PhD Studentship – Mechanosensitive Nanochannels in Manchester

PhD Studentship – Mechanosensitive Nanochannels in Manchester

Manchester Full-Time 21805 - 21805 £ / year (est.) On-site
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At a Glance

  • Tasks: Develop cutting-edge nanochannels inspired by biology using advanced materials like graphene.
  • Company: The University of Manchester, a leading institution in research and innovation.
  • Benefits: Fully funded PhD with a tax-free stipend and full tuition coverage for eligible students.
  • Other info: 3.5-year programme with excellent research opportunities and potential for career advancement.
  • Why this job: Join a pioneering project that merges nanotechnology and biomimetics to create impactful technologies.
  • Qualifications: 2:1 Honours degree in relevant fields; strong interest in nanotechnology and advanced materials.

The predicted salary is between 21805 - 21805 £ per year.

Organization

The University of Manchester

Department

Physics and Astronomy

Location

Manchester, United Kingdom

Programme

  • Ph D (3.5 Years)
  • Project Overview

This fully funded Ph D project aims to develop artificial mechanosensitive nanochannels inspired by biological receptors using advanced two-dimensional (2D) materials such as graphene.

The research seeks to engineer nanochannels capable of responding to touch, force, pressure, and other mechanical stimuli by controlling ion transport, enabling biomimetic sensing technologies.

The project combines nanotechnology, materials science, biomimetics, nanofluidics, and ion transport to create next-generation artificial mechanosensitive systems.

  • Research Objectives
  • Design artificial nanochannels with tunable sensitivity to mechanical deformation.
  • Develop selective ion transport mechanisms through engineered nanochannels.
  • Control nanochannel geometry and surface chemistry for selective ion permeability.
  • Integrate signal-processing mechanisms that convert ion transport into electrical signals.
  • Develop biomimetic nanosystems capable of distinguishing touch, force, pressure, and mechanical stress.
  • Required Qualifications
  • Upper Second-Class (2:1) Honours degree (or international equivalent) in Physics, Materials Science, Nanotechnology, Engineering, or a closely related discipline.
  • Alternatively, a 2:1 Honours degree with a Merit Master's degree in a relevant subject.
  • Strong interest in nanotechnology, nanofluidics, advanced materials, or biomimetic systems.
  • Funding
  • Fully funded for eligible UK Home students.
  • Annual tax-free UKRI stipend: £21,805 (2026/27 rate).
  • Full tuition fees covered for Home students.
  • Stipend expected to increase annually.
  • Self-funded Home and Overseas applicants are also welcome to apply.
  • Project Details
  • Duration: 3.5 years.
  • Expected start date: October 2026.
  • Applications accepted year-round.
  • Supervisor

Principal Supervisor

  • Professor Radha Boya
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PhD Studentship – Mechanosensitive Nanochannels in Manchester employer: NanoHelp

The University of Manchester is an exceptional employer, offering a vibrant research environment that fosters innovation and collaboration in the field of nanotechnology. With fully funded PhD opportunities, competitive stipends, and a commitment to professional development, students can thrive in a supportive culture that values academic excellence and personal growth. Located in the heart of Manchester, the university provides access to a dynamic city known for its rich cultural heritage and diverse community, making it an ideal place for aspiring researchers to embark on their academic journey.

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Contact Details:

NanoHelp Recruitment Team

StudySmarter Expert Advice🤫

We think this is how you could land PhD Studentship – Mechanosensitive Nanochannels in Manchester

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We think you need these skills to ace PhD Studentship – Mechanosensitive Nanochannels in Manchester

Nanotechnology
Materials Science
Biomimetics
Nanofluidics
Ion Transport
Mechanical Deformation Sensitivity
Signal Processing

Some tips for your application 🫡

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How to prepare for a job interview at NanoHelp

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