AI Article Synopsis

  • This study reports a reversible metamorphosis in a gold nanosized system, allowing shape and size transformations without the need for synthetic agents typically used in previous methods.
  • The transformation occurs by simply altering the ratio of competing reagents, specifically alkylthiols and tetralkylammonium salts, unlike traditional methods that rely on growth-controlling agents.
  • High-resolution transmission electron microscopy (HRTEM) and electron diffraction were used to observe the intermediate steps, demonstrating how gold nanoparticles can break down and reform under mild conditions, showcasing the unique properties of nanomaterials.

Article Abstract

Herein is reported a metamorphosis taking place in a gold nanosized system. The observed phenomenon of shape and size transformations was found to be completely reversible. Unlike most procedures in the literature where shape and size control occur in the synthetic step by adding growth- and shape-controlling agents such as surfactants or polymers, in this system postsynthetic changes in shape and size can be carried out simply by changing the ratio of reactive, competing reagents, more specifically, alkylthiols versus tetralkylammonium salts. Interestingly, the transfer of gold metal occurs (large prismatic particles to small particles and vice versa) under the influence of reagents that do not cause such interactions with bulk gold. All intermediate steps of the morphology change were observed using HRTEM and electron diffraction. The processes of breaking down and "welding back" solid metal nanoparticles occur under mild conditions and are remarkable examples of the unique chemical properties of nanomaterials. The described process is expected to be relevant to other nanoscale systems where similar structural circumstances could occur.

Download full-text PDF

Source
http://dx.doi.org/10.1021/la051699vDOI Listing

Publication Analysis

Top Keywords

shape size
12
reversible transformations
4
gold
4
transformations gold
4
gold nanoparticle
4
nanoparticle morphology
4
morphology reported
4
reported metamorphosis
4
metamorphosis place
4
place gold
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!