Hierarchically self-assembled hexagonal honeycomb and kagome superlattices of binary 1D colloids

  • Lim, Sung-Hwan; 
  • Lee, Taehoon; 
  • Oh, Younghoon; 
  • Narayanan, Theyencheri; 
  • Sung, Bong June; 
  • 외 1명
Citations

WEB OF SCIENCE

17
Citations

SCOPUS

19

초록

Synthesis of binary nanoparticle superlattices has attracted attention for a broad spectrum of potential applications. However, this has remained challenging for one-dimensional nanoparticle systems. In this study, we investigate the packing behavior of one-dimensional nanoparticles of different diameters into a hexagonally packed cylindrical micellar system and demonstrate that binary one-dimensional nanoparticle superlattices of two different symmetries can be obtained by tuning particle diameter and mixing ratios. The hexagonal arrays of one-dimensional nanoparticles are embedded in the honeycomb lattices (for AB(2) type) or kagome lattices (for AB(3) type) of micellar cylinders. The maximization of free volume entropy is considered as the main driving force for the formation of superlattices, which is well supported by our theoretical free energy calculations. Our approach provides a route for fabricating binary one-dimensional nanoparticle superlattices and may be applicable for inorganic one-dimensional nanoparticle systems.

키워드

ENTROPY-DRIVEN FORMATION; HARD-DISC MIXTURES; NANOPARTICLE SUPERLATTICES; PHASE-BEHAVIOR; NANOCRYSTAL SUPERLATTICES; SOLID-SOLUTIONS; CELL THEORY; RODS; THIN; MICELLES
제목
Hierarchically self-assembled hexagonal honeycomb and kagome superlattices of binary 1D colloids
저자
Lim, Sung-Hwan; Lee, Taehoon; Oh, Younghoon; Narayanan, Theyencheri; Sung, Bong June; Choi, Sung-Min
DOI
10.1038/s41467-017-00512-9
발행일
2017-08-25
유형
Article
저널명
Nature Communications
권
8
호
1