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- W1994361121 abstract "Significance Nature uses hierarchical assembly to make complex structures such as biomolecules, virus shells, and microtubules with high fidelity. Today a key challenge is to translate this process to artificial systems, which hinges on understanding the fundamental questions of efficiency and scalability of self-assembly. Although self-assembly has been studied for decades, the principles behind it and its fundamental and practical limits are still largely unknown. In this paper we establish size limitations for assembling structures of controlled size and shape out of colloidal particles with specific interactions. Inspired by simulations of structures with highly variable shapes and sizes, we develop an understanding of yield through a general theory of excited states that compete with the desired structure in assembly." @default.
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- W1994361121 date "2014-10-27" @default.
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- W1994361121 title "Size limits of self-assembled colloidal structures made using specific interactions" @default.
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- W1994361121 doi "https://doi.org/10.1073/pnas.1411765111" @default.
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