Quantitative structural analysis of binary nanocrystal superlattices by electron tomography

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Publication date

2009

Authors

Friedrich, Heiner
Gommes, Cedric J.
Overgaag, K.
Meeldijk, Johannes DISNI 0000000419468594
Evers, Wiel H.
Nijs, Bart deISNI 0000000419455582
Boneschanscher, M.P.
de Jongh, Petra EISNI 0000000395610073
Verkleij, A.J.ISNI 0000000395149440
de Jong, Krijn P.ISNI 0000000116104048

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Article
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Abstract

Binary nanocrystal superlattices, that is, ordered structures of two sorts of nanocolloids, hold promise for a series of functional materials with novel collective properties. Here we show that based on electron tomography a comprehensive, quantitative, three-dimensional characterization of these systems down to the single nanocrystal level can be achieved, which is key in understanding the emerging materials properties. On four binary lattices composed of PbSe, CdSe, and Au nanocrystals, we illustrate that ambiguous interpretations based on two-dimensional transmission electron microscopy can be prevented, nanocrystal sizes and superlattice parameters accurately determined, individual crystallographic point and plane defects studied, and the order/disorder at the top and bottom surfaces imaged. Furthermore, our results suggest that superlattice nucleation and growth occurred at the suspension/air interface and that the unit cells of some lattices are anisotropically deformed upon drying.

Keywords

Molecular biology, Life sciences, Cell biology, Biologie/Milieukunde (BIOL)

Citation

Friedrich, H, Gommes, C J, Overgaag, K, Meeldijk, J D, Evers, W H, de Nijs, B, Boneschanscher, M P, de Jongh, P E, Verkleij, A J, de Jong, K P, van Blaaderen, A & Vanmaekelbergh, D A M 2009, 'Quantitative structural analysis of binary nanocrystal superlattices by electron tomography', Nano Letters, vol. 9, no. 7, pp. 2719-2724.