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Name: |
Professor PJ Skabara |
Organisation: |
University of Glasgow |
Department: |
School of Chemistry |
Current EPSRC-Supported Research
Topics: |
Analytical Science
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Chemical Synthetic Methodology
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Design of Process systems
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Manufacturing Machine & Plant
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Materials Characterisation
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Materials Processing
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Materials Synthesis & Growth
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Optical Devices & Subsystems
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Current EPSRC Support |
EP/T022477/1 | rISC - the game of strategic molecular design for high efficiency OLEDs | (P) |
EP/T013710/1 | Ultra-fast, ultra-small and ultra-dilute: an integrated understanding of conjugated polymers in solution across temporal and spatial scales | (P) |
EP/R03480X/1 | 'Hetero-print': A holistic approach to transfer-printing for heterogeneous integration in manufacturing | (P) |
EP/P02744X/2 | Light-controlled manufacturing of semiconductor structures: a platform for next generation processing of photonic devices | (P) |
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Previous EPSRC Support |
EP/T024968/1 | EPSRC Core Capital Award | (C) |
EP/N009908/2 | Single-molecule studies of light-emitting polymers: observing and manipulating polymer conformation in solution | (P) |
EP/N035496/2 | Molecular assembly of spintronic circuits with DNA | (P) |
EP/P02744X/1 | Light-controlled manufacturing of semiconductor structures: a platform for next generation processing of photonic devices | (P) |
EP/N035496/1 | Molecular assembly of spintronic circuits with DNA | (P) |
EP/N009908/1 | Single-molecule studies of light-emitting polymers: observing and manipulating polymer conformation in solution | (P) |
EP/L012200/1 | Self-assembled organic photovoltaic materials | (P) |
EP/J007005/1 | Electrical Screening of Novel Organic Semiconductors for Photovoltaic Devices | (P) |
EP/I029141/1 | Gallium nitride enabled hybrid and flexible photonics | (C) |
EP/I012591/1 | Lighting the Future | (C) |
EP/H004157/1 | Ultra energy efficient III-nitride/polymer hybrid white LEDs using nanotechnology | (C) |
EP/F05999X/1 | Hybrid organic semiconductor/gallium nitride/CMOS smart pixel arrays | (C) |
EP/E041337/1 | Synthesis beyond the redox-active tetrathiafulvalene (TTF) molecule: From a topological control in TTF-based macrocycles, towards functional s | (P) |
EP/E027431/1 | Self-assembling conjugated macromolecules for organic field effect transistors and solar cells | (P) |
GR/T28379/02 | Highly Electroactive and Structurally Well-Defined Organic Semiconductors For Electronic Devices | (P) |
GR/T28379/01 | Highly Electroactive and Structurally Well-Defined Organic Semiconductors For Electronic Devices | (P) |
GR/R23053/01 | The Incorporation of Highly Electroactive Sub-Units Into Conjugated Polymers | (P) |
GR/M36342/02 | DERIVATIVES OF TETRATHIAFULVALENE IN SUPRAMOLECULAR CHEMISTRY | (P) |
GR/M64130/01 | NOVEL CHEMICAL PROCEDURES FOR SAND CONSOLIDATION WITH RETAINED PERMEABILITY | (C) |
GR/M36342/01 | DERIVATIVES OF TETRATHIAFULVALENE IN SUPRAMOLECULAR CHEMISTRY | (P) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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