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1.
  • Lattice Mismatch in Crystal... Lattice Mismatch in Crystalline Nanoparticle Thin Films
    Gabrys, Paul A; Seo, Soyoung E; Wang, Mary X ... Nano letters, 01/2018, Letnik: 18, Številka: 1
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    For atomic thin films, lattice mismatch during heteroepitaxy leads to an accumulation of strain energy, generally causing the films to irreversibly deform and generate defects. In contrast, more ...
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2.
  • Macroscopic materials assem... Macroscopic materials assembled from nanoparticle superlattices
    Santos, Peter J; Gabrys, Paul A; Zornberg, Leonardo Z ... Nature (London), 03/2021, Letnik: 591, Številka: 7851
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    Nanoparticle assembly has been proposed as an ideal means to program the hierarchical organization of a material by using a selection of nanoscale components to build the entire material from the ...
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3.
  • Self-Assembling Nanocomposi... Self-Assembling Nanocomposite Tectons
    Zhang, Jianyuan; Santos, Peter J; Gabrys, Paul A ... Journal of the American Chemical Society, 12/2016, Letnik: 138, Številka: 50
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    The physical characteristics of composite materials are dictated by both the chemical composition and spatial configuration of each constituent phase. A major challenge in nanoparticle-based ...
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4.
  • Programmable Atom Equivalen... Programmable Atom Equivalents: Atomic Crystallization as a Framework for Synthesizing Nanoparticle Superlattices
    Gabrys, Paul A.; Zornberg, Leonardo Z.; Macfarlane, Robert J. Small (Weinheim an der Bergstrasse, Germany), 06/2019, Letnik: 15, Številka: 26
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    Decades of research efforts into atomic crystallization phenomenon have led to a comprehensive understanding of the pathways through which atoms form different crystal structures. With the onset of ...
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5.
  • Controlling Crystal Texture... Controlling Crystal Texture in Programmable Atom Equivalent Thin Films
    Gabrys, Paul A; Macfarlane, Robert J ACS nano, 07/2019, Letnik: 13, Številka: 7
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    DNA is a powerful tool in the directed assembly of nanoparticle based superlattice materials, as the predictable nature of Watson–Crick base pairing allows DNA-grafted particles to be programmably ...
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6.
  • Optical Processing of DNA-P... Optical Processing of DNA-Programmed Nanoparticle Superlattices
    Zornberg, Leonardo Z; Gabrys, Paul A; Macfarlane, Robert J Nano letters, 11/2019, Letnik: 19, Številka: 11
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    Hierarchical structural control across multiple size regimes requires careful consideration of the complex energy- and time-scales which govern the system’s morphology at each of these different size ...
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7.
  • DNA-Directed Non-Langmuir D... DNA-Directed Non-Langmuir Deposition of Programmable Atom Equivalents
    Lewis, Diana J; Gabrys, Paul A; Macfarlane, Robert J Langmuir, 12/2018, Letnik: 34, Številka: 49
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    Particle assembly at interfaces via programmed DNA interactions allows for independent modification of both nanoparticle–surface interaction strength and the magnitude of interparticle repulsion. ...
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8.
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9.
  • Epitaxy: Programmable Atom ... Epitaxy: Programmable Atom Equivalents Versus Atoms
    Wang, Mary X; Seo, Soyoung E; Gabrys, Paul A ... ACS nano, 01/2017, Letnik: 11, Številka: 1
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    The programmability of DNA makes it an attractive structure-directing ligand for the assembly of nanoparticle (NP) superlattices in a manner that mimics many aspects of atomic crystallization. ...
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10.
  • The Structure and Ligand Bi... The Structure and Ligand Binding Properties of the B. subtilis YkoF Gene Product, a Member of a Novel Family of Thiamin/HMP-binding Proteins
    Devedjiev, Yancho; Surendranath, Yogesh; Derewenda, Urszula ... Journal of molecular biology, 10/2004, Letnik: 343, Številka: 2
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    The crystal structure of the Bacillus subtilis YkoF gene product, a protein involved in the hydroxymethyl pyrimidine (HMP) salvage pathway, was solved by the multiwavelength anomalous dispersion ...
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