Professor David Lidzey
School of Mathematical and Physical Sciences
Professor of Physics
d.g.lidzey@sheffield.ac.uk
D18, Hicks Building
Full contact details
Professor David Lidzey
School of Mathematical and Physical Sciences
D18
Hicks Building
Hounsfield Road
Sheffield
S3 7RH
School of Mathematical and Physical Sciences
D18
Hicks Building
Hounsfield Road
Sheffield
S3 7RH
- Research interests
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- Development and evaluation of solution processed photovoltaic devices
- Organic and hybrid photonic devices and structures
- Organic and hybrid semiconductor polaritons
- Spectroscopy of functional semiconductor materials
- Conjugated polymers and perovskites
- Structural probes of thin-film materials
- Publications
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Show: Featured publications All publications
Featured publications
Journal articles
- . Advanced Functional Materials.
- . Nat Mater, 13(7), 712-719.
- . Nature Communications, 5(1).
All publications
Journal articles
- . ACS Applied Materials & Interfaces.
- . Nature Communications, 16(1).
- . ACS Applied Materials & Interfaces, 17(23), 34327-34339.
- . ACS Applied Energy Materials, 8(4), 2219-2228.
- . Scientific Reports, 14.
- . Journal of Physics: Energy, 6(4).
- . ACS Applied Energy Materials, 7(19), 8401-8411.
- . Advanced Optical Materials, 12(25).
- . Journal of Materials Chemistry C, 12(34), 13332-13342.
- . Advanced Optical Materials, 12(25).
- . Physical Chemistry Chemical Physics, 26(20), 14745-14753.
- . Small, 20(33).
- . Solar RRL, 8(2).
- . Solar RRL, 8(2).
- . Advanced Materials, 36(20), e2209950.
- . The Journal of Chemical Physics, 159(23).
- . ACS Applied Materials & Interfaces, 15(33), 39625-39635.
- . Nature Communications, 14.
- . Advanced Optical Materials, 11(16).
- . Journal of Materials Chemistry C, 11(24), 8204-8213.
- . Advanced Energy Materials, 13(11).
- . Advanced Energy Materials, 12(48).
- . ACS Photonics, 9(11), 3563-3572.
- . Molecules, 27(20).
- . Solar RRL, 6(8).
- . ACS Applied Materials & Interfaces, 14(33), 37587-37594.
- . Solar RRL, 6(8).
- . Advanced Science, 9(21).
- . Advanced Science, 9(14), 2270087.
- . ENERGY & ENVIRONMENTAL MATERIALS, 5(2), 670-682.
- . Journal of Materials Chemistry C, 10(11), 4187-4195.
- . Advanced Science, 9(14).
- . Science Advances, 8(2).
- . Nature Communications, 12(1).
- . International Journal of Electrochemical Science, 16.
- . Scientific Reports, 11(1).
- . Angewandte Chemie International Edition, 60(30), 16661-16667.
- . ChemSusChem, 14(12), 2481-2481.
- . ChemSusChem.
- . ChemSusChem, 14(12), 2537-2546.
- . Journal of Applied Physics, 129(20).
- . Advanced Energy Materials, 11(23).
- . The Journal of Chemical Physics, 154(12).
- . Chemistry of Materials, 33(2), 554-566.
- . 2D Materials, 8(1).
- . Scientific Reports, 10(1).
- . Communications Physics, 3(1).
- . The Journal of Physical Chemistry Letters, 11(22), 9893-9900.
- . RSC Advances, 10(66), 40341-40350.
- . ACS Applied Materials & Interfaces, 12(43), 48237-48245.
- . Applied Physics Letters, 117(12).
- . ACS Photonics, 7(8), 2273-2281.
- . Journal of Saudi Chemical Society, 24(6), 484-491.
- . ACS Applied Energy Materials, 3(6), 5552-5562.
- . Physica E: Low-dimensional Systems and Nanostructures, 118.
- . Journal of Materials Chemistry A, 8(12), 6067-6075.
- . Journal of Materials Chemistry A, 8(8), 4230-4238.
- . Advanced Quantum Technologies, 3(2).
- . Science China Chemistry, 63(10), 1461-1468.
- . Advanced Energy Materials, 10(4).
- . Chemical Science, 11(2), 343-354.
- . Journal of Materials Chemistry C, 7(27), 8389-8397.
- . Applied Physics Reviews, 6(4).
- . Light: Science & Applications, 8(1).
- . Advanced Quantum Technologies.
- . ACS Energy Letters, 4(10), 2378-2385.
- . Advanced Optical Materials, 7(17).
- . Science China Chemistry, 62(9), 1221-1229.
- . ACS Applied Materials & Interfaces, 11(29), 26194-26203.
- . Nano Energy, 61, 318-326.
- . Energy & Environmental Science, 12(6), 1928-1937.
- . Journal of Materials Chemistry A, 7, 11104-11116.
- . Energy & Environmental Science, 12(4), 1296-1308.
- . Advanced Science, 6(5).
- . Reports on Progress in Physics, 82(3).
- . Joule, 3(3), 819-833.
- . Journal of Materials Chemistry A, 7(5), 2283-2290.
- . AIP Advances, 9(1).
- . Journal of Materials Chemistry A, 6(45), 23010-23018.
- . Scientific Reports, 8(1).
- . ACS Photonics, 5(11), 4343-4351.
- . ACS Applied Materials and Interfaces, 10(46), 39428-39434.
- . Royal Society Open Science, 5(9).
- . Solar RRL, 2(9).
- . Solar RRL, 2(9).
- . Advanced Energy Materials, 8(24).
- . Physical Chemistry Chemical Physics, 20(28), 19023-19029.
- . Nature Communications, 9(1).
- . ACS Applied Energy Materials, 1(7), 3505-3512.
- . Advanced Science, 5(8).
- . Journal of Physical Chemistry Letters, 9(8), 1977-1984.
- Cross-sectioning photovoltaic polymer blends with advanced gas-ion microscopy. Microscopy and Analysis, 34(2), 16-18.
- . Optics Express, 26(3), 3320-3327.
- . Energy & Environmental Science, 11(2), 383-393.
- . Advanced Functional Materials, 28(5).
- . Energy Science and Engineering, 6(1), 35-46.
- . ACS Photonics, 5(1), 258-266.
- . Journal of Electron Spectroscopy and Related Phenomena, 222, 95-105.
- . Small, 13(38).
- . Small, 13(38).
- . Advanced Optical Materials, 5(18).
- . Advanced Optical Materials, 5(18).
- . Nano Letters, 17(9), 5521-5525.
- . Scientific Reports, 7(1).
- . Scientific reports, 7.
- . Journal of Materials Chemistry A, 5(30), 15714-15723.
- . Journal of Materials Chemistry C, 33(2017), 8380-8389.
- . ACS Omega, 2(5), 2126-2133.
- . Scientific Reports, 7.
- . Macromolecules, 50(8), 3301-3312.
- . Scientific Reports, 7.
- . Journal of Materials Chemistry C, 5(9), 2352-2359.
- . Organic Electronics, 41, 245-250.
- . Nature Communications, 8.
- . J Phys Chem Lett, 8, 547-552.
- . Journal of Materials Research, 32(9), 1888-1898.
- . Advanced Materials, 29(1).
- . Advanced Materials, 29(1).
- . Solar Energy Materials and Solar Cells.
- . Advanced Functional Materials.
- . Advanced Functional Materials, 26(45), 8220-8220.
- . Journal of Materials Chemistry C , 4(45), 10722-10730.
- . Advanced Optical Materials, 4(10), 1614-1614.
- . Advanced Optical Materials.
- . European Polymer Journal, 85, 225-235.
- . Vacuum.
- . Ultramicroscopy, 171, 126-138.
- . Advanced Energy Materials, 6(22).
- . Polymers for Advanced Technologies.
- . Advanced Functional Materials, 26(27), 4934-4942.
- . Nanotechnology, 27(22), 225203-225203.
- . CrystEngComm, 18(29), 5448-5455.
- . Materials, 9(4).
- . Journal of Display Technology, 12(6), 583-588.
- . Progress in Photovoltaics: Research and Applications, 24(3), 275-282.
- . Journal of Polymer Science Part B: Polymer Physics, 54(10), 994-1001.
- . Scientific Reports, 6, 21632.
- . Reports on Progress in Physics, 79(2).
- . Journal of Polymer Science Part B: Polymer Physics, 54(2), 216-224.
- . Solar Energy Materials and Solar Cells, 144, 600-607.
- . Applied Physics Letters, 107(23), 231605-231605.
- Thienothiophene units properties on the carbazole-based polymers for organic solar cell devices. Malaysian Journal of Analytical Sciences, 19(6), 1205-1217.
- . APL Materials, 3(12).
- . Organic Electronics, 27, 266-273.
- . RSC Advances, 5(123), 101607-101615.
- . Polymer Testing, 47, 130-136.
- . Solar Energy Materials and Solar Cells, 140, 25-32.
- . Polymer Testing, 45, 124-131.
- . Organic Electronics , 21, 216-222.
- . Journal of Materials Chemistry C, 3(16), 4007-4015.
- . Nature Communications, 6.
- . Polymer Bulletin, 72(7), 1775-1786.
- . Applied Physics Letters, 106(7).
- . RSC Advances, 5(57), 46386-46394.
- . Sci Rep, 4, 5286.
- . Applied Physics Letters, 105(22).
- . Applied Physics A, 117(4), 2079-2086.
- . Energy and Environmental Science, 7(9), 2944-2950.
- . Nat Mater, 13(7), 712-719.
- . Applied Physics Letters, 104(19).
- . Journal of Materials Science, 49(14), 4751-4764.
- . APPLIED PHYSICS LETTERS, 104(6).
- . MRS Proceedings, 1657.
- . Synthetic Metals, 197, 23-33.
- . Food Hydrocolloids, 37, 116-123.
- . Polymer Testing, 34, 183-191.
- . Polymer Testing, 40, 63-69.
- . Organic Electronics, 15(3), 692-700.
- Strongly coupled hybrid frenkel/wannier-mott exciton polaritons in a high Q microcavity. CLEO QELS Fundamental Science CLEO QELS Fs 2013, JTh2A.43.
- . Advanced Functional Materials.
- . Advanced Optical Materials, 1(12), 887-887.
- Strongly coupled hybrid frenkel/wannier-mott exciton polaritons in a high q microcavity. CLEO Science and Innovations CLEO Si 2013, JTh2A.43.
- . Physical Review B Condensed Matter and Materials Physics, 88(12).
- . Journal of Materials Chemistry C, 1(44), 7266-7293.
- . Polymer Testing, 32(7), 1192-1201.
- . Advanced Optical Materials, 1(12), 946-951.
- . Macromolecular Rapid Communications, 34(14), 1157-1162.
- . ADVANCED OPTICAL MATERIALS, 1(7), 503-509.
- . AIP Advances, 3(5).
- . Applied Physics Letters, 102(18).
- . Journal of Materials Chemistry A, 1, 5165-5171.
- . Advanced Energy Materials, 3(4), 410-410.
- . Advanced Energy Materials, 3(7), 903-908.
- . Advanced Energy Materials, 3(4), 505-512.
- . EPJ Web of Conferences, 41.
- . Chem Commun (Camb), 49(22), 2252-2254.
- . Applied Physics A, 113(2), 439-446.
- . Rep Prog Phys, 76(2), 022501.
- . Food Hydrocolloids, 31(1), 94-102.
- . Journal of Applied Polymer Science, 127(3), 1803-1811.
- . 2012 International Conference on Fiber Optics and Photonics Photonics 2012.
- . Biointerphases, 7(1-4), 1-9.
- Highly efficient optical filter based on vertically coupled Photonic crystal cavity and bus waveguide. Optics Letters, 38(2), 156.
- . Eur Phys J E Soft Matter, 35(12), 9807.
- . Biointerphases, 7(1-4), 54.
- . Proceedings of SPIE the International Society for Optical Engineering, 8260.
- . Advanced Functional Materials, 22(7), 1321-1321.
- . Journal of Polymer Research, 19(3).
- . Polymer, 53(4), 976-983.
- . Advanced Functional Materials, 22(7), 1399-1408.
- . SPIE Proceedings, 8264, 82640F-82640F.
- . MACROMOLECULES, 45(3), 1499-1508.
- . Organic Electronics, 13(8), 1401-1408.
- . Journal of Materials Chemistry, 21(48), 19324-19330.
- . Physical Review B Condensed Matter and Materials Physics, 84(20).
- . Applied Physics Letters, 99(14).
- . J Phys Chem B, 115(42), 12028-12035.
- . Advanced Functional Materials, 21(19), 3690-3690.
- . J MATER CHEM, 21(35), 13649-13656.
- . Nano Lett, 11(10), 4275-4281.
- . Advanced Functional Materials, 21(19), 3691-3696.
- A regioregular head to tail thiophene based "double-cable" polymer with pendant anthraquinone functional groups: Preparation, spectroscopy and photovoltaic properties. Solar Energy Materials and Solar Cells.
- . PHYS REV B, 83(24).
- . Nanoscale, 3(6), 2511-2516.
- . Adv. Energy Mater., 1(4), 499-504.
- . Journal of Applied Physics, 109(8), 084509-084516.
- . MACROMOLECULES, 44(8), 2908-2917.
- . ADV FUNCT MATER, 21(8), 1383-1390.
- Ultrafast polariton population build-up mediated by molecular phonons in organic microcavities. APL: Organic Electronics and Photonics, 4(10).
- . Journal of Materials Chemistry, 21(3), 851-862.
- . J Phys Chem A, 114(44), 11920-11927.
- . APPL PHYS LETT, 97(15).
- . J Chem Phys, 133(11), 119901.
- . J MATER CHEM, 20(33), 6990-6997.
- . J Chem Phys, 133(4), 044504.
- . Journal of Applied Physics, 108(1).
- Stability of X-Ray Detectors Based on Organic Photovoltaic Devices. IEEE Journal on Selected Topics in Quantum Electronics.
- . ACS Nano, 4(6), 3039-3044.
- . PHYS REV B, 81(12).
- . Journal of Physics and Chemistry of Solids, 71(3), 340-345.
- The optical properties of hybrid organic-inorganic L3 nanocavities. J OPT SOC AM B, 27(2), 215-221.
- A one-dimensional photonic-crystal nanocavity incorporating a fluorescent molecular dye. APL: Organic Electronics and Photonics, 3(10).
- . SOFT MATTER, 6(17), 4128-4134.
- . Adv Mater, 22(22), 2444-2447.
- . Journal of Applied Polymer Science, 116(3), 1348-1356.
- . The Journal of Physical Chemistry C, 114(1), 572-579.
- . Journal of Applied Polymer Science, 115(4), 2402-2408.
- From zero to 4.5% in six months: Experiences of developing an organic solar cell process. ACS National Meeting Book of Abstracts.
- . MACROMOL RAPID COMM, 30(22), 1889-1892.
- . Proceedings of SPIE the International Society for Optical Engineering, 7416.
- . Langmuir, 25(18), 10746-10753.
- . APPL PHYS LETT, 94(24).
- . Synthetic Metals, 159(11), 1112-1115.
- . THIN SOLID FILMS, 517(9), 2840-2844.
- . J Chem Phys, 130(4), 044903.
- . CHEM PHYS LETT, 468(1-3), 32-36.
- High-speed electroluminescence modulation of a conjugated-polymer light emitting diode. APL: Organic Electronics and Photonics, 2(6).
- . ORG ELECTRON, 10(6), 1170-1173.
- . ADV FUNCT MATER, 19(1), 157-163.
- . APPL PHYS LETT, 93(21).
- . MACROMOL RAPID COMM, 29(22), 1804-1809.
- . Journal of Applied Polymer Science, 110(4), 2393-2398.
- . PHYS REV B, 78(4).
- . NEW J PHYS, 10.
- . PHYS REV B, 77(19).
- . J APPL PHYS, 103(9).
- . Journal of Applied Physics, 103(8).
- . J NANOPHOTONICS, 2.
- . ADV FUNCT MATER, 18(4), 600-606.
- . J PHYS-CONDENS MAT, 20(12).
- . Optical Materials, 31(2), 320-327.
- . European Polymer Journal, 43(12), 4983-4994.
- . Conference on Quantum Electronics and Laser Science QELS Technical Digest Series.
- . Applied Physics Letters, 91(6).
- . MACROMOL RAPID COMM, 28(10), 1155-1160.
- . European Polymer Journal, 43(3), 938-948.
- . Advanced Materials, 19(1).
- Nonlinear dynamics in zinc-porphyrin microcavities. Optics Infobase Conference Papers.
- . ORG ELECTRON, 8(5), 621-624.
- . ORG ELECTRON, 8(2-3), 120-126.
- . Opt Express, 15(22), 14299-14305.
- . ADV MATER, 19(1), 107-+.
- . PHYS REV B, 74(23).
- . CHEM MATER, 18(24), 5789-5797.
- . PHYS REV B, 74(11).
- . ADV MATER, 18(20), 2713-+.
- . Advanced Materials, 18(6).
- . J APPL PHYS, 99(5).
- . ADV MATER, 18(6), 742-+.
- . ORG ELECTRON, 7(4), 222-228.
- . Nano Lett, 5(11), 2232-2237.
- . J PHYS-CONDENS MAT, 17(8), 1319-1328.
- . ORG ELECTRON, 6(5-6), 221-228.
- . ORG ELECTRON, 6(1), 35-45.
- . Nano Lett, 5(1), 67-71.
- . APPL PHYS LETT, 85(24), 5848-5850.
- . Phys Rev Lett, 93(25), 257401.
- Understanding the origin of the 535 nm emission band in oxidized poly(9,9-dioctylfluorene): The essential role of inter-chain/intersegment interactions (vol 14, pg 765, 2004). ADV FUNCT MATER, 14(11), 1037-1037.
- . APPL PHYS LETT, 85(15), 3080-3082.
- . ADV FUNCT MATER, 14(8), 765-781.
- . APPL PHYS LETT, 84(24), 4890-4892.
- . ADV MATER, 16(3), 252-+.
- . APPL PHYS LETT, 83(26), 5377-5379.
- . Thin Films and Nanostructures, 31(C), 355-402.
- . Nat Mater, 2(9), 616-621.
- . Journal of Molecular Structure: THEOCHEM, 629(1-3), 251-261.
- . PHYS REV B, 67(19).
- . J APPL PHYS, 93(9), 5003-5007.
- . J Microsc, 209(Pt 3), 188-193.
- . PHYS REV B, 67(8).
- Microcavity polaritons in materials with weak intermolecular interaction. PHYS STATUS SOLIDI B, 234(1), 130-138.
- . APPL PHYS LETT, 81(19), 3519-3521.
- The effect of morphology on the temperature-dependent photoluminescence quantum efficiency of the conjugated polymer poly(9, 9-dioctylfluorene). J PHYS-CONDENS MAT, 14(42), 9975-9986.
- . APPL PHYS LETT, 80(22), 4088-4090.
- . PHYS REV B, 65(19).
- . Journal of Molecular Structure: THEOCHEM, 582(1-3), 159-169.
- Improving efficiency by balancing carrier transport in poly(9,9-dioctylfluorene) light-emitting diodes using tetraphenylporphyrin as a hole-trapping, emissive dopant. APPL PHYS LETT, 79(23), 3872-3874.
- . Chemical Physics, 272(2-3), 159-169.
- Enhanced performance of pulse driven small area polyfluorene light emitting diodes. APPL PHYS LETT, 79(2), 171-173.
- Opal photonic crystals infiltrated with chalcogenide glasses. APPL PHYS LETT, 78(26), 4094-4096.
- Completely polarized photoluminescence emission from a microcavity containing an aligned conjugated polymer. CHEM PHYS LETT, 341(3-4), 219-224.
- . Journal of Molecular Structure: THEOCHEM, 542(1-3), 263-271.
- Origin of electrophosphorescence from a doped polymer light emitting diode. PHYS REV B, 63(23).
- Raman scattering in strongly coupled organic semiconductor microcavities. PHYS REV B, 63(12).
- Ultrafast Forster transfer dynamics in tetraphenylporphyrin doped poly(9,9-dioctylfluorene). CHEM PHYS LETT, 335(1-2), 27-33.
- Photophysics of a poly(phenylenevinylene) with alternating meta-phenylene and para-phenylene rings. PHYS REV B, 62(23), 15718-15723.
- Strong coupling in an organic metal-clad microcavity. Conference on Quantum Electronics and Laser Science QELS Technical Digest Series, 79-80.
- Spectral properties of resonant-cavity, polyfluorene light-emitting diodes. APPL PHYS LETT, 77(9), 1262-1264.
- . Science, 288(5471), 1620-1623.
- Ultrafast Forster transfer in a highly fluorescent polymer blend. Conference on Lasers and Electro Optics Europe Technical Digest, 272.
- Time resolved photoluminescence of electroluminescent polymer blends and organic microstructures. Conference on Lasers and Electro Optics Europe Technical Digest, 366.
- Efficient energy transfer from blue to red in tetraphenylporphyrin-doped poly(9,9-dioctylfluorene) light-emitting diodes. ADV MATER, 12(1), 58-+.
- Device degradation of polymer light emitting diodes studied by electroabsorption measurements. APPL PHYS LETT, 75(14), 2144-2146.
- An ultrafast spectroscopy study of stimulated emission in poly (9,9-dioctylfluorene) films and microcavities. APPL PHYS LETT, 74(19), 2767-2769.
- Room temperature polariton emission from strongly coupled organic semiconductor microcavities. PHYS REV LETT, 82(16), 3316-3319.
- Strong exciton-photon coupling in an organic semiconductor microcavity. NATURE, 395(6697), 53-55.
- Bulk limited conduction in electroluminescent polymer devices. J APPL PHYS, 84(12), 6737-6746.
- Direct determination of the exciton binding energy of conjugated polymers using a scanning tunneling microscope. PHYS REV LETT, 81(5), 1082-1085.
- Pixelated multicolor microcavity displays. IEEE J SEL TOP QUANT, 4(1), 113-118.
- Space-charge limited conduction with traps in poly(phenylene vinylene) light emitting diodes. J APPL PHYS, 82(12), 6326-6342.
- Electroluminescence from a soluble poly(p-phenylenevinylene) derivative generated using a scanning tunneling microscope. APPL PHYS LETT, 71(14), 2008-2010.
- Efficient multilayer electroluminescence devices with poly(m-phenylenevinylene-co-2,5-dioctyloxy-p-phenylenevinylene) as the emissive layer. J APPL PHYS, 82(5), 2662-2670.
- Mapping the confined optical field in a microcavity via the emission from a conjugated polymer. APPL PHYS LETT, 71(6), 744-746.
- . Microscopy and Microanalysis, 3(S2), 825-826.
- Electroluminescence in polymer films. NATURE, 386(6621), 135-135.
- Control of photoluminescence emission from a conjugated polymer using an optimised microcavity structure. CHEM PHYS LETT, 263(5), 655-660.
- Control of photoluminescence emission from a conjugated polymer using an optimised microcavity structure. IEE Colloquium Digest(267), 8/2.
- Photoprocessed and micropatterned conjugated polymer LEDs. SYNTHETIC MET, 82(2), 141-148.
- Use of poly(phenyl quinoxaline) as an electron transport material in polymer light-emitting diodes. APPL PHYS LETT, 69(7), 881-883.
- ELECTROLUMINESCENCE FROM A CONJUGATED POLYMER MICROCAVITY STRUCTURE. APPL PHYS LETT, 67(10), 1355-1357.
- A critical analysis of the use of radiation inactivation to measure the mass of protein.. Radiat Res, 143(2), 181-186.
- . IEEE Transactions on Magnetics, 31(2), 938-949.
- . Advanced Materials for Optics and Electronics, 4(5), 381-386.
- . Advanced Materials for Optics and Electronics, 4(5), 349-354.
- . Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals, 236(1), 37-40.
- . Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals, 236(1), 59-64.
- . Physical Review Letters, 131(18).
- . Tetrahedron.
- . Journal of Materials Chemistry C, 9(19), 6100-6102.
- . Journal of Materials Chemistry A, 8(21), 10943-10956.
- . Nature Communications, 6(1).
- . Physical Review B, 91(20).
- . Nature Communications, 5(1).
- . J. Mater. Chem. C, 2(41), 8700-8706.
- . RSC Adv., 4(81), 43142-43149.
- . Materials Science Forum, 730-732, 227-231.
- . Materials Science Forum, 714, 63-66.
Book chapters
- , Organic and Hybrid Photonic Crystals (pp. 243-273). Springer International Publishing
- (pp. 821-848). Wiley
- , Organic Solar Cells Fundamentals Devices and Upscaling (pp. 317-366).
- Near-Field Microscopy and Lithography of Light Emitting Polymers, NANO-OPTICS AND NEAR-FIELD OPTICAL MICROSCOPY (pp. 93-107).
- , Thin Films and Nanostructures (pp. 355-402). Elsevier
Conference proceedings
- . Advances in Ultrafast Condensed Phase Physics IV (pp 4-4), 7 April 2024 - 12 April 2024.
- . Advances in Ultrafast Condensed Phase Physics IV (pp 40-40), 7 April 2024 - 12 April 2024.
- . Physical Chemistry of Semiconductor Materials and Interfaces XXII (pp 29-29), 20 August 2023 - 25 August 2023.
- . Photonic Instrumentation Engineering X (pp 18-18), 28 January 2023 - 3 February 2023.
- . The International Conference on Ultrafast Phenomena (UP) 2022 (pp M2A.7-M2A.7), 2022.
- . Nonlinear Optics and Applications XII (pp 14-14), 19 April 2021 - 24 April 2021.
- . Nonlinear Optics and Applications XII (pp 34-34), 19 April 2021 - 24 April 2021.
- . The 22nd International Conference on Ultrafast Phenomena 2020 (pp Tu4A.1-Tu4A.1), 2020.
- . Physical Chemistry of Semiconductor Materials and Interfaces XVII (pp 28-28), 19 August 2018 - 23 August 2018.
- . Organic, Hybrid, and Perovskite Photovoltaics XVIII (pp 44-44), 6 August 2017 - 10 August 2017.
- . Metamaterials, Metadevices, and Metasystems 2017 (pp 21-21), 6 August 2017 - 10 August 2017.
- SECONDARY ELECTRON SPECTROSCOPY AND ENERGY SELECTIVE IMAGING FOR THE ENGINEERING OF CARBON BASED MATERIALS. RECENT TRENDS IN CHARGED PARTICLE OPTICS AND SURFACE PHYSICS INSTRUMENTATION (pp 58-59)
- . SPIE Proceedings, Vol. 9567 (pp 956707-956707)
- . SPIE Proceedings, Vol. 9564 (pp 956402-956402)
- . Journal of Physics: Conference Series, Vol. 644(1)
- . CLEO: 2014 (pp STu3O.4-STu3O.4), 2014.
- . SPIE Proceedings, Vol. 8990 (pp 89900C-89900C)
- Spectroscopy of strongly-coupled organic-semiconductor microcavities. Conference on Lasers and Electro Optics Europe Technical Digest, Vol. 2014-January
- . The 9th International Conference on Group IV Photonics (GFP) (pp 102-104), 29 August 2012 - 31 August 2012.
- Ultrafast dynamics of cavity polaritons in an organic semicondutor microcavity. Optics Infobase Conference Papers
- . Microscopy and Microanalysis, Vol. 17(S2) (pp 1732-1733)
- . Radiotherapy and Oncology, Vol. 99 (pp S212-S213)
- Coherent phonons in cyanine dye monomers and J-aggregates. ULTRAFAST PHENOMENA XVI, Vol. 92 (pp 370-372)
- Temporal dynamics of polaritons in a strongly-coupled organic-semiconductor microcavity. ULTRAFAST PHENOMENA XVI, Vol. 92 (pp 283-285)
- . MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS, Vol. 149(3) (pp 266-269)
- Organic-Based Micropillar Structure Fabrication by Advanced Focused Ion Beam Milling Techniques. MICROSCOPY OF SEMICONDUCTING MATERIALS 2007, Vol. 120 (pp 449-452)
- Improving the light extraction efficiency of polymer LEDs using microcavities and photonic crystals - art. no. 665510. ORGANIC LIGHT EMITTING MATERIALS AND DEVICES XI, Vol. 6655 (pp 65510-65510)
- . SUPERLATTICES AND MICROSTRUCTURES, Vol. 41(5-6) (pp 289-292)
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- Enhanced Raman scattering in a strongly coupled microcavity containing J-aggregates. SYNTHETIC METALS, Vol. 127(1-3) (pp 151-154)
- Balancing electron and hole currents in single layer poly(9,9-dioctylfluorene) light emitting diodes. ORGANIC LIGHT-EMITTING MATERIALS AND DEVICES V, Vol. 4464 (pp 211-222)
- Optical coupling of Frenkel excitons in organic semiconductor microcavities. SYNTHETIC METALS, Vol. 124(1) (pp 37-40)
- High performance blue light-emitting diodes based on conjugated polymer blends. SYNTHETIC METALS, Vol. 121(1-3) (pp 1729-1730)
- A study of the different structural phases of the polymer poly(9,9 '-dioctyl fluorene) using Raman spectroscopy. SYNTHETIC METALS, Vol. 116(1-3) (pp 217-221)
- Electrophosphoresence from a doped polymer light emitting diode. SYNTHETIC METALS, Vol. 116(1-3) (pp 379-383)
- Cavity mode polarisation splitting in organic semiconductor microcavities. SYNTHETIC METALS, Vol. 116(1-3) (pp 497-500)
- High brightness and efficiency green light-emitting diodes based on fluorene-containing conjugated polymers and associated blends. ORGANIC LIGHT-EMITTING MATERIALS AND DEVICES IV, Vol. 4105 (pp 390-404)
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- Red-light-emitting diodes via efficient energy transfer from poly(9,9-dioctylfluorene) to tetraphenylporphyrin. SYNTHETIC METALS, Vol. 111 (pp 203-206)
- Influence of alkoxy substituents on the exciton binding energy of conjugated polymers. SYNTHETIC METALS, Vol. 111 (pp 527-530)
- Influence of film morphology on the vibrational spectra of dioctyl substituted polyfluorene (PFO). SYNTHETIC METALS, Vol. 111 (pp 607-610)
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- Observation of strong exciton-photon coupling in semiconductor microcavities containing organic dyes and J-aggregates. OPTICAL MATERIALS, Vol. 12(2-3) (pp 243-247)
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- THE QUANTUM YIELD OF LUCIFERASE IS DEPENDENT ON ATP AND ENZYME CONCENTRATIONS. MOLECULAR CRYSTALS AND LIQUID CRYSTALS SCIENCE AND TECHNOLOGY SECTION A-MOLECULAR CRYSTALS AND LIQUID CRYSTALS, Vol. 234 (pp 599-604)
- . Proceedings of the International Conference on Hybrid and Organic Photovoltaics, 19 May 2022 - 25 May 2022.
- . Proceedings of the nanoGe International Conference on Perovskite Solar Cells, Photonics and Optoelectronics, 24 February 2019 - 27 February 2019.
- . Conference Digest. 2000 Conference on Lasers and Electro-Optics Europe (Cat. No.00TH8505) (pp 1-1)
Datasets
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Preprints
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- Research group
- Teaching activities
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PHY378/409 Physics in an Enterprise Culture PHY123 The Physics of Sustainable Energy PHY11006 First Year Laboratory
- Professional activities and memberships
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- Chairman of
Department administration
- Research committee
- Year In Industry Tutor
- REF Impact Champion
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