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Journal of the American Chemical Society|February 9, 2016
Bio-orthogonal Coupling as a Means of Quantifying the Ligand Density on Hydrophilic Quantum DotsNaiqian Zhan, Goutam Palui, Jan-Philip Merkl, et al.Journal of the American Chemical Society|September 6, 2013
Multidentate zwitterionic ligands provide compact and highly biocompatible quantum dotsNaiqian Zhan, Goutam Palui, Malak Safi, et al.Nanoscale|September 30, 2021
Polysalt ligands achieve higher quantum yield and improved colloidal stability for CsPbBr<sub>3</sub> quantum dotsSisi Wang, Liang Du, Selin Donmez, et al.Journal of Biomedicine & Biotechnology|April 3, 2008
Design of biotin-functionalized luminescent quantum dotsKimihiro Susumu, H Tetsuo Uyeda, Igor L Medintz, et al.Faraday Discussions|October 8, 2014
A multifunctional amphiphilic polymer as a platform for surface-functionalizing metallic and other inorganic nanostructuresWentao Wang, Fadi Aldeek, Xin Ji, et al.Journal of the American Chemical Society|June 27, 2020
Enhanced Stabilization and Easy Phase Transfer of CsPbBr<sub>3</sub> Perovskite Quantum Dots Promoted by High-Affinity Polyzwitterionic LigandsSisi Wang, Liang Du, Zhicheng Jin, et al.Journal of the American Chemical Society|October 15, 2015
A multifunctional polymer combining the imidazole and zwitterion motifs as a biocompatible compact coating for quantum dotsWentao Wang, Xin Ji, Anshika Kapur, et al.Methods in Molecular Biology (Clifton, N.J.)|January 24, 2007
Luminescent biocompatible quantum dots: a tool for immunosorbent assay designEllen R Goldman, H Tetsuo Uyeda, Andrew Hayhurst, et al.Nature Protocols|March 7, 2009
Polyethylene glycol-based bidentate ligands to enhance quantum dot and gold nanoparticle stability in biological mediaBing C Mei, Kimihiro Susumu, Igor L Medintz, et al.ACS Nano|October 19, 2013
Understanding the self-assembly of proteins onto gold nanoparticles and quantum dots driven by metal-histidine coordinationFadi Aldeek, Malak Safi, Naiqian Zhan, et al.Pageof 17