Dr David Alexander Gregory (he/him)
PhD, MSc, BSc, BSc, FHEA
School of Chemical, Materials and Biological Engineering
Lecturer
+44 114 222 7504
Full contact details
School of Chemical, Materials and Biological Engineering
F56
Sir Robert Hadfield Building
Mappin Street
Sheffield
S1 3JD
- Profile
-
David joined the Department of Chemical and Biological Engineering (CBE) in 2023 as a Lecturer. His research is focused on the development of sensing devices for a wide variety of applications including process, medical, and environmental monitoring challenges. An important component of this work is the development of new technologies that enable the fabrication of these devices. Recently, together with collaborators Jonathan Foster (Chemistry) and Patrick Smith (Mechanical Engineering), David has begun developing Reactive Inkjet Printing (RIJ) for multivariate metal organic framework (MOF) gradients, which is hoped can be utilised for advanced sensors.
David has had a fundamental role in the development of RIJ. In the course of this work he designed, built and developed different Reactive Inkjet Printers including both hardware and software, while he has also developed several modifications to existing printing systems to help promote his research. He remains keen to further expand the development of novel printing technologies.
Further to this David is CTO (Chief Technology Officer) in , which promises to become a spin off next year, and is focused on the sustainable production of biocompatible, biodegradable polymers produced via bacterial fermentation. The PHAsT team has recently successfully conducted 100L fermentations with exceptionally high polymer yields at the University of Cambridge facilities, as showcased on their .
David has also gained work experience in the pharmaceutical industry at and in Germany, working in the Departments of Medicinal Chemistry, Enzyme Research, and Drug Formulation Development.
Prior to his present position, he was senior postdoctoral research associate (PDRA) to Prof Roy in the Department of Materials Science and Engineering (MSE) at Sheffield University. This post involved the production of natural polymers via bacterial fermentation for biomedical applications as well as the optimisation and development of novel additive manufacturing processes for material processing and tissue scaffold development. In one of the projects multi-material cardiac patches were successfully developed that are currently being tested in vivo.
Having completed undergraduate degrees in Physics with Astrophysics and Cosmology at and Biochemistry and Music at David went on to study a Masters in Bionanotechnology run jointly between the 爆料TV and . He then joined the Department of Chemical and Biological Engineering for his PhD on catalytic micromotors, under the supervision of Dr Ebbens, which he completed in 2016.
During this time, David was key for the development of RIJ and enzyme powered silk microrockets, which gained considerable media interest and resulted in several high-quality publications and has consequently resulted in him being invited to speak at several national and international conferences.
Thereafter, he worked as a Postdoctoral Research Associate in CBE further developing his work on RIJ of silk materials, which also resulted in the award of two research grants to his PIs, before he moved as senior PDRA to the MSE Department.
- Research interests
-
David is interested in developing novel multidisciplinary projects targeted toward biosensor, bioelectronic, biomedical, regenerative medicine and industrial applications (e.g. process monitoring).
Keywords:
- Sensors / Biosensors
- Raman spectroscopy as a sensing tool
- Additive Manufacturing / 3D Printing
- Reactive Inkjet Printing (RIJ)
- Design and development of complex printing systems
- Biomaterials
- Tissue engineering / 3D scaffolds
- Drug delivery
- Bioelectronics
- Active colloids / micromotors
- Publications
-
Journal articles
- . Materials Today Advances, 29.
- . Journal of Biotechnology.
- . Biomaterials, 328, 123852-123852.
- . Macromolecular Materials and Engineering, 310(9).
- . Journal of Colloid and Interface Science, 700(Part 3).
- . Materials Today Bio, 33, 101932-101932.
- . Macromolecular Materials and Engineering.
- . Polymers, 17(9).
- . Advanced Materials Interfaces, 12(11).
- . Opt Express, 33(4), 8846-8850.
- . Journal of the Mechanical Behavior of Biomedical Materials, 160.
- . International Journal of Biological Macromolecules, 278, 134774-134774.
- . Opt Express, 32(17), 30124-30143.
- . Discov Nano, 18(1), 100.
- . Macromolecular Bioscience, 23(11).
- . Advanced Materials Interfaces, 10(12).
- . ACS Biomaterials Science & Engineering, 9(3), 1472-1485.
- . Advances in Colloid and Interface Science, 314, 102866-102866.
- . Journal of Functional Biomaterials, 14(1).
- . Journal of Astronomical Instrumentation, 11(02).
- . Trends in Molecular Medicine, 28(4), 331-342.
- . JCIS Open, 5.
- . Journal of Colloid and Interface Science, 603, 380-390.
- . CIM Journal, 12(4), 149-168.
- . Materials Advances, 2(21), 7045-7053.
- . Materials Science and Engineering: R: Reports, 145.
- . Frontiers in Bioengineering and Biotechnology, 9.
- . International Journal of Molecular Sciences, 22(3).
- . Progress in Natural Science: Materials International, 30(5), 686-696.
- . Frontiers in Cardiovascular Medicine, 7.
- . Journal of Visualized Experiments(146).
- . Small, 15(1).
- . International Journal of Pharmaceutics, 555, 322-336.
- . Nanomaterials, 8(11).
- . Accounts of Chemical Research, 51(9), 1931-1939.
- . Langmuir, 34(14), 4307-4313.
- . Sci Rep, 8(1), 2635.
- . Journal of Quantitative Spectroscopy and Radiative Transfer, 206, 342-354.
- . Optical Engineering, 57(1), 013104-013104.
- . Microscopy (Oxf), 66(4), 245-253.
- . Rev Sci Instrum, 87(10), 104501.
- . Small, 12(30), 4048-4055.
- . Microscopy (Oxf), 65(4), 325-336.
- . J Biomed Opt, 20(6), 065005.
- . Journal of Physical Chemistry C, 119(27), 15339-15348.
- . EPL (Europhysics Letters), 106(5).
- . Optics & Laser Technology, 51, 47-54.
- . Optical Engineering, 52(7), 074106-074106.
- . Optics & Laser Technology, 44(8), 2361-2365.
- . Optical Engineering, 50(10), 106501-106501-6.
- . Journal of Propulsion and Power, 27(5), 1121-1130.
- . Journal of the Optical Society of America A, 28(9), 1820.
- . Opt Express, 19(10), 9192-9200.
- Two-Phase Flow Metering Using A Large Coriolis Mass Flow Meter Applied To Ship Fuel Bunkering. MEASUREMENT & CONTROL, 41(7), 208-212.
- . Optical Engineering, 47(8), 086401-086401-6.
- . Optical Engineering, 47(4), 044001-044001-8.
- . Optical Engineering, 46(11), 113601-113601-8.
- . Journal of the American Ceramic Society, 90(10), 3318-3319.
- . Optical Engineering, 46(3), 033602-033602.
- Refining. MER-MARINE ENGINEERS REVIEW, 24-+.
- . Journal of The Electrochemical Society, 152(9), J117-J117.
- . Acoustics Research Letters Online, 6(1), 48-52.
- . Journal of Optics A: Pure and Applied Optics, 6(8), 781-786.
- . Journal of Physics D: Applied Physics, 36(17), 2067-2075.
- . Optics & Laser Technology, 34(8), 665-669.
- . AIAA Journal, 40(11), 2305-2311.
- . AIAA Journal, 40(5), 947-952.
- Real-time analog holography and pattern recognition. MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 30(1), 20-24.
- . Optical Engineering, 40(5), 713-713.
- . Microwave and Optical Technology Letters, 25(6), 406-412.
- . Optical Engineering, 39(5), 1218-1218.
- . AIAA Journal, 38(4), 725-727.
- . Optical Engineering, 37(1), 49-49.
- . Optical Engineering, 37(1), 18-18.
- . Applied Optics, 36(23), 5756-5756.
- . Journal of the Optical Society of America B, 14(7), 1625-1625.
- . Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 14(4), 2424-2427.
- . Applied Optics, 35(17), 3117-3117.
- . Applied Optics, 35(17), 3091-3091.
- . Proceedings of the IEEE, 84(5), 733-752.
- . Optical Engineering, 35(4), 951-951.
- . Optics & Laser Technology, 28(2), 89-92.
- . Optical Engineering, 35(2), 429-429.
- . Microwave and Optical Technology Letters, 8(6), 291-293.
- . Optical Engineering, 34(8), 2232-2232.
- . Optics Letters, 20(23), 2405-2405.
- . Optics Letters, 20(1), 10-10.
- . Microwave and Optical Technology Letters, 7(6), 285-289.
- . Optical Engineering, 33(7), 2282-2282.
- . Microwave and Optical Technology Letters, 6(3), 211-214.
- . Microwave and Optical Technology Letters, 6(5), 314-319.
- . Optical Engineering, 32(3), 517-517.
- . Journal of Physics: Condensed Matter, 5(23), 3843-3850.
- . Applied Optics, 32(32), 6521-6521.
- . Applied Optics, 32(26), 5092-5092.
- . Applied Optics, 32(23), 4357-4357.
- COMPACT JOINT TRANSFORM CORRELATOR USING ELECTRON TRAPPING SPATIAL LIGHT-MODULATOR. OPTIK, 93(1), 35-36.
- . Applied Optics, 32(5), 743-743.
- . Optical Engineering, 31(5), 963-963.
- . Optics Communications, 92(4-6), 205-208.
- . Applied Optics, 31(23), 4816-4816.
- . Applied Optics, 31(14), 2416-2416.
- . Optics Communications, 88(2-3), 81-86.
- . Applied Optics, 31(2), 163-163.
- . Microwave and Optical Technology Letters, 4(5), 207-209.
- . Microwave and Optical Technology Letters, 4(3), 106-109.
- . Optical Engineering, 30(2), 178-178.
- . Applied Optics, 30(35), 5182-5182.
- APPLICATION OF MOMENT INVARIANT PATTERN-RECOGNITION TO OPTICAL NEURAL NET. OPTIK, 89(2), 55-58.
- . Optics Letters, 16(20), 1602-1602.
- . Applied Optics, 30(29), 4173-4173.
- . Optics & Laser Technology, 23(5), 297-302.
- . Applied Optics, 30(20), 2867-2867.
- . Applied Optics, 30(14), 1772-1772.
- . Applied Optics, 30(11), 1374-1374.
- . Optics Communications, 81(6), 348-352.
- . Microwave and Optical Technology Letters, 3(1), 24-27.
- . Optical Engineering, 29(9), 1107-1107.
- . Optics & Laser Technology, 22(5), 357-360.
- VIDEO MULTIPLEXING DEMULTIPLEXING SINGLE SPATIAL LIGHT-MODULATOR OPTICAL CORRELATOR. OPTICAL ENGINEERING, 29(9), 1129-1135.
- DATA ASSOCIATION MULTIPLE TARGET TRACKING USING A PHASE-MOSTLY LIQUID-CRYSTAL TELEVISION. OPTICAL ENGINEERING, 29(9), 1114-1121.
- VIDEO RATE OPTICAL CORRELATION USING A MAGNETOOPTIC SPATIAL LIGHT-MODULATOR. OPTICAL ENGINEERING, 29(9), 1122-1128.
- . Applied Physics B Photophysics and Laser Chemistry, 51(2), 153-164.
- . Optics Letters, 15(15), 863-863.
- AUTONOMOUS REAL-TIME OBJECT TRACKING WITH AN ADAPTIVE JOINT TRANSFORM CORRELATOR. OPTICAL ENGINEERING, 29(4), 314-320.
- . Optics Letters, 15(18), 1029-1029.
- . Applied Optics, 29(8), 1064-1064.
- . Applied Optics, 29(8), 1118-1118.
- . IEEE Photonics Technology Letters, 2(2), 143-146.
- . Applied Optics, 29(2), 225-225.
- . Applied Optics, 28(22), 4725-4725.
- . Applied Optics, 28(22), 4853-4853.
- . Optics Letters, 14(17), 922-922.
- . Applied Optics, 28(16), 3288-3288.
- . Applied Optics, 28(15), 2988-2988.
- . Optics Letters, 14(11), 575-575.
- ADAPTIVE JOINT TRANSFORM CORRELATOR FOR REAL-TIME COLOR PATTERN-RECOGNITION. OPTICS AND LASER TECHNOLOGY, 21(3), 189-192.
- . Optical Engineering, 28(5).
- . Applied Optics, 28(3), 411-411.
- . Optical Engineering, 27(4).
- . Optics Letters, 13(1), 10-10.
- . Optics Letters, 12(12), 1050-1050.
- . Applied Optics, 26(16), 3170-3170.
- . Applied Optics, 26(14), 2738-2738.
- . Applied Optics, 26(8), 1370-1370.
- . Applied Optics, 26(2), 184-184.
- . Applied Optics, 26(2), 192-192.
- . Applied Optics, 25(4), 467-467.
- . Applied Optics, 25(3), 331-331.
- . Applied Optics, 24(6), 859-859.
- . Applied Optics, 23(24), 4560-4560.
- . Optica Acta: International Journal of Optics, 27(4), 481-510.
- . Applied Optics, 18(18), 3161-3161.
- . NDT International, 12(2), 61-70.
- . Applied Optics, 16(11), 2837-2837.
- . Optics & Laser Technology, 9(1), 6-12.
- . Optics Communications, 20(1), 1-5.
- ANALYSIS OF TOPOLOGICAL INFORMATION FROM DEFOCUSED SPECKLE PHOTOGRAPHS. OPTICS AND LASER TECHNOLOGY, 9(1), 17-30.
- . Optics & Laser Technology, 8(5), 201-213.
- . Applied Optics, 15(9), 2075-2075.
- . Applied Optics, 15(8), 1953-1953.
- . Applied Physics Letters, 28(10), 610-611.
- . Journal of Physics B: Atomic and Molecular Physics, 8(13), L310-L313.
- . Macromolecular Materials and Engineering.
- . RSC Applied Interfaces, 2(4), 1059-1068.
- . Journal of Visualized Experiments(146).
- . NIP & Digital Fabrication Conference, 32(1), 452-456.
- . Physical Review B, 49(8), 5657-5661.
- . Physical Review A, 7(4), 1251-1256.
Book chapters
- , The Handbook of Polyhydroxyalkanoates (pp. 255-284). CRC Press
- , Soft, Hard, and Hybrid Janus Structures (pp. 315-403). WORLD SCIENTIFIC (EUROPE)
- , Smart Materials Series (pp. 169-201). Royal Society of Chemistry
Conference proceedings
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 12880 (pp 1288003-1288003-8)
- . 2023 IEEE Photonics Conference (IPC), Vol. 00 (pp 1-2)
- . 2023 IEEE Photonics Conference (IPC), Vol. 00 (pp 1-2)
- BIOINSPIRED NERVE GUIDANCE CONDUITS FOR OPTIMAL NERVE REGENERATION USING POLYHYDROXYALKANOATES. TISSUE ENGINEERING PART A, Vol. 29(11-12) (pp 1404-1404)
- Tissue repair with multimaterial biomedical devices fabricated from sustainable biopolymers. TISSUE ENGINEERING PART A, Vol. 29(13-14)
- Drop-on-demand micropatterning of novel amphiphilic peptide I3K on regenerated silk fibroin substrates to guide and promote adhesion and proliferation of neuronal cells. TISSUE ENGINEERING PART A, Vol. 29(13-14)
- Tissue repair with multimaterial biomedical devices fabricated from sustainable biopolymers. TISSUE ENGINEERING PART A, Vol. 29(13-14)
- Drop-on-demand micropatterning of novel amphiphilic peptide I3K on regenerated silk fibroin substrates to guide and promote adhesion and proliferation of neuronal cells. TISSUE ENGINEERING PART A, Vol. 29(13-14)
- TISSUE ENGINEERED CARDIAC PATCHES FOR THE TREATMENT OF POST-MI HEART FAILURE USING NATURAL POLYMERS AND HUMAN IPSC-DERIVED CELLS. TISSUE ENGINEERING PART A, Vol. 28 (pp S260-S261)
- A NEXT GENERATION BIO-INSPIRED DEVICE FOR EFFECTIVE PERIPHERAL NERVE REGENERATION. TISSUE ENGINEERING PART A, Vol. 28 (pp S293-S294)
- 3D PRINTING OF POLYHYDROXYALKANOATES FOR CELL CULTURE AND TISSUE REPAIR APPLICATIONS. TISSUE ENGINEERING PART A, Vol. 28 (pp S94-S94)
- AMINE MODIFIED POLYCAPROLACTONE SCAFFOLDS FOR PERIPHERAL NERVE REPAIR. TISSUE ENGINEERING PART A, Vol. 28 (pp S337-S337)
- POLYHYDROXYALKANOATES, NATURAL MATERIALS OF BACTERIAL ORIGIN, IDEAL FOR CARDIAC TISSUE ENGINEERING. TISSUE ENGINEERING PART A, Vol. 28 (pp S36-S37)
- . Optics for EUV, X-Ray, and Gamma-Ray Astronomy VIII, Vol. 10399 (pp 103991s)
- Altering the bubble release of reactive inkjet printed silk micro-rockets. NIP & Digital Fabrication Conference, Vol. 2016 (pp 452-456). Manchester, 12 September 2016 - 12 September 2016.
- Regenerated silk fibroin as an inkjet printable biomaterial. International Conference on Digital Printing Technologies, Vol. 2016 (pp 406-409). Manchester, 12 September 2016 - 12 September 2016.
- High Energy Replicated Optics to Explore the Sun: Hard X-Ray Balloon-Borne Telescope. 2013 IEEE AEROSPACE CONFERENCE
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 8364 (pp 83640d-83640d-12)
- Miniature Variable Pressure Scanning Electron Microscope for In-Situ Imaging & Chemical Analysis. 2012 IEEE AEROSPACE CONFERENCE
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 8160 (pp 816013-816013-9)
- Terahertz Digital Off-Axis Holography for Non-Destructive Testing. 2011 36TH INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER, AND TERAHERTZ WAVES (IRMMW-THZ)
- Simulation and Characterization of a Miniaturized Scanning Electron Microscope. 2011 IEEE AEROSPACE CONFERENCE
- . AIP Conference Proceedings, Vol. 1230(1) (pp 395-407)
- . AIP Conference Proceedings, Vol. 1230(1) (pp 193-203)
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 7062 (pp 70621b-70621b-8)
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 7005 (pp 70052q-70052q-10)
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 7005 (pp 70051z-70051z-11)
- . Proceedings of SPIE--the International Society for Optical Engineering, Vol. 6958 (pp 69580n-69580n-12)
- . SPIE Proceedings, Vol. 6566 (pp 65660Z-65660Z)
- . SPIE Proceedings, Vol. 6220 (pp 62200M-62200M)
- . SPIE Proceedings, Vol. 6222 (pp 62220T-62220T)
- . SPIE Proceedings, Vol. 6222 (pp 622208-622208)
- . SPIE Proceedings, Vol. 6222 (pp 62220E-62220E)
- . SPIE Proceedings, Vol. 6245 (pp 62450H-62450H)
- . SPIE Proceedings, Vol. 5735 (pp 40-40)
- On quantum authentication protocols. GLOBECOM '05: IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, VOLS 1-6 (pp 1650-1654)
- Specific impulse definition for ablative laser propulsion. Beamed Energy Propulsion, Vol. 766 (pp 595-604)
- . SPIE Proceedings, Vol. 5437 (pp 223-223)
- Ablative laser propulsion: A study of specific impulse, thrust and efficiency. BEAMED ENERGY PROPULSION, Vol. 664 (pp 194-205)
- . SPIE Proceedings, Vol. 4446 (pp 129-129)
- Laser ablation for space propulsion: The concept and its dynamic characteristics. CLEO(R)/PACIFIC RIM 2001, VOL I, TECHNICAL DIGEST (pp 314-315)
- . SPIE Proceedings, Vol. 4038 (pp 564-564)
- . SPIE Proceedings, Vol. 4043 (pp 175-181)
- . SPIE Proceedings, Vol. 3715 (pp 259-271)
- . SPIE Proceedings, Vol. 3715 (pp 216-227)
- . SPIE Proceedings, Vol. 3715 (pp 160-165)
- Complex spatial light modulators in optical correlators. OPTICAL PATTERN RECOGNITION X, Vol. 3715 (pp 139-149)
- . SPIE Proceedings, Vol. 3386 (pp 231-239)
- . SPIE Proceedings, Vol. 2986 (pp 153-153)
- . SPIE Proceedings, Vol. 3073 (pp 76-86)
- . SPIE Proceedings, Vol. 3073 (pp 404-415)
- . SPIE Proceedings, Vol. 2762 (pp 602-611)
- . SPIE Proceedings, Vol. 2752 (pp 69-77)
- . SPIE Proceedings, Vol. 2752 (pp 292-298)
- . SPIE Proceedings, Vol. 2752 (pp 242-253)
- Diffractive method for measurement of coupled amplitude and phase modulation in spatial light modulators.. OPTICAL PATTERN RECOGNITION VII, Vol. 2752 (pp 153-161)
- . SPIE Proceedings, Vol. 2529 (pp 232-237)
- . SPIE Proceedings, Vol. 2488 (pp 408-416)
- . SPIE Proceedings, Vol. 2488 (pp 344-349)
- . SPIE Proceedings, Vol. 2491 (pp 1035-1045)
- CLUTTER REDUCTION AND TARGET DETECTION ENHANCEMENT USING WAVELET TRANSFORM TECHNIQUES. OPTICAL PATTERN RECOGNITION VI, Vol. 2490 (pp 125-139)
- NEAR INFRARED EXCITONIC ABSORPTION AS A PHASE MODULATOR MECHANISM. OPTICAL PATTERN RECOGNITION VI, Vol. 2490 (pp 421-431)
- PHASE ENCODED VS INTENSITY ENCODED INPUTS TO OPTICAL CORRELATORS. OPTICAL PATTERN RECOGNITION VI, Vol. 2490 (pp 222-228)
- PHASE MODULATION CHARACTERISTICS OF REWRITEABLE MAGNETO-OPTIC COMPACT DISKS. OPTICAL PATTERN RECOGNITION VI, Vol. 2490 (pp 388-399)
- . SPIE Proceedings, Vol. 2238 (pp 75-89)
- . SPIE Proceedings, Vol. 2242 (pp 346-346)
- . SPIE Proceedings, Vol. 2237 (pp 212-222)
- . SPIE Proceedings, Vol. 2237 (pp 85-90)
- . SPIE Proceedings, Vol. 2237 (pp 40-46)
- NONLINEAR OPTICAL PROPERTIES AND HOLOGRAPHIC RECORDING PERFORMANCE OF METHYL ORANGE DOPED POLYMER FILMS. 1994 IEEE NONLINEAR OPTICS: MATERIALS, FUNDAMENTALS, AND APPLICATIONS (pp 99-101)
- THE EFFECT OF 3-DIMENSIONAL STRESSES ON THE FAILURE SINGLE LAP JOINTS. VIDE-SCIENCE TECHNIQUE ET APPLICATIONS(272) (pp 228-231)
- . SPIE Proceedings, Vol. 1959 (pp 235-247)
- . SPIE Proceedings, Vol. 1959 (pp 391-402)
- . SPIE Proceedings, Vol. 1806 (pp 262-270)
- . SPIE Proceedings, Vol. 1772 (pp 88-93)
- INVESTIGATION OF PHASE-ENCODED INPUTS TO VANDERLUGT CORRELATORS. OPTICAL PATTERN RECOGNITION III, Vol. 1701 (pp 140-148)
- JOINT TRANSFORM CORRELATOR EMPLOYING ELECTRON TRAPPING MATERIALS. OPTICAL PATTERN RECOGNITION III, Vol. 1701 (pp 99-104)
- TEST TARGET FOR OPTICAL CORRELATORS. OPTICAL PATTERN RECOGNITION III, Vol. 1701 (pp 2-10)
- . SPIE Proceedings, Vol. 1558 (pp 450-458)
- . SPIE Proceedings, Vol. 1558 (pp 432-441)
- . SPIE Proceedings, Vol. 1564 (pp 54-54)
- . SPIE Proceedings, Vol. 1474 (pp 101-101)
- . SPIE Proceedings, Vol. 1474 (pp 90-90)
- . SPIE Proceedings, Vol. 1482 (pp 69-78)
- . SPIE Proceedings, Vol. 1470 (pp 220-225)
- . SPIE Proceedings, Vol. 1347 (pp 247-247)
- . SPIE Proceedings, Vol. 1347 (pp 441-441)
- . SPIE Proceedings, Vol. 1347 (pp 594-594)
- . SPIE Proceedings, Vol. 1347 (pp 411-411)
- . SPIE Proceedings, Vol. 1347 (pp 338-338)
- . SPIE Proceedings, Vol. 1296 (pp 378-378)
- . SPIE Proceedings, Vol. 1296 (pp 2-2)
- . SPIE Proceedings, Vol. 1297 (pp 176-185)
- . SPIE Proceedings, Vol. 1295 (pp 128-137)
- . SPIE Proceedings, Vol. 1295 (pp 120-127)
- . SPIE Proceedings, Vol. 1319 (pp 189-189)
- . SPIE Proceedings, Vol. 1319 (pp 200-200)
- . SPIE Proceedings, Vol. 1215 (pp 400-407)
- OPTICAL IMPLEMENTATION OF THE KITTLER-YOUNG TRANSFORM FOR IMAGE CLASSIFICATION. OPTICAL INFORMATION PROCESSING SYSTEMS AND ARCHITECTURES, Vol. 1151 (pp 347-359)
- RESTORATION OF LINEAR-MOTION-BLURRED IMAGES USING A JOINT TRANSFORM PROCESSOR. OPTICAL INFORMATION PROCESSING SYSTEMS AND ARCHITECTURES, Vol. 1151 (pp 360-371)
- OPTIMUM CHARACTER ENCRYPTION AND EXTRACTION FOR OPTICAL CORRELATION TECHNIQUES. OPTICAL INFORMATION PROCESSING SYSTEMS AND ARCHITECTURES, Vol. 1151 (pp 299-306)
- OPTICAL CORRELATOR GUIDANCE AND TRACKING FIELD-TESTS. 1989 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN, AND CYBERNETICS, VOLS 1-3 (pp 645-650)
- FIELD TESTING OF AN OPTICAL CORRELATOR BASED TRACKING AND POINTING SYSTEM. ACQUISITION, TRACKING, AND POINTING III, Vol. 1111 (pp 14-20)
- OPTICAL PROCESSOR FOR ADAPTIVE NEURAL NETWORKS. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, Vol. 3(13) (pp P32-P32)
- MATCHED SPATIAL-FILTERING USING A NEW PHOTOPOLYMER. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, Vol. 3(13) (pp P7-P8)
- LARGE-MEMORY OPTICAL CORRELATOR. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, Vol. 1(12) (pp 1303-1303)
- INFRARED-ABSORPTION IN UNINTENTIONALLY-DOPED ALKALI-HALIDES AND ALKALINE-EARTH FLUORIDES. BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, Vol. 21(3) (pp 251-251)
Other
- . Small, 12(30), 4022-4022.
Preprints
- , MDPI AG.
- , arXiv.
- Grants
-
DATE SPONSOR PI/CI/
Named PDRA
TITLE FUNDING March 2023 IAA (UKRI) CoI Production of Polyhydroxyalkanoates for Biomedical applications: Biocompatible, resorbable and sustainable Biomaterials (PoC: Downstream Optimisation and Upstream Scale-up)拢48办 March 2023 EPSRC R-CoI Mussel Inspired Chemistry and Bacteria-synthesized Polymers for a Smart Adhesive Drug Eluting Oral Mucosal Patch (EP/X026108/1)拢550办 March 2023 2x SURF (Sheffield Undergraduate Research Fellowship)PI Reactive Inkjet Printed Silk Stirrers for Rapid Medical Diagnosis 2x 拢1,850 Feb 2023 Royce (Summer project grant) PI Feasibility of using Fluorescence assays and Raman Spectroscopy for the design of an online monitoring device to measure the concentration of Polyhydroxyalkanoates during bacterial fermentation. 拢3,200 Jan 2023 Diamond Light Source (Oxford) CoI X-ray tomography for 3D bioprinting (MG33034)Coherence (6 shifts) Diamond Light Source Sep 2022 Diamond Light Source (Oxford) CoI Ptycho-tomography for composite 3D printing for Tissue Engineering (MG31646) Coherence (12 shifts) Diamond Light Source July 2022 BBSRC CoI BBSRC Lean Launch Programme (拢2500 plus 拢1200 for profession consultancy) 拢3,700 April 2019 SURE (Sheffield Undergraduate Research Experience) PI Investigating the collective motion of catalytically active micromotors in 3D printed flow cell designs. 拢2,750 Nov 2019 3DBioNET Named PDRA A natural and sustainable biomaterial based 3D model of healthy cardiac tissue. 拢45,740 May 2019 SURF (Sheffield Undergraduate Research Fellowship) PI Silk/PEG biogels for reactive inkjet printing and 3D tissue engineering 鈥 for the production of flexible self-motile rockets 拢1,850 May 2019 SURF (Sheffield Undergraduate Research Fellowship) PI Silk/PEG biogels for reactive inkjet printing and 3D tissue engineering 鈥 for the production of 3D cell culture scaffolds. 拢1,850 3D BIONET grant: working on the development of Polyhydroxyalkanoates-based 3D Printed tissue repair patches for cardiac tissue applications.
- Teaching activities
-
- Module Leader - CPE260 鈥 Experimental Design
- BIE103 - Introduction to Bioengineering
Previous teaching:
- Particle Design and Processing, CPE441
- Structural and Physical Properties of Dental and Bio-materials, MAT6304
- Professional activities and memberships
-
Conference Organisation:
- Organiser and Initiator of BioSheffield 2022 Conference
Industrial sponsors:
- Applikon (Gentinge)
- Keyence
- Geneflow
- Cellink (Bico)
- SLS
- Merk
- Co-Organiser of BioMAT Sheffield 2023 Microsymposium
Industrial sponsors:
- Applikon (Gentinge)
- Merk
Journal Guest Editor:
鈥溾, Journal of Functional Biomaterials, IF 4.8.
鈥溾, Polymers, IF 5.0.
Links