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Ordered Two-Dimensional Superstructures of Colloidal Octapod-Shaped Nanocrystals on Flat Substrates
Author(s) -
Weikai Qi,
Joost de Graaf,
Fen Qiao,
Sergio Marras,
Liberato Manna,
Marjolein Dijkstra
Publication year - 2012
Publication title -
nano letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.853
H-Index - 488
eISSN - 1530-6992
pISSN - 1530-6984
DOI - 10.1021/nl302620j
Subject(s) - phase diagram , monolayer , materials science , crystal structure , crystal (programming language) , colloidal crystal , anisotropy , square lattice , crystallography , monte carlo method , colloid , phase (matter) , chemical physics , condensed matter physics , nanotechnology , chemistry , optics , physics , statistics , organic chemistry , mathematics , computer science , programming language , ising model
We studied crystal structures in a monolayer consisting of anisotropic branched colloidal (nano)octapods. Experimentally, octapods were observed to form a monolayer on a substrate with a square-lattice crystal structure by drop-casting and fast evaporation of solvent. The experimental results were analyzed by Monte Carlo simulations using a hard octapod model consisting of four interpenetrating spherocylinders. We confirmed by means of free-energy calculations that crystal structures with a (binary-lattice) square morphology are indeed thermodynamically stable at high densities. The effect of the pod length-to-diameter ratio on the crystal structures was also considered and we used this to constructed the phase diagram for these hard octapods. In addition to the (binary-lattice) square crystal phase, a rhombic crystal and a hexagonal plastic-crystal (rotator) phase were obtained. Our phase diagram may prove instrumental in guiding future experimental studies.

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