Abstract
We present a method that systematically simplifies isotropic interactions designed for targeted self-assembly. The uncertainty principle is used to show that an optimal simplification is achieved by a combination of heat kernel smoothing and Gaussian screening of the interaction potential in real and reciprocal space. We use this method to analytically design isotropic interactions for self-assembly of complex lattices and of materials with functional properties. The derived interactions are simple enough to narrow the gap between theory and experimental implementation of theory based designed self-assembling materials. © 2013 Author(s).
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CITATION STYLE
Edlund, E., Lindgren, O., & Jacobi, M. N. (2013). Using the uncertainty principle to design simple interactions for targeted self-assembly. Journal of Chemical Physics, 139(2). https://doi.org/10.1063/1.4812727
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