PhD Studentship: Predictive modelling and control of low-cost droplets for micro-engineering
University of Birmingham
Advances in manufacturing science have resulted in unprecedented research and development in the design of ‘micro-swimmers’: microscopic entities that navigate fluid environments by converting some form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis for medical diagnostics, targeted drug delivery, cell sorting for biological assays, and chemical sensing for enviro...
Advances in manufacturing science have resulted in unprecedented research and development in the design of ‘micro-swimmers’: microscopic entities that navigate fluid environments by converting some form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis for medical diagnostics, targeted drug delivery, cell sorting for biological assays, and chemical sensing for enviro...
Opportunity details
Advances in manufacturing science have resulted in unprecedented research and development in the design of ‘micro-swimmers’: microscopic entities that navigate fluid environments by converting some form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis for medical diagnostics, targeted drug delivery, cell sorting for biological assays, and chemical sensing for environmental monitoring and remediation. A particularly interesting and modern micro-swimmer is the chemically active drop. These microscopic drops use chemical energy from an ambient fuel to swim and explore their surroundings. Their appeal lies in their ability to be manufactured in large numbers via inexpensive microfluidic techniques. While the mechanism of these drops’ motion is well-known, controlling their trajectory is often challenging. There exist experimental proofs-of-concept that utilize imposed flows or chemical influences or electrical fields to manipulate an active drop’s motion, but a systematic first-principles-based analysis of these effects is still lacking. This limits our ability to predictably control and exploit the drop for useful tasks. Aims: 1. Develop computational models to quantitatively predict the response of chemically active drops to the various physico-chemical stimuli that they most commonly encounter in laboratory experiments. 2. Identify ways to increase the manoeuvrability of a drop according to the demands of the applications mentioned in the beginning. For example, if one knows the trajectory desired from the drop for a reagent transport task, then the challenge would be to identify the ideal ‘guiding stimuli’ that will lead...
Eligibility
We are looking for curious, enthusiastic and hard-working candidates with the following expertise: -- an understanding of concepts in fluid mechanics, and analytical and numerical methods to solve partial differential equations, -- excellent oral and written communication skills. Prior experience in computational fluid dynamics or active matter will be a big advantage, but we seek, above all, a willingness to engage rigorously with challenging concepts. Candidates are encouraged to make an informal inquiry with Dr Nikhil Desai.
Requirements
We are looking for curious, enthusiastic and hard-working candidates with the following expertise: -- an understanding of concepts in fluid mechanics, and analytical and numerical methods to solve partial differential equations, -- excellent oral and written communication skills. Prior experience in computational fluid dynamics or active matter will be a big advantage, but we seek, above all, a willingness to engage rigorously with challenging concepts. Candidates are encouraged to make an informal inquiry with Dr Nikhil Desai.
Funding and benefits
Funding eligibility: UK Students.
Required documents
References
How to apply
Identify ways to increase the manoeuvrability of a drop according to the demands of the applications mentioned in the beginning. “Active colloids: Progress and challenges towards realising autonomous applications.” Curr.
Open the official application information
Verify the deadline and final conditions on the official provider page before submitting an application.
Source and verification
Check the current official call before applying
Recorded source check: September 25, 2026. A stored check date does not guarantee that every field is complete or still current. Compare the provider, eligibility, funding and deadline with the live official call before applying.
Benefits
Funding eligibility: UK Students.
Eligibility summary
We are looking for curious, enthusiastic and hard-working candidates with the following expertise: -- an understanding of concepts in fluid mechanics, and analytical and numerical methods to solve partial differential equations, -- excellent oral and written communication skills. Prior experience in computational fluid dynamics or active matter will be a big advantage, but we seek, above all, a willingness to engage rigorously with challenging concepts. Candidates are encouraged to make an informal inquiry with Dr Nikhil Desai.
Requirements
We are looking for curious, enthusiastic and hard-working candidates with the following expertise: -- an understanding of concepts in fluid mechanics, and analytical and numerical methods to solve partial differential equations, -- excellent oral and written communication skills. Prior experience in computational fluid dynamics or active matter will be a big advantage, but we seek, above all, a willingness to engage rigorously with challenging concepts. Candidates are encouraged to make an informal inquiry with Dr Nikhil Desai.
Documents required
References
Language/test requirements
Listing-board disclaimer
Prime Scholarship Alerts is an independent listing board, not the scholarship provider, university or funder. We do not select applicants, collect provider application fees or guarantee an award. Verify requirements, deadlines, funding, fees and application instructions through the current provider page before applying.