Magnus Willander
Magnus Willander
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Cited by
Cited by
III–nitrides: Growth, characterization, and properties
SC Jain, M Willander, J Narayan, RV Overstraeten
Journal of Applied Physics 87 (3), 965-1006, 2000
Zinc oxide nanorod based photonic devices: recent progress in growth, light emitting diodes and lasers
M Willander, O Nur, QX Zhao, LL Yang, M Lorenz, BQ Cao, JZ Pérez, ...
Nanotechnology 20 (33), 332001, 2009
New materials for micro-scale sensors and actuators: An engineering review
SA Wilson, RPJ Jourdain, Q Zhang, RA Dorey, CR Bowen, M Willander, ...
Materials Science and Engineering: R: Reports 56 (1-6), 1-129, 2007
Field‐effect mobility of poly (3‐hexylthiophene)
A Assadi, C Svensson, M Willander, O Inganäs
Applied Physics Letters 53 (3), 195-197, 1988
Identification of oxygen and zinc vacancy optical signals in ZnO
TM Børseth, BG Svensson, AY Kuznetsov, P Klason, QX Zhao, ...
Applied Physics Letters 89 (26), 2006
Luminescence from zinc oxide nanostructures and polymers and their hybrid devices
M Willander, O Nur, JR Sadaf, MI Qadir, S Zaman, A Zainelabdin, N Bano, ...
Materials 3 (4), 2643-2667, 2010
Silicon carbide and diamond for high temperature device applications
M Willander, M Friesel, Q Wahab, B Straumal
Journal of Materials Science: Materials in Electronics 17, 1-25, 2006
Deep-level emissions influenced by O and Zn implantations in ZnO
QX Zhao, P Klason, M Willander, HM Zhong, W Lu, JH Yang
Applied Physics Letters 87 (21), 2005
Influence of pH, precursor concentration, growth time, and temperature on the morphology of ZnO nanostructures grown by the hydrothermal method
G Amin, MH Asif, A Zainelabdin, S Zaman, O Nur, M Willander
Journal of Nanomaterials 2011 (1), 269692, 2011
The origin of the red emission in n-ZnO nanotubes/p-GaN white light emitting diodes
NH Alvi, K Ul Hasan, O Nur, M Willander
Nanoscale research letters 6, 1-7, 2011
Transient enhanced diffusion of boron in Si
SC Jain, W Schoenmaker, R Lindsay, PA Stolk, S Decoutere, M Willander, ...
Journal of applied physics 91 (11), 8919-8941, 2002
Zinc oxide nanostructure-modified textile and its application to biosensing, photocatalysis, and as antibacterial material
A Hatamie, A Khan, M Golabi, APF Turner, V Beni, WC Mak, ...
Langmuir 31 (39), 10913-10921, 2015
Stresses and strains in epilayers, stripes and quantum structures of III-V compound semiconductors
SC Jain, M Willander, H Maes
Semiconductor science and technology 11 (5), 641, 1996
Spin relaxation anisotropy in two-dimensional semiconductor systems
NS Averkiev, LE Golub, M Willander
Journal of physics: condensed matter 14 (12), R271, 2002
Trapping single molecules by dielectrophoresis
R Hölzel, N Calander, Z Chiragwandi, M Willander, FF Bier
Physical review letters 95 (12), 128102, 2005
Synthesis of ZnO nanoparticles by co-precipitation method for solar driven photodegradation of Congo red dye at different pH
RE Adam, G Pozina, M Willander, O Nur
Photonics and Nanostructures-Fundamentals and Applications 32, 11-18, 2018
Optical recombination of ZnO nanowires grown on sapphire and Si substrates
QX Zhao, M Willander, RE Morjan, QH Hu, EEB Campbell
Applied Physics Letters 83 (1), 165-167, 2003
An ultrathin flexible single‐electrode triboelectric‐nanogenerator for mechanical energy harvesting and instantaneous force sensing
SW Chen, X Cao, N Wang, L Ma, HR Zhu, M Willander, Y Jie, ZL Wang
Advanced Energy Materials 7 (1), 1601255, 2017
A fast and sensitive potentiometric glucose microsensor based on glucose oxidase coated ZnO nanowires grown on a thin silver wire
SMU Ali, O Nur, M Willander, B Danielsson
Sensors and Actuators B: Chemical 145 (2), 869-874, 2010
Annealing effects on optical properties of low temperature grown ZnO nanorod arrays
LL Yang, QX Zhao, M Willander, JH Yang, I Ivanov
Journal of Applied Physics 105 (5), 2009
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