Anisotropic nanocrystal arrays organized on protein lattices formed by recombinant clathrin fragments. Hom, N., Mehta, K., R., Chou, T., Foraker, A., B., Brodsky, F., M., Kirshenbaum, K., & Montclare, J., K. JOURNAL OF MATERIALS CHEMISTRY, 22(44):23335-23339, ROYAL SOC CHEMISTRY, 11, 2012.
abstract   bibtex   
Recombinant clathrin protein fragments form assemblies that template gold nanocrystals in an array across the latticed surface. The nanocrystals exhibit unusual anisotropic morphologies with long range ordering, both of which are dependent upon the presence of a hexahistidine tag on the clathrin heavy chain fragments.
@article{
 title = {Anisotropic nanocrystal arrays organized on protein lattices formed by recombinant clathrin fragments},
 type = {article},
 year = {2012},
 identifiers = {[object Object]},
 pages = {23335-23339},
 volume = {22},
 month = {11},
 publisher = {ROYAL SOC CHEMISTRY},
 city = {THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS, ENGLAND},
 id = {5bf5b502-425c-3ff1-9bb7-3fac38318f27},
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 last_modified = {2017-03-14T12:30:08.401Z},
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 abstract = {Recombinant clathrin protein fragments form assemblies that template
gold nanocrystals in an array across the latticed surface. The
nanocrystals exhibit unusual anisotropic morphologies with long range
ordering, both of which are dependent upon the presence of a
hexahistidine tag on the clathrin heavy chain fragments.},
 bibtype = {article},
 author = {Hom, Nancy and Mehta, Kinjal R and Chou, Tsengming and Foraker, Amy B and Brodsky, Frances M and Kirshenbaum, Kent and Montclare, Jin Kim},
 journal = {JOURNAL OF MATERIALS CHEMISTRY},
 number = {44}
}

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