Andrea Merg

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2011-2017 University of Pittsburgh, Pittsburgh, PA, United States 
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Publications

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Merg AD, van Genderen E, Bazrafshan A, et al. (2019) Seeded Heteroepitaxial Growth of Crystallizable Collagen Triple Helices: Engineering Multifunctional 2D Core-Shell Nanostructures. Journal of the American Chemical Society
Merg A, Touponse G, van Genderen E, et al. (2019) 2D Crystal Engineering of Nanosheets Assembled from Helical Peptide Building Blocks. Angewandte Chemie (International Ed. in English)
Merg AD, Thaner RV, Mokashi-Punekar S, et al. (2017) Triblock peptide-oligonucleotide chimeras (POCs): programmable biomolecules for the assembly of morphologically tunable and responsive hybrid materials. Chemical Communications (Cambridge, England)
Mokashi-Punekar S, Merg AD, Rosi NL. (2017) Systematic Adjustment of Pitch and Particle Dimensions within a Family of Chiral Plasmonic Gold Nanoparticle Single Helices. Journal of the American Chemical Society
Merg AD, Zhou Y, Smith AM, et al. (2017) Cover Feature: Ligand Exchange for Controlling the Surface Chemistry and Properties of Nanoparticle Superstructures (ChemNanoMat 10/2017) Chemnanomat. 3: 667-667
Merg AD, Zhou Y, Smith AM, et al. (2017) Ligand Exchange for Controlling the Surface Chemistry and Properties of Nanoparticle Superstructures Chemnanomat. 3: 745-749
Merg AD, Boatz JC, Mandal A, et al. (2016) Peptide-Directed Assembly of Single-Helical Gold Nanoparticle Superstructures Exhibiting Intense Chiroptical Activity. Journal of the American Chemical Society
Liu C, Zeng C, Luo TY, et al. (2016) Establishing Porosity Gradients within Metal-Organic Frameworks using Partial Postsynthetic Ligand Exchange. Journal of the American Chemical Society
Merg AD, Slocik J, Blaber MG, et al. (2015) Adjusting the Metrics of 1-D Helical Gold Nanoparticle Superstructures Using Multivalent Peptide Conjugates. Langmuir : the Acs Journal of Surfaces and Colloids. 31: 9492-501
Zhang C, Zhou Y, Merg A, et al. (2014) Hollow spherical gold nanoparticle superstructures with tunable diameters and visible to near-infrared extinction. Nanoscale. 6: 12328-32
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