levels. His work employs a broad range of materials-characterisation techniques to understand the relationships between composition, processing, structure and engineering performance.

     

    A defining feature of Dr Staiger's research is therefore its interdisciplinary nature. His work brings together materials science, mechanical engineering, polymer science, metallurgy, biotechnology and sustainability, with the common objective of translating fundamental materials knowledge into technologies capable of addressing real-world challenges.

     

    Through his research, teaching and postgraduate supervision at the University of Canterbury, Dr Staiger contributes to the development of the next generation of materials engineers while advancing research into materials that can support better health outcomes and a more sustainable environment.

    Dr Mark Staiger is a materials scientist and engineer with a research career spanning more than 20 years. He obtained both his undergraduate and postgraduate degrees from the Department of Materials Engineering at Monash University, Clayton, Melbourne, Australia, and subsequently established an interdisciplinary research programme at the University of Canterbury spanning both metallic and non-metallic materials, including polymers, composites and bio-derived materials.

     

    Dr Staiger's research is motivated by a strong interest in addressing societal challenges through materials-based technologies, with particular emphasis on improving public health and protecting the natural environment. Globally important issues—including the rising cost of healthcare, the need for improved biomedical technologies, resource sustainability and the growing environmental burden associated with waste materials—provide a strong motivation for his research.

     

    Over his career, Dr Staiger has developed a diverse portfolio of research encompassing metallurgical science, biomaterials, polymers, composites and sustainable materials. His work includes the development and characterisation of biodegradable metallic biomaterials, particularly magnesium-based materials for biomedical applications, as well as research into bio-based and biodegradable non-metallic materials.

    His current and recent research encompasses biocomposites, natural-fibre materials, proteinaceous materials, bioaerogels, cellulose-based materials, biodegradable polymers, recycled polymers and nanofibrous materials. This work explores how materials derived from biological and renewable resources can be engineered to provide useful mechanical, functional and biological properties, while offering pathways towards more sustainable materials manufacture and end-of-life management.

     

    A complementary strand of his research is directed towards advanced materials for healthcare, including biodegradable metallic biomaterials for biomedical devices and materials for bone repair and tissue engineering. His research in this area seeks to address some of the limitations of conventional permanent implants by developing materials whose properties and degradation behaviour can be tailored to the requirements of the biological environment.

     

    Dr Staiger has also established expertise in the processing and characterisation of advanced polymeric, composite and bio-derived materials, with research spanning the molecular, microstructural and macroscopic levels. His work employs a broad range of materials-characterisation techniques to understand the relationships between composition, processing, structure and engineering performance.

     

    A defining feature of Dr Staiger's research is therefore its interdisciplinary nature. His work brings together materials science, mechanical engineering, polymer science, metallurgy, biotechnology and sustainability, with the common objective of translating fundamental materials knowledge into technologies capable of addressing real-world challenges.

     

    Through his research, teaching and postgraduate supervision at the University of Canterbury, Dr Staiger contributes to the development of the next generation of materials engineers while advancing research into materials that can support better health outcomes and a more sustainable environment.

    • Faculty of Engineering
    • Registered to supervise Master's/Doctoral students
    • 12 Responsible Consumption and Production
    • 15 Life on Land
    • 3 Good Health and Well Being
    • 9 Industry, Innovation and Infrastructure
    • Collaborative research projects
    • Consulting & advisory services
    • Industry partnerships & innovation
    • Media enquiries
    • Outreach & community engagement
    • Policy advice & government consultation
    • Technical expertise & support
    Fields of Research
    • Biomaterials
    • Polymers and plastics
    • Medical devices
    • Metals and alloy materials
    • Biomedical engineering
    • Waste management, reduction, reuse and recycling
    • Composite and hybrid materials
    • Proteins and peptides
    • Natural products and bioactive compounds
    • Macromolecular materials
    • Physical properties of materials
    • Functional materials
    • Inorganic materials (incl. nanomaterials)
    • Theory and design of materials
  • Manager
    • Projects Engineer
    • Mechanical Engineering
    • Projects EngineerMechanical Engineering
    • Faculty of Engineering
    • Technical expertise & support
    • Consulting & advisory services
    • Collaborative research projects