Skip to menu Skip to content Skip to footer

2015

Journal Article

Photocarrier drift distance in organic solar cells and photodetectors

Stolterfoht, Martin, Armin, Ardalan, Philippa, Bronson, White, Ronald D., Burn, Paul L., Meredith, Paul, Juška, Gytis and Pivrikas, Almantas (2015). Photocarrier drift distance in organic solar cells and photodetectors. Scientific Reports, 5 (1) 9949, 9949.1-9949.7. doi: 10.1038/srep09949

Photocarrier drift distance in organic solar cells and photodetectors

2015

Journal Article

Low noise, IR-blind organohalide perovskite photodiodes for visible light detection and imaging

Lin, Qianqian, Armin, Ardalan, Lyons, Dani M., Burn, Paul L. and Meredith, Paul (2015). Low noise, IR-blind organohalide perovskite photodiodes for visible light detection and imaging. Advanced Materials, 27 (12), 2060-2064. doi: 10.1002/adma.201405171

Low noise, IR-blind organohalide perovskite photodiodes for visible light detection and imaging

2015

Journal Article

Planar silver nanowire, carbon nanotube and PEDOT:PSS nanocomposite transparent electrodes

Stapleton, Andrew J, Yambem, Soniya D, Johns, Ashley H, Afre, Rakesh A, Ellis, Amanda V, Shapter, Joe G, Andersson, Gunther G, Quinton, Jamie S, Burn, Paul L, Meredith, Paul and Lewis, David A (2015). Planar silver nanowire, carbon nanotube and PEDOT:PSS nanocomposite transparent electrodes. Science and Technology of Advanced Materials, 16 (2) 025002, 025002. doi: 10.1088/1468-6996/16/2/025002

Planar silver nanowire, carbon nanotube and PEDOT:PSS nanocomposite transparent electrodes

2015

Journal Article

Narrowband light detection via internal quantum efficiency manipulation of organic photodiodes

Armin, Ardalan, Jansen-van Vuuren, Ross D., Kopidakis, Nikos, Burn, Paul L. and Meredith, Paul (2015). Narrowband light detection via internal quantum efficiency manipulation of organic photodiodes. Nature Communications, 6 (6343) 6343, 1-8. doi: 10.1038/ncomms7343

Narrowband light detection via internal quantum efficiency manipulation of organic photodiodes

2015

Journal Article

Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities

Armin, Ardalan, Hambsch, Mike, Wolfer, Pascal, Jin, Hui, Li, Jun, Shi, Zugui, Burn, Paul L. and Meredith, Paul (2015). Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities. Advanced Energy Materials, 5 (3) 1401221, 1-7. doi: 10.1002/aenm.201401221

Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities

2015

Journal Article

Efficient and bright polymer light emitting field effect transistors

Ullah, Mujeeb, Tandy, Kristen, Yambem, Soniya D., Muhieddine, Khalid, Ong, Wen Jie, Shi, Zugui, Burn, Paul L., Meredith, Paul, Li, Jun and Namdas, Ebinazar B. (2015). Efficient and bright polymer light emitting field effect transistors. Organic Electronics: physics, materials, applications, 17, 371-376. doi: 10.1016/j.orgel.2014.12.014

Efficient and bright polymer light emitting field effect transistors

2015

Journal Article

Optimized multilayer indium-free electrodes for organic photovoltaics

Gentle, Angus R., Yambem, Soniya D., Smith, Geoff B., Burn, Paul L. and Meredith, Paul (2015). Optimized multilayer indium-free electrodes for organic photovoltaics. Physica Status Solidi A: Applications and Materials Science, 212 (2), 348-355. doi: 10.1002/pssa.201431469

Optimized multilayer indium-free electrodes for organic photovoltaics

2015

Journal Article

High-performance, solution-processed non-polymeric organic photodiodes

Kim, Il Ku, Pal, Bhola N., Ullah, Mujeeb, Burn, Paul L., Lo, Shih-Chun, Meredith, Paul and Namdas, Ebinazar B. (2015). High-performance, solution-processed non-polymeric organic photodiodes. Advanced Optical Materials, 3 (1), 50-56. doi: 10.1002/adom.201400385

High-performance, solution-processed non-polymeric organic photodiodes

2015

Journal Article

Defining the light emitting area for displays in the unipolar regime of highly efficient light emitting transistors

Ullah, Mujeeb, Armin, Ardalan, Tandy, Kristen, Yambem, Soniya D., Burn, Paul L., Meredith, Paul and Namdas, Ebinazar B. (2015). Defining the light emitting area for displays in the unipolar regime of highly efficient light emitting transistors. Scientific Reports, 5 (Art No.: 8818) 8818, 8818. doi: 10.1038/srep08818

Defining the light emitting area for displays in the unipolar regime of highly efficient light emitting transistors

2015

Journal Article

Time-independent charge carrier mobility in a model polymer:fullerene organic solar cell

Philippa, Bronson, Vijila, Chellappan, White, Ronald D., Sonar, Prashant, Burn, Paul L., Meredith, Paul and Pivrikas, Almantas (2015). Time-independent charge carrier mobility in a model polymer:fullerene organic solar cell. Organic Electronics, 16, 205-211. doi: 10.1016/j.orgel.2014.10.047

Time-independent charge carrier mobility in a model polymer:fullerene organic solar cell

2015

Journal Article

Molecular versus exciton diffusion in fluorescence-based explosive vapour sensors

Ali, M. A., Geng, Y., Cavaye, H., Burn, P. L., Gentle, I. R., Meredith, P. and Shaw, P. E. (2015). Molecular versus exciton diffusion in fluorescence-based explosive vapour sensors. Chemical Communications, 51 (98), 17406-17409. doi: 10.1039/c5cc06367a

Molecular versus exciton diffusion in fluorescence-based explosive vapour sensors

2015

Journal Article

Photodiodes: high-performance, solution-processed non-polymeric organic photodiodes (Advanced Optical Materials 1/2015)

Kim, Il Ku, Pal, Bhola N., Ullah, Mujeeb, Burn, Paul L., Lo, Shih-Chun, Meredith, Paul and Namdas, Ebinazar B. (2015). Photodiodes: high-performance, solution-processed non-polymeric organic photodiodes (Advanced Optical Materials 1/2015). Advanced Optical Materials, 3 (1), 49-49. doi: 10.1002/adom.201570005

Photodiodes: high-performance, solution-processed non-polymeric organic photodiodes (Advanced Optical Materials 1/2015)

2014

Journal Article

Electro-optics of perovskite solar cells

Lin, Qianqian, Armin, Ardalan, Nagiri, Ravi Chandra Raju, Burn, Paul L. and Meredith, Paul (2014). Electro-optics of perovskite solar cells. Nature Photonics, 9 (2), 106-112. doi: 10.1038/nphoton.2014.284

Electro-optics of perovskite solar cells

2014

Journal Article

High mobility solution-processed hybrid light emitting transistors

Walker, Bright, Ullah, Mujeeb, Chae, Gil Jo, Burn, Paul L., Cho, Shinuk, Kim, Jin Young, Namdas, Ebinazar B. and Seo, Jung Hwa (2014). High mobility solution-processed hybrid light emitting transistors. Applied Physics Letters, 105 (18) 183302, 183302-1-183302-4. doi: 10.1063/1.4900933

High mobility solution-processed hybrid light emitting transistors

2014

Journal Article

Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells

Hambsch, Mike, Jin, Hui, Clulow, Andrew J., Nelson, Andrew, Yamada, Norifumi L., Velusamy, Marappan, Yang, Qingyi, Zhu, Furong, Burn, Paul L., Gentle, Ian R. and Meredith, Paul (2014). Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells. Solar Energy Materials and Solar Cells, 130, 182-190. doi: 10.1016/j.solmat.2014.06.032

Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells

2014

Journal Article

Narrow band green organic photodiodes for imaging

Lyons, Dani M., Armin, Ardalan, Stolterfoht, Martin, Nagiri, Ravi C. R., Jansen-van Vuuren, Ross D., Pal, Bhola N., Burn, Paul L., Lo, Shih-Chun and Meredith, Paul (2014). Narrow band green organic photodiodes for imaging. Organic Electronics, 15 (11), 2903-2911. doi: 10.1016/j.orgel.2014.08.015

Narrow band green organic photodiodes for imaging

2014

Journal Article

Energetic requirements of iridium(iii) complex based photosensitisers in photocatalytic hydrogen generation

Fan, Shenggiang, Zong, Xu, Shaw, Paul E., Wang, Xin, Geng, Yan, Smith, Arthur R. G., Burn, Paul L., Wang, Lianzhou and Lo, Shih-Chun (2014). Energetic requirements of iridium(iii) complex based photosensitisers in photocatalytic hydrogen generation. Physical Chemistry Chemical Physics, 16 (39), 21577-21585. doi: 10.1039/c4cp02997f

Energetic requirements of iridium(iii) complex based photosensitisers in photocatalytic hydrogen generation

2014

Journal Article

All solution-processed, hybrid light emitting field-effect transistors

Muhieddine, Khalid, Ullah, Mujeeb, Pal, Bhola N., Burn, Paul and Namdas, Ebinazar B. (2014). All solution-processed, hybrid light emitting field-effect transistors. Advanced Materials, 26 (37), 6410-6415. doi: 10.1002/adma.201400938

All solution-processed, hybrid light emitting field-effect transistors

2014

Journal Article

High-mobility, heterostructure light-emitting transistors and complementary inverters

Ullah, Mujeeb, Tandy, Kristen, Li, Jun, Shi, Zugui, Burn, Paul L., Meredith, Paul and Namdas, Ebinazar B. (2014). High-mobility, heterostructure light-emitting transistors and complementary inverters. ACS Photonics, 1 (10), 954-959. doi: 10.1021/ph500300n

High-mobility, heterostructure light-emitting transistors and complementary inverters

2014

Journal Article

Time-resolved neutron reflectometry and photovoltaic device studies on sequentially deposited PCDTBT-fullerene layers

Clulow, Andrew J., Tao, Chen, Lee, Kwan H., Velusamy, Marappan, McEwan, Jake A., Shaw, Paul E., Yamada, Norifumi L., James, Michael, Burn, Paul L., Gentle, Ian R. and Meredith, Paul (2014). Time-resolved neutron reflectometry and photovoltaic device studies on sequentially deposited PCDTBT-fullerene layers. Langmuir, 30 (38), 11474-11484. doi: 10.1021/la5020779

Time-resolved neutron reflectometry and photovoltaic device studies on sequentially deposited PCDTBT-fullerene layers