Peer-Reviewed Journal Details
Mandatory Fields
Singh, A; Gunning, RD; Ahmed, S; Barrett, CA; English, NJ; Garate, JA; Ryan, KM
2012
January
Journal Of Materials Chemistry
Controlled semiconductor nanorod assembly from solution: influence of concentration, charge and solvent nature
Published
()
Optional Fields
BINARY NANOPARTICLE SUPERLATTICES NANOCRYSTAL SUPERLATTICE MOLECULAR-DYNAMICS SOLAR-CELLS DROPS
22
1562
1569
Spontaneous supercrystal organisation of semiconductor nanorods (CdS and CdSe) of different aspect ratios into ordered superstructures was obtained by controlled evaporation of a nanorod solution. The rods either align into two dimensional close packed perpendicular arrays or into one dimensional rail tracks depending on the total interaction energy between the rods in solution. A detailed study has identified critical factors that affect this interaction energy such as nanorod concentration, surface charge, dipole moment and solvent nature (polarity and volatility), thereby allowing a general approach to control the nature of nanorod assembly (1D or 2D). Molecular dynamics (MD) of small charged nanorods showed that opposite dipolar alignment (antiferromagnetic) was the preferred rod orientation during self-assembly.
10.1039/c1jm14382d
Grant Details