AVS 54th International Symposium
    Understanding Biointerphases and Magnetism with Neutrons Topical Conference Tuesday Sessions
       Session NT-TuM

Invited Paper NT-TuM3
Small Angle Neutron Scattering Studies of the Counterion Effects on the Molecular Conformation and Structure of Charged G4 PAMAM Dendrimers in Aqueous Solutions

Tuesday, October 16, 2007, 8:40 am, Room 618

Session: Applications to Biological Materials and Soft Matter
Presenter: W.-R. Chen, Oak Ridge National Laboratory
Correspondent: Click to Email

The structural properties of generation 4 (G4) poly(amidoamine) starburst dendrimers (PAMAM) with an ethylenediamine (EDA) central core in solutions have been studied by small angle neutron scattering (SANS). Upon the addition of , SANS patterns show pronounced inter-particle correlation peaks due to the strong repulsion introduced by the protonation of the amino groups of the dendrimers. By solving the Ornstein-Zernike integral equation (OZ) with hypernetted chain closure (HNC), the dendrimer-dendrimer structure factor is determined and used to fit the experimental data, where is the magnitude of the scattering wave vector Q. Quantitative information such as the effective charge per dendrimer and the radius of gyration, RG, at different pD values is obtained. The results show that only changes by about 4 % when the pD value varies from 10.25 to 4.97, and significant counterion association/condensation occurs, strongly mediating the inter-dendrimer interaction. The influence of interplay between counterions and molecular protonation of dendrimers imposes a strong effect on the dendrimer conformation and effective interaction. Although the change of is very small, careful analyses of the high data and fitting parameters indicate a possible internal structure change of a dendrimer when the amino groups are progressively charged.