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Nature Materials|October 5, 2010
DNA-nanoparticle superlattices formed from anisotropic building blocksMatthew R Jones, Robert J Macfarlane, Byeongdu Lee, et al.Proceedings of the National Academy of Sciences of the United States of America|October 10, 2014
Importance of the DNA "bond" in programmable nanoparticle crystallizationRobert J Macfarlane, Ryan V Thaner, Keith A Brown, et al.World Journal of Orthopedics|June 2, 2017
Dementia and osteoporosis in a geriatric population: Is there a common link?Candice L Downey, Adam Young, Emily F Burton, et al.Expert Opinion on Investigational Drugs|March 4, 2016
Investigational drugs for fracture healing: preclinical & clinical dataMichail E Klontzas, Eustathios I Kenanidis, Robert J MacFarlane, et al.Nano Letters|November 12, 2013
Epitaxial growth of DNA-assembled nanoparticle superlattices on patterned substratesSondra L Hellstrom, Youngeun Kim, James S Fakonas, et al.Expert Opinion on Therapeutic Targets|January 9, 2013
Anti-inflammatory role and immunomodulation of mesenchymal stem cells in systemic joint diseases: potential for treatmentRobert J MacFarlane, Simon Matthew Graham, Peter S E Davies, et al.ACS Nano|November 21, 2013
Counterion distribution surrounding spherical nucleic acid-Au nanoparticle conjugates probed by small-angle x-ray scatteringSumit Kewalramani, Jos W Zwanikken, Robert J Macfarlane, et al.Nature Nanotechnology|December 14, 2011
Synthetically programmable nanoparticle superlattices using a hollow three-dimensional spacer approachEvelyn Auyeung, Joshua I Cutler, Robert J Macfarlane, et al.Nature Materials|May 21, 2013
A general approach to DNA-programmable atom equivalentsChuan Zhang, Robert J Macfarlane, Kaylie L Young, et al.Journal of the American Chemical Society|April 15, 2024
Rationally Designing the Supramolecular Interfaces of Nanoparticle Superlattices with Multivalent PolymersCarl J Thrasher, Fei Jia, Daryl W Yee, et al.Pageof 9