Professor Frederik Claeyssens (he/him)
Licentiate, PhD
School of Chemical, Materials and Biological Engineering
School of Chemical, Materials and Biological Engineering
Professor in Polymer Materials
Deputy Director of Biomedical Engineering
  
  +44 114 222 5513
Full contact details
School of Chemical, Materials and Biological Engineering
North Campus
Broad Lane
Sheffield
S3 7HQ
- Profile
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I am a professor in Polymer Materials at the School of Chemical, Materials and Biological Engineering. My research focus is in polymer materials for healthcare, where I make materials for microfluidics-based microphysiological systems and tissue engineering scaffolds. For this I combine nanomaterials with in house developed photocurable polymers to produce novel inks for bioprinting and 3D printing. I started my appointment in Sheffield in 2008 as an EPSRC Life Sciences Interface Fellow, before this I worked in Bristol University., where I also did my PhD in Physical Chemistry.
 
- Research interests
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My research expertise focusses on the interface between Materials Science and Biology. We synthesise novel polymer compounds and use these as base materials for medicinal applications. In particular we are building porous materials via using emulsions, 3D printing, bioprinting or a combination of these to build bespoke biodegradable scaffolds for 3D cell culture, or microscale particles to for drug elution. We combine these polymer materials with nanoparticles to explore next generation therapeutics and medical materials. We are producing these materials via low-energy processes from natural and degradable materials, so we have also a keen interested in sustainable materials.
Key research interests:
- biodegradable polymers
 - emulsion templating
 - photocurable polymers
 - additive manufacturing
 - bioprinting
 - drug eluting polymers
 
 
- Publications
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Journal articles
- . Polymer, 340, 129217-129217.
 - . Biomedical Materials, 20(6).
 - . Journal of Colloid and Interface Science, 700(Part 3).
 - . Scientific Reports, 15.
 - . Current Opinion in Colloid & Interface Science, 77, 101921-101921.
 - . Polymers, 17(9).
 - . Polymer, 322.
 - . Carbon, 234.
 - . Advances in Colloid and Interface Science, 336.
 - . Biofabrication, 17(1).
 - . Journal of Materials Chemistry B: Materials for biology and medicine, 12(45), 11746-11758.
 - . Biofabrication, 16(3).
 - . Materials & Design, 239.
 - . Frontiers in Bioengineering and Biotechnology, 11.
 - . Colloids and Surfaces A: Physicochemical and Engineering Aspects, 680.
 - . Materials Today Advances, 20.
 - . Frontiers in Chemistry, 11.
 - . Materials Today Advances, 19.
 - . International Journal of Molecular Sciences, 24(13).
 - . ACS Applied Materials & Interfaces, 15(25), 30769-30779.
 - . ACS Applied Materials & Interfaces, 15(23), 27696-27705.
 - . Materials Letters, 347.
 - . Bioengineering, 10(5).
 - . ACS Biomaterials Science & Engineering, 9(3), 1472-1485.
 - . 3D Printing and Additive Manufacturing.
 - . Biomaterials Science, 10(24), 7015-7031.
 - . Reactive and Functional Polymers, 180.
 - . Langmuir, 38(36), 10953-10962.
 - . Journal of Materials Chemistry B, 40, 8111-8165.
 - . Frontiers in Oral Health, 3.
 - . Polymer Chemistry, 13(23), 3513-3528.
 - . Biomacromolecules, 23(3), 720-730.
 - . Frontiers in Materials, 8.
 - . Frontiers in Molecular Biosciences, 8(11).
 - . Biomaterials Science, 9(21), 7297-7310.
 - . Frontiers in Materials, 8.
 - . Bioengineering, 8(11).
 - . ACS Biomaterials Science & Engineering, 7(11), 5078-5089.
 - . Bioengineering, 8(8).
 - . ACS Applied Bio Materials, 4(7), 5638-5649.
 - . ACS Biomaterials Science & Engineering, 7(6), 2803-2813.
 - . IEEE Transactions on Magnetics, 57(7), 1-6.
 - . Bioengineering (Basel), 8(5).
 - . Molecules, 26(5).
 - . ACS Biomaterials Science & Engineering, 7(2), 672-689.
 - . Polymer Chemistry, 12(2), 177-182.
 - . International Journal of Bioprinting, 7(1).
 - . Advanced Science, 8(4).
 - . Frontiers in Bioengineering and Biotechnology, 8(-), ---.
 - . Frontiers in Bioengineering and Biotechnology, 8.
 - . Biomedical Materials, 15(4).
 - . Microvascular Research, 131.
 - . Biotechnology and Bioengineering, 117(10), 3124-3135.
 - . ACS Biomaterials Science & Engineering, 6(6), 3513-3528.
 - . Tissue Engineering and Regenerative Medicine, 17(4), 445-458.
 - . International Journal of Bioprinting, 6(2), 99-113.
 - . Polymers, 12(4).
 - . ACS Applied Materials & Interfaces, 12(11), 12510-12524.
 - . Journal of Biomaterials Applications, 34(8), 1114-1130.
 - . Macromolecular Rapid Communications, 41(3).
 - . Bioengineering, 7(1).
 - . Frontiers in Bioengineering and Biotechnology, 7, ---.
 - . ACS Biomaterials Science & Engineering, 6(1), 705-714.
 - . Journal of Tissue Engineering and Regenerative Medicine, 13(9), 1581-1594.
 - . Materials, 12(16).
 - . PLoS ONE, 14(7).
 - . Journal of Biomaterials Applications, 34(4), 546-559.
 - . Polymer, 175, 243-254.
 - . ACS Biomaterials Science & Engineering, 5(7), 3190-3200.
 - . The FASEB Journal, 33(S1).
 - . Nanoscale Advances, 1(5), 1924-1935.
 - . Regenerative Medicine, 14(3), 179-197.
 - . Experimental Biology and Medicine, 244(4), 294-303.
 - . Journal of the Mechanical Behavior of Biomedical Materials, 90, 20-29.
 - . International Journal of Bioprinting, 4(1).
 - . Materials and Design, 156, 494-503.
 - . Journal of Tissue Engineering, 9.
 - . Acta Biomaterialia, 78, 48-63.
 - . APL Bioengineering, 2(2).
 - . Frontiers in Physics, 6(-), ---.
 - . AIP Advances, 8(5).
 - . Advanced Materials, 29(47).
 - . Tissue Engineering - Part A, 22(22-23), 1317-1326.
 - . Materials Science and Engineering: C, 67, 51-58.
 - . Ultramicroscopy, 171, 126-138.
 - . Cells Tissues Organs.
 - . International Journal of Bioprinting, 2(2).
 - . Metals, 6(5), 97-97.
 - . Materials Science and Engineering: C, 58, 1199-1206.
 - . Journal of the Mechanical Behavior of Biomedical Materials.
 - . Data Brief, 5, 616-620.
 - . Metals, 5(4), 1902-1920.
 - . Tissue Engineering Part B: Reviews.
 - . Engineering in Life Sciences, 15(6), 612-621.
 - . Biomaterials, 49, 77-89.
 - . Biomedical Microdevices, 17(2).
 - . Investigative Ophthalmology & Visual Science, 56(3), 1553-1561.
 - . Biomaterials Science, 3(4), 592-596.
 - . Soft Matter, 11(38), 7567-7578.
 - . Applied Surface Science.
 - . Journal of Visualised Experiments, 91.
 - . Biomed Mater, 9(4), 045009.
 - . Acta Biomater, 10(7), 3029-3037.
 - . Biomaterials Science, 2(5), 723-734.
 - . JOVE-JOURNAL OF VISUALIZED EXPERIMENTS(91).
 - Photochemical functionalisation of diamond-like-carbon for electronic neural interfaces. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 8, 401-401.
 - Photo stereolithography of high internal phase emulsions for tissue engineering applications. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 8, 198-199.
 - PolyHIPE-based porous microparticles for tissue engineering. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 8, 422-423.
 - . Middle East Conference on Biomedical Engineering Mecbme, 59-62.
 - The effect of porosity on cell ingrowth in 3D laser-fabricated biodegradable scaffolds for bone regeneration. Optics Infobase Conference Papers.
 - . Adv Mater, 25(23), 3177.
 - . Advanced Functional Materials, 10(6).
 - . Adv Mater, 25(23), 3178-3181.
 - . Biofabrication, 5(2), 025008.
 - . Biomaterials, 34(21), 5088-5106.
 - . Journal of Solid State Chemistry, 198, 466-474.
 - . 2013 Conference on Lasers and Electro Optics Europe and International Quantum Electronics Conference CLEO Europe IQEC 2013.
 - . Acta Biomater, 9(3), 5511-5520.
 - . Biomaterials, 33(25), 5901-5913.
 - An aligned 3D neuronal-glial co-culture model for peripheral nerve studies. Biomaterials.
 - . Biofabrication, 4(2), 025005.
 - Development of tissue engineered stem cell niches for corneal repair. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 6, 137-137.
 - Development of a 3D neuronal glial co-culture model for peripheral nerve studies and repair strategies. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 6, 352-352.
 - Amine functionalised nanodiamond for neuronal cell culture. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 6, 76-77.
 - RGD functionalised highly branched poly(N-isopropylacrylamide) (HB-p(NIPAM)) semi interpenetrating polymer networks (semi-IPNs) for peripheral nerve repair. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 6, 78-79.
 - Functionalised degrable photocurable polymers for peripheral nerve repair. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 6, 78-78.
 - . PHYSICAL REVIEW B, 84(24).
 - Diamond and related materials for biological applications, 155-194.
 - Direct laser writing of polylactide 3D scaffolds. Optics Infobase Conference Papers.
 - . Biofabrication, 3(4), 045005.
 - . Org Biomol Chem, 9(5), 1578-1590.
 - Development of a microfabricated outer ring for corneal repair. European Cells and Materials, 22(SUPPL.3), 14.
 - Neuronal growth and patterning on diamond like carbon substrates. European Cells and Materials, 22(SUPPL.2), 40.
 - Two photon polymerisation of photocurable biomaterials. European Cells and Materials, 22(SUPPL.2), 50.
 - Microstructuring of photocurable biomaterials with applications in neuronal repair. European Cells and Materials, 22(SUPPL.3), 15.
 - Morphological influence of functionalised nanodiamond surfaces on neuronal cells. European Cells and Materials, 22(SUPPL.3), 44.
 - . Biofabrication, 3(4).
 - . 2011 Conference on Lasers and Electro Optics Europe and 12th European Quantum Electronics Conference CLEO Europe Eqec 2011.
 - . Methods Mol Biol, 695, 309-321.
 - . Aip Conference Proceedings, 1288, 154-161.
 - . PHYS REV B, 82(9).
 - . Phys Chem Chem Phys, 12(30), 8620-8631.
 - . Biomaterials, 31(2), 207-215.
 - . PHYS REV B, 80(17).
 - . PHYS REV B, 79(13).
 - . Langmuir.
 - . SPIE 壅翌腦瞳room.
 - Cell patterning on modified diamond-like carbon (DLC). European Cells and Materials, 18(SUPPL. 2), 89.
 - A theoretical study of ultra-thin films with the wurtzite and zinc blende structures. Materials Research Society Symposium Proceedings, 1035, 122-127.
 - . Biomaterials, 29(17), 2573-2580.
 - . J Am Chem Soc, 130(4), 1367-1375.
 - . APPL PHYS A-MATER, 87(1), 17-22.
 - . Angewandte Chemie, 118(41), 7010-7013.
 - . Angew Chem Int Ed Engl, 45(41), 6856-6859.
 - . Phys Rev Lett, 96(6), 066102.
 - . NANOTECHNOLOGY, 17(3), 805-807.
 - . Chem Commun (Camb)(40), 5068-5070.
 - . J MATER CHEM, 15(1), 139-148.
 - . APPL PHYS A-MATER, 79(4-6), 1237-1241.
 - . Dalton Trans(19), 3085-3092.
 - . ChemInform, 35(16).
 - . Chem Soc Rev, 33(1), 23-31.
 - . ChemInform, 34(52).
 - Erratum: Solid phosphorus carbide (Chemical Communications (2002) (2494)). Chemical Communications(16), 2086.
 - . J APPL PHYS, 94(4), 2203-2211.
 - Solid phosphorus carbide? (pg 2494, 2002). CHEM COMMUN(17), 2086-2086.
 - . Chem Commun (Camb)(19), 2440-2441.
 - . J APPL PHYS, 92(11), 6886-6894.
 - . J APPL PHYS, 91(9), 6162-6172.
 - . CHEM COMMUN(21), 2494-2495.
 - Investigations of the plume accompanying pulsed ultraviolet laser ablation of graphite in vacuum. J APPL PHYS, 89(1), 697-709.
 - . ACS Applied Materials & Interfaces.
 - . Faraday Discussions, 211, 613-642.
 - . Faraday Discussions, 211, 569-591.
 - . Journal of Visualized Experiments(91).
 
Book chapters
- , Optical Techniques in Regenerative Medicine (pp. 78-109). CRC Press
 - , Optical Techniques in Regenerative Medicine (pp. 110-131). CRC Press
 - Two-Photon Polymerization for Tissue-Engineered Scaffold Fabrication, Optical Techniques in Regenerative Medicine (pp. 93-113).
 - Growth of ZnO Nanorods from the Gas Phase In Prescott WV & Schwartz AI (Ed.), Nanorods, nanotubes, and nanomaterials research progress (pp. 239-278). Nova Science Publishers
 
Conference proceedings
- Developing an angiogenic periosteum substitute to improve delayed bone healing. TISSUE ENGINEERING PART A, Vol. 31(11-12) (pp E894-E894)
 - Developing An Angiogenic Periosteum Substitute To Improve Delayed Bone Healing. TISSUE ENGINEERING PART A, Vol. 30(15-16) (pp S495-S495)
 - . Tissue Engineering Part A, Vol. 29(13-14). Manchester, UK, 28 March 2023 - 28 March 2023.
 - OPTIMISING THE FABRICATION, SURFACE TREATMENT AND MECHANICAL STIMULATION TO IMPROVE THE CELL PROLIFERATION AND COLLAGEN PRODUCTION FROM PRIMARY DERMAL FIBROBLASTS IN VITRO. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 1150-1151)
 - Production of porous polycaprolactone polyHIPEs as substrates for in vitro 3D breast cancer cell culture. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - THE ROLE OF MULTIFUNCTIONAL NANOMATERIALS IN NEW TISSUE REGENERATION STRATEGIES. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 828-828)
 - THE BIOACTIVITY OF PLATELET-RICH FIBRIN CONDITIONED MEDIUM ON ZOLEDRONATE-INDUCED ORAL KERATINOCYTE TOXICITY IN VITRO. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 1276-1277)
 - Porous Poly(glycerol sebacate)-methacrylate Scaffolds For Adipose Tissue Engineering. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Porous poly(glycerol sebacate) methacrylate nerve guidance conduits for peripheral nerve regeneration. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Platelet-rich fibrin prevents the toxicity of Pamidronate on oral fibroblasts. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Development of an in vitro musculoskeletal model using poly (glycerol sebacate methacrylate) (PGSM) polyHIPE-based 3D microporous scaffold encompassing regionally controlled mechanical properties. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Development and characterisation of new bioelastomers based on poly(glycerol sebacate)-copolyethylene glycol for biomedical applications. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Bone Clip: Developing an angiogenic biomaterial to increase bone healing. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - CRANIOFACIAL BONE DEFECT REPAIR USING POLYMER SCAFFOLDS AND CELL DERIVED MATRIX. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 1118-1119)
 - A digital reconstruction of the dermal-epidermal junction (DEJ) of the skin in three dimensions. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - Developing Biodegradable Polymer Resins for Additive Manufacturing via a Novel Synthesis Method. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - MCSS SUPPORT A LAMELLA-LIKE TWISTING ORIENTATION OF COLLAGEN WHEN CULTURED ON ALIGNED ELECTROSPUN POLYCAPROLACTONE FIBRES. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 1586-1587)
 - Porous Poly(glycerol sebacate)-methacrylate Scaffolds For Adipose Tissue Engineering. TISSUE ENGINEERING PART A, Vol. 29(13-14)
 - TOPOGRAPHICALLY CONTROLLED NANOFIBROUS MEMBRANES TO MIMIC THE EPIDERMAL STEM CELL MICROENVIROMENT OF THE RETE RIDGES. TISSUE ENGINEERING PART A, Vol. 28 (pp S51-S51)
 - THE INCORPORATION OF A NATIVE-LIKE EXTRACELLULAR MATRIX IN NERVE GUIDE CONDUITS FOR PERIPHERAL NERVE REPAIR. TISSUE ENGINEERING PART A, Vol. 28 (pp S376-S376)
 - CRANIOFACIAL BONE DEFECT REPAIR USING POLYMER SCAFFOLDS AND CELL DERIVED MATRIX. TISSUE ENGINEERING PART A, Vol. 28 (pp S551-S552)
 - BIOMATERIAL SURFACE FUNCTIONALIZATION FOR SUSTAINED DELIVERY OF NGF AND BDNF TO STIMULATE NEURITE GROWTH. TISSUE ENGINEERING PART A, Vol. 28 (pp S51-S51)
 - BIOACTIVE 3D SCAFFOLDS FOR THE DELIVERY OF NEUROTROPHINS TO IMPROVE NEURITE OUTGROWTH AND INDUCE SCHWANN CELL MIGRATION. TISSUE ENGINEERING PART A, Vol. 28 (pp S602-S602)
 - Differences in VEGFA isoform expression regulate modes of migration and their sensitivity to anti-VEGFA therapy. INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, Vol. 100(4) (pp A25-A25)
 - . 2018 11th Biomedical Engineering International Conference (BMEiCON). Chiang Mai, Thailand, 21 November 2018 - 21 November 2018.
 - Assessment of the osteogenic and angiogenetic potential of in vitro generated extracellular matrix decorated multiscale porous polyHIPE scaffolds. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, Vol. 256
 - Investigating the barrier membrane properties of biphasic PCL scaffolds for guided tissue regeneration. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, Vol. 256
 - Hierarchically structured biocompatible materials for tissue engineering. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, Vol. 256
 - Tissue-Engineered Blood Vessels with User-Defined Geometries. TISSUE ENGINEERING PART A, Vol. 23 (pp S140-S140)
 - Measuring continuous concentration of mass pollutants in the aquatic environment. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, Vol. 251
 - . Journal of Physics: Conference Series, Vol. 644 (pp 012022-012022)
 - . Journal of Physics: Conference series, Vol. 644
 - Highly Porous Particles for Cell Recruitment and Delivery in Bone Tissue Engineering. TISSUE ENGINEERING PART A, Vol. 21 (pp S287-S288)
 - Patterning of Neurons on Diamond-like Carbon by Pulsed Laser Ablation. TISSUE ENGINEERING PART A, Vol. 21 (pp S259-S260)
 - Light-based Bioprinting of Native Silk. TISSUE ENGINEERING PART A, Vol. 21 (pp S339-S339)
 - Nerve Tissue Engineering using Blends of Polyhydroxyalkanoates for Peripheral Nerve Regeneration. TISSUE ENGINEERING PART A, Vol. 21 (pp S325-S325)
 - Developing a Degradable Polymer Scaffold for Vascular Graft Tissue Engineering using a Novel Photocurable Poly(glycerol Sebacate). TISSUE ENGINEERING PART A, Vol. 21 (pp S182-S182)
 - 3D Printing and Plasma Coating of Nerve Guide Conduits (NGC). TISSUE ENGINEERING PART A, Vol. 21 (pp S359-S360)
 - PERIPHERAL NERVE REGENERATION USING BLENDS OF POLYHYDROXYALKANOATES. JOURNAL OF THE PERIPHERAL NERVOUS SYSTEM, Vol. 20(2) (pp 185-185)
 - Development of a Three-Dimensional In Vitro Model to Study Neovascularization. TISSUE ENGINEERING PART A, Vol. 21 (pp S325-S326)
 - . The University of Sheffield Engineering Symposium Conference Proceedings Vol. 1, Vol. 1. The Octagon Centre, University of Sheffield
 - Microfabricated niches for the culture of limbal epithelial cells. INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, Vol. 55(13)
 - Microfabrication of artificial stem cell microenvironments for tissue regeneration. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, Vol. 8 (pp 175-176)
 - Nerve guides from photocurable polymers for peripheral nerve repair. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, Vol. 8 (pp 172-172)
 - In vitro biocompatibility of a poly(high internal phase emulsion) biomaterial. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, Vol. 8 (pp 452-453)
 - . Journal of Tissue Engineering and Regenerative Medicine, Vol. 6 (pp 1-429)
 - Direct Laser Writing of Neural Tissue Engineering Scaffolds for Biohybrid Devices.. Living Machines, Vol. 7375 (pp 392-393)
 - Feasibility of 3D printing and stereolithography for fabrication of custom-shaped poly (lactic acid): hydroxyapatite composite biomaterial scaffolds. JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, Vol. 6 (pp 367-367)
 - . 2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE/EQEC) (pp 1-1), 22 May 2011 - 26 May 2011.
 - . THIN SOLID FILMS, Vol. 515(24) (pp 8529-8533)
 - . INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, Vol. 107(12) (pp 2274-2285)
 - . Materials Research Society Symposium Proceedings, Vol. 1035-L09-08(1035E)
 - . JOURNAL OF CRYSTAL GROWTH, Vol. 294(1) (pp 111-117)
 - . DIAMOND AND RELATED MATERIALS, Vol. 13(4-8) (pp 661-665)
 - . INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, Vol. 95(4-5) (pp 546-553)
 - 193-nm laser ablation of CVD diamond and graphite in vacuum: plume analysis and film properties. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, Vol. 69 (pp S935-S939)
 
Datasets
- .
 
Preprints
- , Cold Spring Harbor Laboratory.
 - , Cold Spring Harbor Laboratory.
 
 
- Research group
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Postdoctoral researchers
Dr Adam Glen (Neurimp-FP7)
Dr Jim Dugan (EPSRC)
Dr Richard Plenderleith (TSB)Former group members
Dr Ilida Ortega (Lecturer in School of Clinical Dentistry, Sheffield)
Dr Ivana Barbaric (Lecturer in Biomedical Sciences, Sheffield)
Dr Andrew Gill (KTP Associate, Sheffield) 
- Teaching activities
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I contribute to the following courses:
MAT1411 - Convenor and lecturer
MAT2410 - Convenor and Lecturer
MAT3430 - Convenor and Lecturer
MAT408 - Lecturer
MAT320 - Lecturer
 
- Professional activities and memberships
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Ive had a few opportunities to highlight my work to a broader audience, and my work has been publicised on various different media websites, amongst them:
I have also been interviewed on live radio by BBC Sheffield during the evening drive-time program, and I have been interviewed together with my colleague Prof. J.W. Haycock by the BBC World 壅翌腦瞳 for their 'Horizon' programme.
- Fellow of the Royal Society of Chemistry 
Member of the American Chemical Society 
 - Fellow of the Royal Society of Chemistry 
 
Links