C.A.M. and S.C.G. acknowledge the Department of Energy Office (DOE Award DE-SC0000989) for support through the Northwestern University Non-Equilibrium Energy Research Center. K.L.Y., M.L.P., and S.N.B. acknowledge support from the NSF through the Graduate Research Fellowship Program. K.L.Y. also acknowledges the NDSEG Fellowship. P.F.D, M.E., and S.C.G. acknowledge support from the U.S. Army Research Office under Grant Award No. W911NF-10-1-0518 and the U.S. Department of Defense ASD (R&E) under Award No. N00244-09-1-0062. Use of the Advanced Photon Source was supported by the Office of Basic Energy Sciences, US DOE under Contract DE-AC02-06CH11357. Electron microscopy was carried out in the Electron Probe Instrumentation Center facility of the Northwestern University Atomic and Nanoscale Characterization Experimental Center.
A Directional Entropic Force Approach to Assemble Anisotropic Nanoparticles into Superlattices†
Version of Record online: 7 NOV 2013
Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Volume 125, Issue 52, pages 14230–14234, December 23, 2013
How to Cite
Young, K. L., Personick, M. L., Engel, M., Damasceno, P. F., Barnaby, S. N., Bleher, R., Li, T., Glotzer, S. C., Lee, B. and Mirkin, C. A. (2013), A Directional Entropic Force Approach to Assemble Anisotropic Nanoparticles into Superlattices. Angew. Chem., 125: 14230–14234. doi: 10.1002/ange.201306009
- Issue online: 18 DEC 2013
- Version of Record online: 7 NOV 2013
- Manuscript Received: 10 JUL 2013
- Department of Energy Office. Grant Number: DE-SC0000989
- NDSEG Fellowship
- U.S. Army Research Office. Grant Number: W911NF-10-1-0518
- U.S. Department of Defense ASD. Grant Number: N00244-09-1-0062
- Office of Basic Energy Sciences, US DOE. Grant Number: DE-AC02-06CH11357
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