Professor
David
Lidzey
School of Mathematical and Physical Sciences
Professor of Physics
d.g.lidzey@sheffield.ac.uk
Hicks Building
Full contact details
Professor David Lidzey
Hicks Building
School of Mathematical and Physical Sciences
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
- . Solar Energy Materials and Solar Cells, 307, 114604-114604.
- . 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.
- . Advanced Science.
- . Energies, 19(4), 1077.
- . Journal of Materials Chemistry C.
- . 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.
- Evidence of an Additional Geometry Change in Dmac in Novel Synthesised Solution Processable Dmac-Trz Based Tadf Molecules.
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)
- Third Harmonic Generation measurements on organic semiconductor films. Physics of Semiconductors, Pts A and B, Vol. 893 (pp 369-370)
- . Physica Status Solidi C - Conferences and Critical Reviews, Vol. 2 , No 11, Vol. 2(11) (pp 3899-3902)
- An organic two dimensional photonic crystal microcavity processed by focused ion beam milling. Microscopy of Semiconducting Materials, Vol. 107 (pp 427-431)
- . JOURNAL OF LUMINESCENCE, Vol. 110(4) (pp 354-358)
- . JOURNAL OF LUMINESCENCE, Vol. 110(4) (pp 347-353)
- . SYNTHETIC METALS, Vol. 137(1-3) (pp 1471-1472)
- Cavity polaritons in organic materials. ORGANIC NANOPHOTONICS, Vol. 100 (pp 291-315)
- 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)
- . Synthetic Metals, Vol. 111 (pp 377-379)
- 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)
- High brightness conjugated polymer LEDs. SYNTHETIC METALS, Vol. 111 (pp 151-153)
- Bright and efficient blue and green light-emitting diodes based on conjugated polymer blends. SYNTHETIC METALS, Vol. 111 (pp 159-163)
- Strong coupling in organic semiconductor microcavities based on J-aggregates. MULTIPHOTON AND LIGHT DRIVEN MULTIELECTRON PROCESSES IN ORGANICS: NEW PHENOMENA, MATERIALS AND APPLICATIONS, Vol. 79 (pp 357-370)
- Exciton polaritons in single and coupled microcavities. JOURNAL OF LUMINESCENCE, Vol. 87-9 (pp 25-29)
- Bright and efficient blue light-emitting diodes based on conjugated polymer blends. ORGANIC LIGHT-EMITTING MATERIALS AND DEVICES III, Vol. 3797 (pp 383-397)
- Observation of strong exciton-photon coupling in semiconductor microcavities containing organic dyes and J-aggregates. OPTICAL MATERIALS, Vol. 12(2-3) (pp 243-247)
- Conduction and trapping in electroluminescent polymer devices. ORGANIC LIGHT-EMITTING MATERIALS AND DEVICES II, Vol. 3476 (pp 98-110)
- Application of fluorescence scanning near-field optical microscopy to the study of phase-separated conjugated polymers. ULTRAMICROSCOPY, Vol. 71(1-4) (pp 275-279)
- Charge trapping in polymer diodes. OPTICAL MATERIALS, Vol. 9(1-4) (pp 114-119)
- Efficient LEDs with a conjugated co-polymer as the emissive layer. OPTICAL MATERIALS, Vol. 9(1-4) (pp 173-177)
- Charge trapping in polymer electroluminescent devices. ORGANIC LIGHT-EMITTING MATERIALS AND DEVICES, Vol. 3148 (pp 104-116)
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- Recent progress in polymers for electroluminescence: Microcavity devices and electron transport polymers. THIN SOLID FILMS, Vol. 273(1-2) (pp 39-47)
- Organic light-emitting diodes (LEDs) based on Langmuir-Blodgett films containing rare-earth complexes. SYNTHETIC METALS, Vol. 76(1-3) (pp 91-93)
- Characterization of the emission from a conjugated polymer microcavity. SYNTHETIC METALS, Vol. 76(1-3) (pp 129-132)
- Conjugated polymers for electroluminescence: Principles and prospects. PHOTOACTIVE ORGANIC MATERIALS, Vol. 9 (pp 293-312)
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- OPTICAL SWITCHING AND AMPLIFICATION BASED ON THE ENZYME LUCIFERASE. MOLECULAR CRYSTALS AND LIQUID CRYSTALS SCIENCE AND TECHNOLOGY SECTION A-MOLECULAR CRYSTALS AND LIQUID CRYSTALS, Vol. 234 (pp 577-580)
- 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, 18 May 2026 - 20 May 2026.
- . Proceedings of the MATSUS Spring 2026 Conference, 23 March 2026 - 27 March 2026.
- . Proceedings of the Emerging Light Emitting Materials 2025, 8 October 2025 - 10 October 2025.
- . 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
- , American Chemical Society (ACS).
- , Springer Science and Business Media LLC.
- , arXiv.
- , Springer Science and Business Media LLC.
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- , Springer Science and Business Media LLC.
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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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