Andrea Merg
Affiliations: | 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 |