Interested applicants are invited to apply directly at the NUS Career Portal. Please note your application will only be processed if you apply via NUS Career Portal. NUS Career Portal link: https://careers.nus.edu.sg/job/Research-Fellow-%28Microfluidics%29/33826-en_GB/ We regret that only shortlisted candidates will be notified. Job Description We are inviting applications for Research Fellow to join our dynamic and interdisciplinary team focused on developing a passive microfluidic plasma separator device. The successful candidate will work at the interface of micro/nanofabrication, point-of-care (POC) development, and biomedical diagnostics. This role offers a unique opportunity to contribute to the design and optimization of integrated microfluidic platforms for specific disease applications, including cardiovascular disease. Key Responsibilities: • Design, prototype, and optimize passive microfluidic devices integrating plasma-separation methodology for efficient plasma delivery to electrochemical sensors. • Characterize plasma separation performance including separation time, yield, cell carryover, and robustness across physiological and environmental conditions. • Develop reproducible device fabrication workflows, design documentation, and standardized testing protocols to support scalable prototyping and design transfer. • Plan experiments, collect and analyse data using appropriate analytical tools and software. • Work with interdisciplinary teams including clinicians to integrate microfluidics chips with complementary technologies, such as electrochemical biosensing platforms. • Prepare research publications, technical reports, and conference presentations. • Keep abreast of emerging developments in microfluidics, diagnostics, and biomedical engineering. Qualifications • Possess a PhD in Biomedical Engineering, Mechanical Engineering, Materials Science, Chemical Engineering, or related discipline. • Demonstrated experience in experimental design and quantitative characterization of microfluidic systems, including flow behaviour, plasma separation efficiency, and assay compatibility. • Hands-on expertise in the design, prototyping, and validation of microfluidic diagnostic devices, including membrane integration, passive flow control, and performance optimization. • Strong analytical skills with experience in data analysis and visualization tools for device performance evaluation. • Excellent communication skills and the ability to collaborate effectively within interdisciplinary teams spanning engineering, biosensing, and clinical research. • Open to fixed-term contract.