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The School of Materials Science and Engineering (MSE) provides a vibrant and nurturing environment for staff and students to carry out inter-disciplinary research in key areas such as Computational Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological Materials, Bioinspired Materials and Sustainable Materials.
The Translational Materials Innovation Group, led by Professor Nam-Joon Cho, has world-leading expertise in multiple research areas, such as antimicrobial strategies, lipid membrane platforms, membrane-active compounds, antibacterial and antiviral applications, plant-based bio-material applications, etc.
For more details, please view https://www.ntu.edu.sg/mse/research.
The Translational Materials Innovation Group (TMIG), led by Professor Nam-Joon Cho, is a world-leading multidisciplinary research group with expertise in biomimetic lipid membranes, membrane-active compounds, antibacterial and antiviral mitigation, and plant-based biomaterials.
We are looking for a high-calibre Senior Research Fellow to support research work for engineering sporopollenin-based drug delivery and cell culture technologies. The role will focus on biointerfacial science, drug encapsulation and delivery, antimicrobial materials, anchorage-dependent cell culture, biomaterials and tissue engineering. Candidates, with experience in cell biology, neuroscience, nanoencapsulation and lipid nanoparticle research, and polymer chemistry will be considered first.
The primary objective will be to plan, monitor, and perform experiments within the scope of the assigned research project, which include collection, analysis and interpretation of data. Additional duties will include training and collaboration with research staff and students.
Key Responsibilities:
Design and characterization of broad-spectrum lipid, peptide, and glycan-based mitigants
3-D scaffold fabrication using new biomaterials and characterization of the same
Design, post-processing, and biomimetic cell culture environments for 3D scaffolds
Scalability and reproducibility of bioactive 3D scaffolds for large-scale manufacturing
Critical interpretation and application of experimental results
Collect and prepare data/ information/ proposal required for research-related grant call process
Gather information/ data and prepare documents for reporting/ papers
Assist in and deliver training new team members with relevant laboratory/ technical skills
Job Requirements:
Ph.D. Bioengineering/Materials Science/Chemistry/Chemical Engineering
Knowledge
Possess intermediate to advanced knowledge of biocompatible materials.
Familiar with latest progress in delivery system including microfluidic devices
Materials Science and Chemistry
Experience
Experienced in wet laboratory techniques, particularly in fabrication techniques for functional materials in micro- or nano- scale.
Experienced in conducting qualitative/quantitative characterization using state-of-the-art techniques including, but not limited to, lipid nanoparticle via microfluidics and biocompatible micro/nanoparticles.
Skills
Highly adept in micro/nanoparticle fabrication based on biocompatible materials, fabrication techniques such as microfluidics.
Excellent laboratory management, communication, and organizational skills
Competencies
Strong motivation to publish
Highly innovative and forward-thinking
Able to work independently and within teams
Dedicated and able to meet deadlines
We regret to inform that only shortlisted candidates will be notified.
Hiring Institution: NTUJob ID: 151782459
Skills:
microfluidics, 3-D scaffold fabrication, functional materials fabrication, nanoencapsulation, biomimetic cell culture, micro/nanoparticles, soft materials, lipid nanoparticle research, biocompatible materials