Dendrimer-Fullerenol Soft-Condensed Nanoassembly.

J Phys Chem C Nanomater Interfaces

Department of Physics and Astronomy, COMSET, Clemson University, Clemson, SC 29634.

Published: July 2012

AI Article Synopsis

  • Nanoscale assembly research focuses on molecular design and various applications, including sensing and environmental remediation.
  • Poly(amidoamine) dendrimers of generation 1 (G1) and generation 4 (G4) can effectively host fullerenols, with G4 forming stronger complexes due to its higher surface charge and internal voids.
  • The interactions involve hydrogen bonding, as well as hydrophobic and electrostatic forces, suggesting potential uses in environmental cleanup and drug delivery.

Article Abstract

Nanoscale assembly is an area of research that has vast implications for molecular design, sensing, nanofabrication, supramolecular chemistry, catalysis, and environmental remediation. Here we show that poly(amidoamine) (PAMAM) dendrimers of both generations 1 (G1) and 4 (G4) can host 1 fullerenol per 2 dendrimer primary amines as evidenced by isothermal titration calorimetry, dynamic light scattering and spectrofluorometry. Thermodynamically, the interactions were similarly spontaneous between both generations of dendrimers and fullerenols, however, G4 formed stronger complexes with fullerenols resulting from their higher surface charge density and more internal voids, as demonstrated by spectrofluorometry. In addition to hydrogen bonding that existed between the dendrimer primary amines and the fullerenol oxygens, hydrophobic and electrostatic interactions also contributed to complex formation and dynamics. Such hybrid of soft and condensed nanoassembly may have implications for environmental remediation of discharged nanomaterials and entail new applications in drug delivery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3505031PMC
http://dx.doi.org/10.1021/jp3036692DOI Listing

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