Title :
Capillary-bonding of thin LEDs onto non-native substrates by transfer-printing
Author :
Trindade, A.J. ; Guilhabert, B. ; Zhu, D. ; Laurand, N. ; Gu, E. ; Watson, I.M. ; Humphreys, C.J. ; Wallis, D.J. ; Dawson, M.D.
Author_Institution :
Inst. of Photonics, Univ. of Strathclyde, Glasgow, UK
Abstract :
The integration of arrays of 486nm-emitting micron-size LEDs onto non-native substrates (including diamond, ultra-thin glass and MQW epitaxial structures) is demonstrated. The device bonding process relies solely on solvent-assisted capillary adhesion, and precision assembly through transfer printing.
Keywords :
bonding processes; light emitting diodes; substrates; capillary bonding; nonnative substrates; solvent-assisted capillary adhesion; thin LED; transfer printing; wavelength 486 nm; Assembly; Bonding; Diamonds; Glass; Light emitting diodes; Quantum well devices; Substrates;
Conference_Titel :
Photonics Conference (IPC), 2014 IEEE
Conference_Location :
San Diego, CA
DOI :
10.1109/IPCon.2014.6995470