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Freeform Reversible Embedding of Suspended Hydrogel (FRESH) additive manufacturing of sustainable porous calcium phosphate scaffolds for hard tissue engineering

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Guildford, United Kingdom

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Freeform Reversible Embedding of Suspended Hydrogel (FRESH) additive manufacturing of sustainable porous calcium phosphate scaffolds for hard tissue engineering

About the Project

Applications are invited to apply for a 3.5-year EPSRC fully funded PhD studentship at the School of Chemistry and Chemical Engineering, University of Surrey, Guildford, UK.

Aim of the project will be manufacturing and characterising amorphous calcium-phosphate-based scaffolds using the Freeform Reversible Embedding of Suspended Hydrogel (FRESH) 3D printing technique.

This method consists of printing a bioink into a sacrificial thermo-reversible bath, offering mechanical strength and shape fidelity preventing collapse during printing. Bioinks will be based on polyphosphate gels made via sol-gel chemistry and/or coacervation. Bioinks will be embedded with therapeutic ions that possess bone regenerative properties as well as antibacterial capabilities. The printed scaffolds are expected to promote bone regeneration via formation of hydroxyapatite on their surface when in contact with body fluids, promoting osteoblast attachment and proliferation.

Advanced structural and morphological characterisation of the scaffolds will be performed using a multi-technique approach including electron microscopy (SEM and TEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), thermal analysis, gas physisorption, X-ray absorption spectroscopy at synchrotron radiation facilities and spectroscopy (FT-IR and Raman). Cytocompatibility will be assessed on osteoblasts via MTT testing.

Spanning across chemistry, materials science and engineering and glass science this proposal is truly multidisciplinary. The PhD candidate will develop a range of complementary skills in fabrication and cutting-edge material characterisation techniques.

Supervisors: Dr Daniela Carta, Dr Alessandra Pinna, Dr Jorge Gutierrez-Merino, Professor Mark Baker and Dr Tan Sui

Entry requirements

Applications are open to UK nationals and EU nationals with settled status (candidates who pay UK/home rate fees). See UKCISA for further information. Starting in October 2026. Later start dates may be possible, please contact Dr Daniela Carta once deadline passes.

You will need to meet the minimum entry requirements for our PhD programme.

Candidate profile

PhD candidates must have a first class or 2:1 degree (or equivalent) in a relevant scientific discipline, including Chemistry, Material Science, Biomaterials, Bioengineering, Nanoscience and Chemical Engineering and a strong interest in chemistry of biomaterials and material science and characterisation.

How to apply

Applications should be submitted via the Chemistry PhD programme page. In place of a research proposal, you should upload a document stating the title of the project that you wish to apply for and the name of the relevant supervisor.

Funding Notes

Fully funded studentship opportunities covering home university fees and UKRI standard rate stipend (£21,805 for 2026/27 academic year).

Applications are open to UK nationals and EU nationals with settled status (candidates who pay UK/home rate fees). See UKCISA for further information.

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